<?xml version="1.0" encoding="UTF-8"?>
<!DOCTYPE article PUBLIC "-//NLM//DTD JATS (Z39.96) Journal Publishing DTD v1.1d1 20130915//EN" "http://jats.nlm.nih.gov/publishing/1.1d1/JATS-journalpublishing1.dtd">
<article xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:mml="http://www.w3.org/1998/Math/MathML" article-type="research-article" xml:lang="en">
<front>
<journal-meta>
<journal-id journal-id-type="publisher-id">HIVMED</journal-id>
<journal-title-group>
<journal-title>Southern African Journal of HIV Medicine</journal-title>
</journal-title-group>
<issn pub-type="ppub">1608-9693</issn>
<issn pub-type="epub">2078-6751</issn>
<publisher>
<publisher-name>AOSIS</publisher-name>
</publisher>
</journal-meta>
<article-meta>
<article-id pub-id-type="publisher-id">HIVMED-22-1284</article-id>
<article-id pub-id-type="doi">10.4102/sajhivmed.v22i1.1284</article-id>
<article-categories>
<subj-group subj-group-type="heading">
<subject>Original Research</subject>
</subj-group>
</article-categories>
<title-group>
<article-title>The association between serum vitamin D and body composition in South African HIV-infected women</article-title>
</title-group>
<contrib-group>
<contrib contrib-type="author">
<contrib-id contrib-id-type="orcid">https://orcid.org/0000-0001-8108-8806</contrib-id>
<name>
<surname>Mwango</surname>
<given-names>Samuel</given-names>
</name>
<xref ref-type="aff" rid="AF0001">1</xref>
</contrib>
<contrib contrib-type="author">
<contrib-id contrib-id-type="orcid">https://orcid.org/0000-0001-7435-4520</contrib-id>
<name>
<surname>Carboo</surname>
<given-names>Janet</given-names>
</name>
<xref ref-type="aff" rid="AF0001">1</xref>
</contrib>
<contrib contrib-type="author">
<contrib-id contrib-id-type="orcid">https://orcid.org/0000-0001-9653-539X</contrib-id>
<name>
<surname>Ellis</surname>
<given-names>Christa</given-names>
</name>
<xref ref-type="aff" rid="AF0001">1</xref>
</contrib>
<contrib contrib-type="author">
<contrib-id contrib-id-type="orcid">https://orcid.org/0000-0002-3990-8345</contrib-id>
<name>
<surname>Cockeran</surname>
<given-names>Marike</given-names>
</name>
<xref ref-type="aff" rid="AF0002">2</xref>
</contrib>
<contrib contrib-type="author">
<contrib-id contrib-id-type="orcid">https://orcid.org/0000-0003-0138-3341</contrib-id>
<name>
<surname>Mels</surname>
<given-names>Carina M.C.</given-names>
</name>
<xref ref-type="aff" rid="AF0003">3</xref>
<xref ref-type="aff" rid="AF0004">4</xref>
</contrib>
<contrib contrib-type="author" corresp="yes">
<contrib-id contrib-id-type="orcid">https://orcid.org/0000-0002-5365-1777</contrib-id>
<name>
<surname>Kruger</surname>
<given-names>Herculina S.</given-names>
</name>
<xref ref-type="aff" rid="AF0001">1</xref>
<xref ref-type="aff" rid="AF0004">4</xref>
</contrib>
<aff id="AF0001"><label>1</label>Centre of Excellence for Nutrition, Faculty of Health Sciences, North-West University, Potchefstroom, South Africa</aff>
<aff id="AF0002"><label>2</label>Statistics Consultation Service, Faculty of Natural Sciences, North-West University, Potchefstroom, South Africa</aff>
<aff id="AF0003"><label>3</label>Department of Physiology, Faculty of Health Sciences, North-West University, Potchefstroom, South Africa</aff>
<aff id="AF0004"><label>4</label>Medical Research Council, Hypertension and Cardiovascular Disease Research Unit, Faculty of Health Sciences, North-West University, Potchefstroom, South Africa</aff>
</contrib-group>
<author-notes>
<corresp id="cor1"><bold>Corresponding author:</bold> Herculina Kruger, <email xlink:href="salome.kruger@nwu.ac.za">salome.kruger@nwu.ac.za</email></corresp>
</author-notes>
<pub-date pub-type="epub"><day>30</day><month>09</month><year>2021</year></pub-date>
<pub-date pub-type="collection"><year>2021</year></pub-date>
<volume>22</volume>
<issue>1</issue>
<elocation-id>1284</elocation-id>
<history>
<date date-type="received"><day>02</day><month>07</month><year>2021</year></date>
<date date-type="accepted"><day>12</day><month>08</month><year>2021</year></date>
</history>
<permissions>
<copyright-statement>&#x00A9; 2021. The Authors</copyright-statement>
<copyright-year>2021</copyright-year>
<license license-type="open-access" xlink:href="https://creativecommons.org/licenses/by/4.0/">
<license-p>Licensee: AOSIS. This work is licensed under the Creative Commons Attribution License.</license-p>
</license>
</permissions>
<abstract>
<sec id="st1">
<title>Background</title>
<p>HIV and antiretroviral therapy (ART) alter vitamin D metabolism, and may be associated with bone loss.</p>
</sec>
<sec id="st2">
<title>Objectives</title>
<p>The aim of this study was to determine the association between serum 25-hydroxyvitamin D (25(OH)D) and body composition in postmenopausal South African women living with HIV and on ART.</p>
</sec>
<sec id="st3">
<title>Method</title>
<p>In this 2-year longitudinal study on 120 women conducted in the North West province of South Africa, serum 25(OH)D concentration, bone mineral density (BMD) at three sites, lean mass and percentage of body fat (&#x0025;BF) were measured by dual-energy X-ray absorptiometry (DXA). Multivariable linear mixed models were used to assess the association between serum 25(OH)D and body composition over 2 years. Linear mixed models were also used to determine the longitudinal association between lean mass, &#x0025;BF and BMD.</p>
</sec>
<sec id="st4">
<title>Results</title>
<p>Vitamin D deficiency and insufficiency increased from baseline (10.2&#x0025; and 19.5&#x0025;) to 11.5&#x0025; and 37.5&#x0025;, respectively, after 2 years. Serum 25(OH)D decreased significantly, however, with a small effect size of 0.39 (<italic>P</italic> = 0.001), whilst total BMD (effect size 0.03, <italic>P</italic> = 0.02) and left hip femoral neck (FN) BMD (effect size 0.06, <italic>P</italic> = 0.0001) had significant small increases, whereas total spine BMD did not change over the 2 years. Serum 25(OH)D had no association with any BMD outcomes. Lean mass had a stronger positive association with total spine and left FN BMD than &#x0025;BF.</p>
</sec>
<sec id="st5">
<title>Conclusion</title>
<p>Serum 25(OH)D was not associated with any BMD outcomes. Maintenance of lean mass could be important in preventing bone loss in this vulnerable group; however, longer follow-up may be necessary to confirm the association.</p>
</sec>
</abstract>
<kwd-group>
<kwd>Vitamin D</kwd>
<kwd>postmenopausal</kwd>
<kwd>adiposity</kwd>
<kwd>bone mineral density</kwd>
<kwd>Africa</kwd>
<kwd>HIV/AIDS</kwd>
<kwd>ART</kwd>
</kwd-group>
</article-meta>
</front>
<body>
<sec id="s0001">
<title>Background</title>
<p>Vitamin D is a pro-hormone primarily known for its role in bone development through calcium and phosphorus homeostasis.<sup><xref ref-type="bibr" rid="CIT0001">1</xref></sup> It is acquired from dietary sources that include fish, egg yolk, liver and vitamin D fortified foods; however, cutaneous synthesis of vitamin D contributes to more than 90&#x0025; of the requirements.<sup><xref ref-type="bibr" rid="CIT0002">2</xref></sup> Epidemiological studies across the world indicate a close association between vitamin D deficiency and chronic diseases, such as bone metabolic disorders, tumours, cardiovascular diseases and diabetes mellitus.<sup><xref ref-type="bibr" rid="CIT0003">3</xref></sup> The prevalence rate of vitamin D deficiency worldwide varies between 30&#x0025; and 93&#x0025;, and is a growing public health concern amongst all age categories and ethnic groups.<sup><xref ref-type="bibr" rid="CIT0004">4</xref>,<xref ref-type="bibr" rid="CIT0005">5</xref>,<xref ref-type="bibr" rid="CIT0006">6</xref></sup> Hypovitaminosis D is also a prevalent disorder in low- and middle-income countries.<sup><xref ref-type="bibr" rid="CIT0007">7</xref></sup> Durazo-Arvizu et al.<sup><xref ref-type="bibr" rid="CIT0008">8</xref></sup> reported a higher prevalence rate of vitamin D deficiency amongst South African men and women aged 25&#x2013;45 years compared with groups from Ghana, Jamaica and Seychelles. Many factors, including skin pigmentation, sun exposure, sex and low dietary intake, are known to be associated with the vitamin D status. In South Africa, the country with the largest proportion of people living with HIV, along with the largest antiretroviral therapy (ART) programme, the prevalence of vitamin D deficiency may be even worse because of the known relationship between HIV infection and vitamin D status.<sup><xref ref-type="bibr" rid="CIT0009">9</xref>,<xref ref-type="bibr" rid="CIT0010">10</xref>,<xref ref-type="bibr" rid="CIT0011">11</xref></sup></p>
<p>In South Africa, a total of 7.5 million people were reported to be living with HIV in 2019. This makes South Africa a country with the highest burden of HIV infection in the world, with a prevalence rate of 19.0&#x0025;, in the age group 15 to 49 years.<sup><xref ref-type="bibr" rid="CIT0012">12</xref></sup> Furthermore, South Africa has the largest HIV treatment programme, with 3.9 million people initiated on ART in 2016.<sup><xref ref-type="bibr" rid="CIT0013">13</xref></sup> HIV management strategies coupled with the use of ART have shifted the trends of HIV from an inevitably fatal disease to a chronic infection.<sup><xref ref-type="bibr" rid="CIT0014">14</xref></sup> Chronic HIV infection and exposure to ART are associated with altered vitamin D metabolism, decreased bone mineral density (BMD) and increased fracture risk.<sup><xref ref-type="bibr" rid="CIT0015">15</xref>,<xref ref-type="bibr" rid="CIT0016">16</xref>,<xref ref-type="bibr" rid="CIT0017">17</xref></sup> A longitudinal study in postmenopausal women showed that women living with HIV had greater rates of bone loss at the spine and forearm than HIV-negative postmenopausal women.<sup><xref ref-type="bibr" rid="CIT0018">18</xref></sup> Body composition alteration (lipodystrophy) is a common phenomenon in people living with HIV.<sup><xref ref-type="bibr" rid="CIT0019">19</xref></sup> Furthermore, body composition is an important factor that influences vitamin D status directly or indirectly through interactions with other factors, such as age, sex, skin pigmentation, menopausal status, chronic diseases and medications.<sup><xref ref-type="bibr" rid="CIT0020">20</xref></sup> An inverse correlation has been established between vitamin D status and adiposity in adults.<sup><xref ref-type="bibr" rid="CIT0021">21</xref>,<xref ref-type="bibr" rid="CIT0022">22</xref></sup> Low- and middle-income countries including South Africa, are experiencing nutrition-related non-communicable diseases resulting from nutrition transition and consequent body composition changes towards increased adiposity.<sup><xref ref-type="bibr" rid="CIT0023">23</xref></sup> The South African National Health and Nutrition Examination Survey-1 (SANHANES-1) of 2012 and the South African Demographic and Health Survey of 2016 confirmed the high rates of overweight and obesity in adult women to be 27&#x0025; and 41&#x0025;, respectively.<sup><xref ref-type="bibr" rid="CIT0024">24</xref>,<xref ref-type="bibr" rid="CIT0025">25</xref></sup></p>
<p>This research study aimed at contributing knowledge on the association between serum 25-hydroxyvitamin D (25(OH)D) and body composition amongst HIV-infected postmenopausal women. To our knowledge, this is the first study to involve the target population in South Africa, which has an increased risk of both vitamin D deficiency and poor bone health.</p>
<p>The findings from the study can potentially inform treatment and care of HIV-infected postmenopausal women.</p>
</sec>
<sec id="s0002">
<title>Materials and methods</title>
<sec id="s20003">
<title>Study design, setting and participants</title>
<p>This was a longitudinal study that used data measured in 2017 at baseline, 1-year (2018) and 2-year follow-up (2019) from a larger prospective bone study at the Centre of Excellence for Nutrition (CEN) at the North-West University in Potchefstroom, South Africa. Study participants were recruited from public outpatient ART clinics. Participants who met the inclusion criteria were invited individually to participate and receive information about the project. Those who accepted were included through consecutive convenience sampling. All measurements were performed at the metabolic unit of the North-West University. Signed informed consent was obtained from all participants.</p>
<p>The study involved South African postmenopausal women living with HIV and <italic>already</italic> on ART. Most participants were on ART regimen-1 for the duration of the study (tenofovir [TDF], emtricitabine [FTC] and efavirenz [EFV]) as a combined antiretroviral therapy (cART). This sub-study was performed on the available participants from the larger study, which included 120 postmenopausal women. The flowchart of participants shows the number of study participants at each measurement date and reasons for loss to follow-up, as shown in <xref ref-type="fig" rid="F0001">Figure 1</xref>.</p>
<fig id="F0001">
<label>FIGURE 1</label>
<caption><p>Participant flowchart and reasons for loss to follow-up.</p></caption>
<graphic xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="HIVMED-22-1284-g001.tif"/>
</fig>
<p>A power calculation for the primary analysis of this study (multivariable regression analysis) indicated that a sample size of at least 262 would be necessary at a &#x00DF; of 0.4 for the primary exposure, a power of 0.95 and an &#x03B1; of 0.05.<sup><xref ref-type="bibr" rid="CIT0026">26</xref></sup> It is therefore possible that the sample size may be too small to show an association even if there was one; however, it was not possible to recruit more women, because most HIV-infected women from these clinics were premenopausal. We therefore analysed and interpreted the available data with caution.</p>
<p>The inclusion criteria included HIV-infected postmenopausal women on ART. &#x2018;Postmenopausal&#x2019; was defined as the self-reported absence of menses for at least 6 months prior to the study. The exclusion criteria included use of anti-osteoporotic agents (corticosteroids, thyroid medication initiated during the previous year, anti-vitamin K agents, diuretics, anti-epileptic drugs and &#x03B2;-blockers), calcium and vitamin D supplements, or antacids containing calcium according to their medical records or self-report. Chronic liver disease, chronic obstructive pulmonary disease, chronic renal disease, immobility, rheumatoid arthritis, gastrectomy, malabsorption syndromes, diagnosed diabetes mellitus, history of metabolic bone disease, high alcohol consumption (&#x2265; 3 units/day) and history of a fracture within the last 6 months were also part of the exclusion criteria. Women with severely low BMD at the hip (T-score &#x003C; &#x2013;3) detected at baseline were not enrolled but referred for medical treatment. According to the World Health Organization (WHO), a T-score is the distance in the number of standard deviations from the mean BMD for a young reference group based on data from a white reference population. A T-score of &#x2013;2.5 and below indicates osteoporosis, and &#x2013;1.0 to &#x2013;2.5 indicates osteopenia, whereas a T-score of &#x2013;1.0 and above represents normal BMD.<sup><xref ref-type="bibr" rid="CIT0027">27</xref></sup></p>
</sec>
<sec id="s20004">
<title>Measurements</title>
<sec id="s30005">
<title>Socio-demographic and health information</title>
<p>Information on participants&#x2019; socio-demographic and health status was collected using an interviewer-administered structured questionnaire. The following information was captured: age, education level, housing, occupation, smoking, alcohol consumption, chronic medication use (including ART), year of first HIV diagnosis and year of ART initiation. All women brought their medication along to the study site to be recorded.</p>
</sec>
<sec id="s30006">
<title>Anthropometric measurements</title>
<p>Anthropometric measurements included height and weight, and were performed by trained postgraduate Nutrition and Dietetics students. The measurements were conducted on participants without shoes and with minimal clothing. Weight and height were measured using a calibrated digital scale and attached stadiometer (Seca 264, Hamburg, Germany), following standard procedures.<sup><xref ref-type="bibr" rid="CIT0028">28</xref></sup> Body mass index (BMI) was calculated by dividing weight in kilograms by height in metres squared. BMI cut-off points were &#x003C; 18.5 for underweight, 18.5 to &#x003C; 25 for normal weight, 25.0 to &#x003C; 30 for overweight and &#x2265; 30 kg/m<sup>2</sup> for obesity.</p>
<p><bold>Physical activity:</bold> Physical activity was assessed by a trained fieldworker using the Global Physical Activity questionnaire (GPAQ) recommended by the WHO.<sup><xref ref-type="bibr" rid="CIT0029">29</xref></sup> The questionnaire gathered information on physical activity performed during the previous 7 days in the following occupation: physical activity, transport-related physical activity and physical activity during leisure time. The time spent during the various physical activity domains in terms of frequency (days per week) and duration (minutes per day) was estimated.</p>
<p><bold>Bone mineral density, lean mass and fat mass:</bold> Bone mineral density, lean mass and fat mass were measured at all three time points by a registered radiographer using dual-energy X-ray absorptiometry (DXA) with the default Hologic settings (Hologic Discovery W, APEX system software version 2.3.1). BMD at total body, lumbar spine and left femoral neck (FN) of the hip was measured in g/cm&#x00B2;. Participants were asked to remove all jewellery and were provided with cotton gowns without any metal trimmings to wear during the DXA measurement.</p>
<p><bold>Serum vitamin D and parathyroid hormone concentration:</bold> Fasting blood samples of 5 mL were collected in serum tubes by a registered nurse, were centrifuged immediately and stored in a bio-freezer at &#x2013;80 &#x00B0;C until samples of all the study participants were collected. Serum 25(OH)D and parathyroid hormone (PTH) were measured by electrochemiluminescence (Cobas e411, Roche, Basel, Switzerland). Samples collected for each time point were analysed together in one batch with the same controls.</p>
<p><bold>Dietary data:</bold> Dietary intakes were assessed at baseline and at 1-year follow-up visits in 2018 by trained fieldworkers using a validated quantitative food frequency questionnaire, food models and a validated food picture book to estimate portion sizes.<sup><xref ref-type="bibr" rid="CIT0030">30</xref>,<xref ref-type="bibr" rid="CIT0031">31</xref></sup> Portion sizes, reported in household measures, were converted to weights. Energy and nutrient intakes (i.e. protein, fat, vitamin D and calcium) were calculated using food finder software based on the South African food composition database.<sup><xref ref-type="bibr" rid="CIT0032">32</xref></sup></p>
</sec>
</sec>
<sec id="s20007">
<title>Statistical analysis</title>
<p>The distribution of the continuous variables was assessed by histograms, QQ plots and the Kolmogorov&#x2013;Smirnov test. Descriptive statistics of socio-demographic data, physical activity, BMD at different sites, lean and fat mass, as well as serum 25(OH)D and PTH are presented as means and standard deviation (s.d.) for variables following a normal distribution or median and interquartile range (IQR) for non-normally distributed data. The percentage of participants with vitamin D deficiency and insufficiency were determined, where vitamin D deficiency was defined as serum 25(OH)D level &#x003C; 20 ng/mL (50 nmol/L) and insufficiency as 20 ng/mL &#x2013; 29 ng/mL (50 nmol/L &#x2013; 74 nmol/L) according to the Endocrine Society and International Osteoporosis Foundation cut-offs.<sup><xref ref-type="bibr" rid="CIT0033">33</xref></sup></p>
<p>Pearson&#x2019;s correlation coefficient (for data with a normal distribution) or Spearman&#x2019;s rank order correlation coefficient (for data with a non-normal distribution) was calculated to examine the correlation between serum 25(OH)D and fat mass, lean mass and whole-body BMD, spine BMD and left FN of the hip BMD, as well as possible covariates (age, alcohol intake, calcium intake, physical activity level and number of years since the HIV diagnosis). Age correlated significantly with several variables and, therefore, Pearson partial correlation with adjustment for age was also performed. Variables with a significant correlation were entered in the linear mixed models (LMMs). Variables with a non-normal distribution were logarithmically transformed before they were entered in the LMM. Differences in exposure and outcomes between groups (smokers compared with non-smokers) were assessed using the Mann&#x2013;Whitney test, because most variables had a non-normal distribution.</p>
<p>Linear mixed models were used with fat mass, lean mass and BMD, respectively, as the dependent variables (outcomes) and serum 25(OH)D as the primary exposure, with adjustment for variables identified to correlate with the exposure or outcomes (age, alcohol intake, calcium intake, and physical activity level). These models were also used with BMD as the dependent variable (outcome) and fat mass as well as lean mass as primary exposure, with adjustment for variables identified to correlate with the exposure or outcomes (age, alcohol intake, calcium intake and physical activity level). Separate models were used for whole-body BMD, spine BMD and left FN of the hip BMD. Time was treated as a fixed effect and participant as a random effect. The restricted maximum likelihood (REML) estimation method was used, and an unstructured covariance structure was specified.</p>
<p>An adapted version of Cohen&#x2019;s d is used to indicate the practical significance of the differences between the means. The original formula for Cohen&#x2019;s d for analysis of variance (ANOVA) is as follows:
<disp-formula id="FD1"><alternatives><mml:math display="block" id="M1"><mml:mrow><mml:mi>d</mml:mi><mml:mo>=</mml:mo><mml:mfrac><mml:mrow><mml:mrow><mml:mo>|</mml:mo><mml:mrow><mml:msub><mml:mover accent="true"><mml:mi>x</mml:mi><mml:mo>&#x00AF;</mml:mo></mml:mover><mml:mi>i</mml:mi></mml:msub><mml:mo>&#x2212;</mml:mo><mml:msub><mml:mover accent="true"><mml:mi>x</mml:mi><mml:mo>&#x00AF;</mml:mo></mml:mover><mml:mi>j</mml:mi></mml:msub></mml:mrow><mml:mo>|</mml:mo></mml:mrow></mml:mrow><mml:mrow><mml:msqrt><mml:mrow><mml:mi>M</mml:mi><mml:mi>S</mml:mi><mml:mi>E</mml:mi></mml:mrow></mml:msqrt></mml:mrow></mml:mfrac><mml:mo>,</mml:mo></mml:mrow></mml:math><graphic xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="HIVMED-22-1284-e001.tif"/></alternatives><label>[Eqn 1]</label></disp-formula>
where <italic>d</italic> denotes effect size, <italic>&#x1E8B;</italic><sub>i</sub> and <italic>&#x1E8B;</italic><sub>j</sub> are means of two samples and <italic>MSE</italic> is the mean standard error.<sup><xref ref-type="bibr" rid="CIT0034">34</xref></sup> In this case, however, the estimated marginal means, calculated as part of the LMM analyses, are used and the MSE is replaced by the sum of the covariance estimates. The interpretation guidelines indicate a small effect or practical non-significant d at an effect size of 0.2, an effect size of 0.5 indicates a medium effect or practical visible difference and an effect size of 0.8 indicates a large effect or practical significant difference. Statistical Package for Social Sciences (SPSS) software, version 26 (IBM Company, Armonk, New York, United States) was used for all analyses.</p>
</sec>
<sec id="s20008">
<title>Ethical considerations</title>
<p>The study was approved by the Health Research Ethics Committee of the North-West University (Project: NWU-00061-17-A1-02).</p>
</sec>
</sec>
<sec id="s0009">
<title>Results</title>
<p>The study participants&#x2019; characteristics are summarised in <xref ref-type="table" rid="T0001">Table 1</xref>. Their median duration of being diagnosed with HIV was 11 years [IQR 7&#x2013;13 years], and the median duration of using ART was 10 years (IQR 5&#x2013;13 years). Most participants (approximately 85&#x0025;) remained on ART regimen 1 (TDF, FTC, and EFV) as a cART during the 2 years of observation. Combined vitamin D deficiency and insufficiency was estimated to be 29.7&#x0025; at baseline, 42.9&#x0025; at year 1 and 49.0&#x0025; at year 2 of follow-up. Serum PTH concentrations showed an increased trend over time. Only a small proportion of study participants (10&#x0025;) were current smokers, with a median of 2 (IQR 1&#x2013;4) cigarettes per day. Only five (4.2&#x0025;) participants were previous smokers. The median intake of calcium and vitamin D in the study participants was lower than the recommended dietary intake for women, 51&#x2013;70 years old, of 1200 mg/d and 15 mcg/d, respectively.<sup><xref ref-type="bibr" rid="CIT0035">35</xref></sup></p>
<table-wrap id="T0001">
<label>TABLE 1</label>
<caption><p>Study participants&#x2019; characteristics from baseline to 2-year follow-up.</p></caption>
<table frame="hsides" rules="groups">
<thead>
<tr>
<th valign="top" align="left" rowspan="2">Variable</th>
<th valign="top" align="center" colspan="4">Baseline (2017) (<italic>n</italic> = 120)<hr/></th>
<th valign="top" align="center" colspan="4">Year 1 (2018) (<italic>n</italic> = 99)<hr/></th>
<th valign="top" align="center" colspan="4">Year 2 (2019) (<italic>n</italic> = 104)<hr/></th>
</tr>
<tr>
<th valign="top" align="center">Median</th>
<th valign="top" align="center">IQR</th>
<th valign="top" align="center"><italic>n</italic></th>
<th valign="top" align="center">&#x0025;</th>
<th valign="top" align="center">Median</th>
<th valign="top" align="center">IQR</th>
<th valign="top" align="center"><italic>n</italic></th>
<th valign="top" align="center">&#x0025;</th>
<th valign="top" align="center">Median</th>
<th valign="top" align="center">IQR</th>
<th valign="top" align="center"><italic>n</italic></th>
<th valign="top" align="center">&#x0025;</th>
</tr>
</thead>
<tbody>
<tr>
<td align="left">Age (years)</td>
<td align="center">50</td>
<td align="center">48&#x2013;55</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">51</td>
<td align="center">49&#x2013;56</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">52</td>
<td align="center"><bold>50&#x2013;57</bold></td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Weight (kg)</td>
<td align="center">66.6</td>
<td align="center">54.1&#x2013;80.0</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">68.1</td>
<td align="center">57.9&#x2013;83.0</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">67.6</td>
<td align="center">54.8&#x2013;83.9</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Height (cm)</td>
<td align="center">156.6</td>
<td align="center">151.5&#x2013;161.0</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">157.5</td>
<td align="center">152.3&#x2013;161.5</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">156.7</td>
<td align="center">151.8&#x2013;160.4</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">BMI (kg/m<sup>2</sup>)</td>
<td align="center">27.1</td>
<td align="center">22.4&#x2013;32.6</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">28.4</td>
<td align="center">23.5&#x2013;32.2</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">28.3</td>
<td align="center">23.0&#x2013;33.2</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Underweight (BMI &#x003C; 18.5 kg/m<sup>2</sup>)</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">10</td>
<td align="center">8.3</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">4</td>
<td align="center">4.0</td>
<td align="center"><bold>-</bold></td>
<td align="center"><bold>-</bold></td>
<td align="center">7</td>
<td align="center">6.73</td>
</tr>
<tr>
<td align="left">Normal BMI (18.5 kg/m<sup>2</sup> &#x2013; 24.9 kg/m<sup>2</sup>)</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">37</td>
<td align="center">30.8</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">31</td>
<td align="center">31.3</td>
<td align="center"><bold>-</bold></td>
<td align="center"><bold>-</bold></td>
<td align="center">29</td>
<td align="center">27.88</td>
</tr>
<tr>
<td align="left">Overweight (BMI 25 kg/m<sup>2</sup> &#x2013; 29.9 kg/m<sup>2</sup>)</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">27</td>
<td align="center">22.5</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">23</td>
<td align="center">23.2</td>
<td align="center"><bold>-</bold></td>
<td align="center"><bold>-</bold></td>
<td align="center">26</td>
<td align="center">25.00</td>
</tr>
<tr>
<td align="left">Obese (BMI &#x003E; 30 kg/m<sup>2</sup>) of the total</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">46</td>
<td align="center">38.3</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">41</td>
<td align="center">41.4</td>
<td align="center"><bold>-</bold></td>
<td align="center"><bold>-</bold></td>
<td align="center">42</td>
<td align="center">40.38</td>
</tr>
<tr>
<td align="left">Waist circumference (cm)</td>
<td align="center">85.0</td>
<td align="center">76.0&#x2013;97.3</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">88.6</td>
<td align="center">76.9&#x2013;96.6</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">90.8</td>
<td align="center">76.7&#x2013;101.0</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Calf circumference (cm)</td>
<td align="center">33.9</td>
<td align="center">30.0&#x2013;37.5</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">34.4</td>
<td align="center">30.7&#x2013;37.6</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">33.9 30.2&#x2013;37.7</td>
<td align="left"></td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Total BMD (g/cm<sup>2</sup>)</td>
<td align="center">1.04</td>
<td align="center">0.95&#x2013;1.12</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">1.04</td>
<td align="center">0.98&#x2013;1.14</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">1.03</td>
<td align="center">0.96&#x2013;1.11</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Spine BMD (g/cm<sup>2</sup>)</td>
<td align="center">0.84</td>
<td align="center">0.75&#x2013;0.95</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">0.88</td>
<td align="center">0.79&#x2013;0.98</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">0.87</td>
<td align="center">0.78&#x2013;0.97</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Left hip FN BMD (g/cm<sup>2</sup>)</td>
<td align="center">0.74</td>
<td align="center">0.65&#x2013;0.84</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">0.73</td>
<td align="center">0.65&#x2013;0.84</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">0.76</td>
<td align="center">0.68&#x2013;0.86</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Lean mass (kg)</td>
<td align="center">37.0</td>
<td align="center">32.9&#x2013;42.6</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">38.5</td>
<td align="center">33.8&#x2013;45.2</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">37.7</td>
<td align="center">34.0&#x2013;45.6</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Percent body fat</td>
<td align="center">38.6</td>
<td align="center">33.8&#x2013;43.6</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">39.1</td>
<td align="center">33.3&#x2013;42.8</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">39.9</td>
<td align="center">33.4&#x2013;43.6</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Serum 25(OH)D (ng/mL)<break/>(deficiency &#x003C; 20 ng/mL)</td>
<td align="center">36.6</td>
<td align="center">28.1&#x2013;44.2</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">31.5</td>
<td align="center">25.0&#x2013;41.1</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">30.1</td>
<td align="center">24.9&#x2013;37.6</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Parathyroid hormone (pg/mL)<break/>(normal range 10-55 pg/mL)</td>
<td align="center">41.3</td>
<td align="center">34.8&#x2013;58.2</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">42.5</td>
<td align="center">31.5&#x2013;56.9</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">47.0</td>
<td align="center">36.8&#x2013;61.8</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Calcium intake (mg/day)<break/>(recommended intake: 1200 mg/day)</td>
<td align="center">668.3</td>
<td align="center">413.2&#x2013;911.9</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">517.6</td>
<td align="center">352.3&#x2013;794.1</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Vitamin D intake (mcg/day)<break/>(recommended intake: 15 mcg/day)</td>
<td align="center">4.99</td>
<td align="center">3.09&#x2013;6.78</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">4.44</td>
<td align="center">2.53&#x2013;7.80</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Energy intake (kJ/day)<break/>(average energy allowance: 7980 kJ/day)</td>
<td align="center">10247</td>
<td align="center">7680&#x2013;12 514</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">9330</td>
<td align="center">6166&#x2013;11 247</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Fat intake (g/day)<break/>(recommended intake: 42-74 g/day)</td>
<td align="center">76.6</td>
<td align="center">50.0&#x2013;100.0</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">57.1</td>
<td align="center">44.5&#x2013;84.2</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Protein intake (g/day)<break/>(recommended intake: 46 g/day)</td>
<td align="center">75.6</td>
<td align="center">57.1&#x2013;93.6</td>
<td align="left"></td>
<td align="left"></td>
<td align="center">68.9</td>
<td align="center">51.0&#x2013;96.5</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Alcohol intake (g/day)</td>
<td align="center">0.0</td>
<td align="center">0.0&#x2013;0.86</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">0.0</td>
<td align="center">0.0&#x2013;1.3</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">PA (MET min/week)</td>
<td align="center">2880</td>
<td align="center">960&#x2013;7190</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">2970</td>
<td align="center">840&#x2013;6740</td>
<td align="left"></td>
<td align="left"></td>
<td align="center">3240</td>
<td align="center">2040&#x2013;4530</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Sedentary time (min/day)</td>
<td align="center">240</td>
<td align="center">150&#x2013;375</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">240</td>
<td align="center">150&#x2013;375</td>
<td align="left"></td>
<td align="left"></td>
<td align="center">240</td>
<td align="center">180&#x2013;360</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Vitamin D status<xref ref-type="table-fn" rid="TFN0001">&#x2020;</xref></td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="left"></td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Deficiency</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">12</td>
<td align="center">10.2</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">14</td>
<td align="center">14.3</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">12</td>
<td align="center">11.50</td>
</tr>
<tr>
<td align="left">Insufficiency</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">23</td>
<td align="center">19.5</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">28</td>
<td align="center">28.6</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">39</td>
<td align="center">37.50</td>
</tr>
<tr>
<td align="left">Sufficiency</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">83</td>
<td align="center">70.3</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">56</td>
<td align="center">57.1</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">53</td>
<td align="center">51.00</td>
</tr>
<tr>
<td align="left">Education</td>
<td align="center">-</td>
<td align="left"></td>
<td align="left"></td>
<td align="center">-</td>
<td align="center">-</td>
<td align="left"></td>
<td align="left"></td>
<td align="center">-</td>
<td colspan="4" align="center">-</td>
</tr>
<tr>
<td align="left">No school/primary school</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">44</td>
<td align="center">36.7</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">29</td>
<td align="center">29.3</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">31</td>
<td align="center">29.80</td>
</tr>
<tr>
<td align="left">Grade 8-11</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">44</td>
<td align="center">36.7</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">40</td>
<td align="center">40.4</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">43</td>
<td align="center">41.30</td>
</tr>
<tr>
<td align="left">Grade 12</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">31</td>
<td align="center">25.8</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">29</td>
<td align="center">29.3</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">29</td>
<td align="center">27.90</td>
</tr>
<tr>
<td align="left">Tertiary</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">1</td>
<td align="center">0.8</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">1</td>
<td align="center">1.0</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">1</td>
<td align="center">1.00</td>
</tr>
<tr>
<td align="left">Income (per month)</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="left"></td>
<td align="left"></td>
<td align="center">-</td>
<td align="center">-</td>
<td align="left"></td>
<td align="left"></td>
<td colspan="4" align="center">-</td>
</tr>
<tr>
<td align="left">None</td>
<td align="center">-</td>
<td align="left"></td>
<td align="center">6</td>
<td align="center">5</td>
<td align="center">-</td>
<td align="left"></td>
<td align="center">3</td>
<td align="center">3</td>
<td align="center">-</td>
<td align="left"></td>
<td align="center">10</td>
<td align="center">9.60</td>
</tr>
<tr>
<td align="left">&#x003C; R500.00 &#x2013; R1000.00</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">31</td>
<td align="center">25.8</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">21</td>
<td align="center">21.2</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">15</td>
<td align="center">14.40</td>
</tr>
<tr>
<td align="left">R1001.00 &#x2013; R6000.00</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">74</td>
<td align="center">61.7</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">64</td>
<td align="center">64.6</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">72</td>
<td align="center">69.20</td>
</tr>
<tr>
<td align="left">&#x003E; R6000.00</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">9</td>
<td align="center">7.5</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">11</td>
<td align="center">11.1</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">7</td>
<td align="center">6.70</td>
</tr>
<tr>
<td align="left">Hypertension</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">55</td>
<td align="center">45.8</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">46</td>
<td align="center">46.5</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">48</td>
<td align="center">46.20</td>
</tr>
</tbody>
</table>
<table-wrap-foot>
<fn><p>BMI, body mass index; BMD, bone mineral density; FN, femoral neck; Ca, calcium; IQR, interquartile range; MET, metabolic equivalent; PA, physical activity; 25(OH)D, 25 hydroxyvitamin D.</p></fn>
<fn id="TFN0001"><label>&#x2020;</label><p>, Participant numbers vary because of missing values for some biochemical values.</p></fn>
</table-wrap-foot>
</table-wrap>
<p><xref ref-type="table" rid="T0002">Table 2</xref> shows correlations between continuous variables according to the distribution of data. Serum 25(OH)D did not correlate with any of the BMD outcomes or total percent fat. Total percent body fat reported a moderate positive correlation with total spine BMD (<italic>r</italic> = 0.319; <italic>P</italic> &#x003C; 0.0001) and left hip FN BMD (<italic>r</italic> = 0.408; <italic>P</italic> &#x003C; 0.0001); however, it had a weak positive correlation with total BMD (<italic>r</italic> = 0.239; <italic>P</italic> = 0.009). Lean mass had a weak negative correlation with age (<italic>r</italic> = &#x2013;0.219; <italic>P</italic> = 0.016) and a strong positive correlation with BMI (<italic>r</italic> = 0.824; <italic>P</italic> &#x003C; 0.0001).</p>
<table-wrap id="T0002">
<label>TABLE 2</label>
<caption><p>Correlation between serum vitamin D, lifestyle, health and body composition variables: Pearson&#x2019;s correlation between serum vitamin D and body composition variables.</p></caption>
<table frame="hsides" rules="groups">
<thead>
<tr>
<th valign="top" align="left" rowspan="2">Variable</th>
<th valign="top" align="center" colspan="2">Total spine BMD<hr/></th>
<th valign="top" align="center" colspan="2">Left hip BMD<hr/></th>
<th valign="top" align="center" colspan="2">Total BMD<hr/></th>
<th valign="top" align="center" colspan="2">Total percent age fat<hr/></th>
</tr>
<tr>
<th valign="top" align="center"><italic>r</italic></th>
<th valign="top" align="center"><italic>P</italic></th>
<th valign="top" align="center"><italic>r</italic></th>
<th valign="top" align="center"><italic>P</italic></th>
<th valign="top" align="center"><italic>r</italic></th>
<th valign="top" align="center"><italic>P</italic></th>
<th valign="top" align="center"><italic>r</italic></th>
<th valign="top" align="center"><italic>P</italic></th>
</tr>
</thead>
<tbody>
<tr>
<td align="left">Serum vitamin D (ng/mL)</td>
<td align="center">&#x2212;0.003</td>
<td align="center">0.970</td>
<td align="center">0.001</td>
<td align="center">0.990</td>
<td align="center">0.000</td>
<td align="center">0.999</td>
<td align="center">&#x2212;0.072</td>
<td align="center">0.437</td>
</tr>
<tr>
<td align="left">Percent body fat (&#x0025;)</td>
<td align="center">0.319</td>
<td align="center">&#x003C; 0.0001</td>
<td align="center">0.408</td>
<td align="center">&#x003C; 0.0001</td>
<td align="center">0.239</td>
<td align="center">0.009</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
</tbody>
</table>
<table-wrap-foot>
<fn><p>BMD, bone mineral density.</p></fn>
</table-wrap-foot>
</table-wrap>
<p>A comparison between body composition outcomes and vitamin D status of smokers and non-smokers at baseline revealed no difference in total lean mass, total spine BMD, total BMD, total left hip FN BMD, BMI or vitamin D status; the only difference was in total percent body fat (<italic>P</italic> = 0.032). There was no correlation between serum 25(OH)D and PTH at baseline (<italic>r</italic> = &#x2013;0.11, <italic>P</italic> = 0.24), after 1 year (<italic>r</italic> = &#x2013;0.16, <italic>P</italic> = 0.12) or after 2 years of follow-up (<italic>r</italic> = &#x2013;0.14, <italic>P</italic> = 0.17).</p>
<p>Variables with a non-normal distribution that showed significant correlations from the Spearman correlation were log transformed, and similar correlations were found. New significant correlations that were observed included a weak negative correlation between BMI and serum 25(OH)D (<italic>r</italic> = &#x2013;0.189; <italic>P</italic> = 0.04). Furthermore, BMI had moderate positive correlations with total BMD, total spine BMD and left hip FN BMD (<italic>P</italic> &#x003C; 0.0001).</p>
<p>Body mass index, however, had a strong correlation with total percent fat (<italic>r</italic> = 0.841; <italic>P</italic> &#x003C; 0.0001). Age displayed a weak inverse correlation with total spine BMD (<italic>r</italic> = &#x2013;0.242; <italic>P</italic> = 0.008) and a moderate inverse correlation with total BMD (<italic>r</italic> = &#x2013;0.400; <italic>P</italic> &#x003C; 0.0001) and left hip BMD (<italic>r</italic> = &#x2013;0.346; <italic>P</italic> &#x003C; 0.0001). Physical activity correlated positively although weakly with total BMD (<italic>r</italic> = 0.227; <italic>P</italic> = 0.014) and left hip FN BMD (<italic>r</italic> = 0.235; <italic>P</italic> = 0.011).</p>
<p>Lean mass had a moderate positive correlation with total spine BMD (<italic>r</italic> = 0.473; <italic>P</italic> &#x003C; 0.0001), as well as total BMD (r = 0.429; <italic>P</italic> &#x003C; 0.0001), and a strong positive correlation with left hip FN BMD (<italic>r</italic> = 0.563; <italic>P</italic> &#x003C; 0.0001).</p>
<p>These results did not change after adjustment for age, except that the correlation between physical activity and total BMD was no longer significant (<italic>r</italic> = 0.177; <italic>P</italic> = 0.06).</p>
<sec id="s20010">
<title>Changes of study exposure variable and body composition outcomes over a 2-year period</title>
<p>The changes were assessed over the three time points of measurements from baseline to 2-year follow-up.</p>
<p>Changes of main exposure and body composition outcomes are presented in <xref ref-type="fig" rid="F0002">Figures 2</xref>, <xref ref-type="fig" rid="F0003">3</xref> and <xref ref-type="fig" rid="F0004">4</xref>. The serum 25(OH)D concentration declined from baseline through to year 2 follow-up (<italic>P</italic> &#x003C; 0.0001) with an effect size of 0.39, indicating a practically visible difference. The Bonferroni pairwise comparison showed a significant decline in serum 25(OH)D concentration from baseline to year 1 follow-up and from baseline to year 2 follow-up. Total BMD increased from baseline to year 1 follow-up, but with practical non-significant difference (effect size = 0.03). Similarly, left hip FN BMD increased over 2 years; however, the difference was practically non-significant (effect size of 0.06). Changes in left hip FN BMD over the 2 years were between baseline and year 2 follow-up and year 1 and year 2 follow-up. There were no significant changes in PTH from baseline over the two years, although there was an increasing trend over time (<xref ref-type="table" rid="T0001">Table 1</xref>). Lean mass had a practically non-significant difference between baseline and year 2 follow-up (effect size 0.02), whereas percent body fat mass had a practically visible difference over the two years (effect size 0.66).</p>
<fig id="F0002">
<label>FIGURE 2</label>
<caption><p>Bone mineral density changes over 2 years from baseline.</p></caption>
<graphic xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="HIVMED-22-1284-g002.tif"/>
</fig>
<fig id="F0003">
<label>FIGURE 3</label>
<caption><p>Serum 25-hydroxyvitamin D changes over 2 years from baseline.</p></caption>
<graphic xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="HIVMED-22-1284-g003.tif"/>
</fig>
<fig id="F0004">
<label>FIGURE 4</label>
<caption><p>Lean and fat mass changes over 2 years from baseline.</p></caption>
<graphic xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="HIVMED-22-1284-g004.tif"/>
</fig>
</sec>
<sec id="s20011">
<title>Association between serum vitamin D concentration and body composition over time</title>
<p>Linear mixed models were used to describe the association between serum 25(OH)D as the main exposure and body composition outcomes that included percent body fat, lean mass (logarithmically transformed), total BMD, lumbar spine BMD and left hip FN BMD. Associations between body composition components (fat mass, lean mass and BMD) were also determined by LMMs. Estimates of the associations were adjusted for education level, household income, age, physical activity, duration of ART and alcohol intake as potential confounders. <xref ref-type="table" rid="T0003">Table 3</xref> presents the associations. All models showed an improvement in goodness of fit after adding covariates to the crude models, as demonstrated by the Schwarz Bayesian information criterion (BIC).</p>
<table-wrap id="T0003">
<label>TABLE 3</label>
<caption><p>Correlation between serum vitamin D, lifestyle, health and body composition variables: Spearman&#x2019;s correlations between lifestyle, demographic variables and body composition.</p></caption>
<table frame="hsides" rules="groups">
<thead>
<tr>
<th valign="top" align="left" rowspan="2">Variable</th>
<th valign="top" align="center" colspan="2">Lean mass<hr/></th>
<th valign="top" align="center" colspan="2">Total physical activity MET (min/week)<hr/></th>
<th valign="top" align="center" colspan="2">HIV duration (years)<hr/></th>
<th valign="top" align="center" colspan="2">Duration of ART use<hr/></th>
<th valign="top" align="center" colspan="2">Ca intake<hr/></th>
</tr>
<tr>
<th valign="top" align="center"><italic>r</italic></th>
<th valign="top" align="center"><italic>P</italic></th>
<th valign="top" align="center"><italic>r</italic></th>
<th valign="top" align="center"><italic>P</italic></th>
<th valign="top" align="center"><italic>r</italic></th>
<th valign="top" align="center"><italic>P</italic></th>
<th valign="top" align="center"><italic>r</italic></th>
<th valign="top" align="center"><italic>P</italic></th>
<th valign="top" align="center"><italic>r</italic></th>
<th valign="top" align="center"><italic>P</italic></th>
</tr>
</thead>
<tbody>
<tr>
<td align="left">Age (years)</td>
<td align="center">&#x2212;0.219<xref ref-type="table-fn" rid="TFN0002">*</xref></td>
<td align="center">0.016</td>
<td align="center">&#x2212;0.062</td>
<td align="center">0.503</td>
<td align="center">&#x2212;0.042</td>
<td align="center">0.648</td>
<td align="center">&#x2212;0.014</td>
<td align="center">0.883</td>
<td align="center">&#x2212;0.016</td>
<td align="center">0.864</td>
</tr>
<tr>
<td align="left">BMI (kg/m<sup>2</sup>)</td>
<td align="center">0.824<xref ref-type="table-fn" rid="TFN0003">**</xref></td>
<td align="center">&#x003C; 0.0001</td>
<td align="center">0.115</td>
<td align="center">0.210</td>
<td align="center">0.042</td>
<td align="center">0.646</td>
<td align="center">&#x2212;0.017</td>
<td align="center">0.852</td>
<td align="center">&#x2212;0.018</td>
<td align="center">0.842</td>
</tr>
<tr>
<td align="left">Physical activity (MET min/week)</td>
<td align="center">0.147</td>
<td align="center">0.108</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">&#x2212;0.012</td>
<td align="center">0.899</td>
<td align="center">&#x2212;0.051</td>
<td align="center">0.578</td>
<td align="center">0.004</td>
<td align="center">0.966</td>
</tr>
<tr>
<td align="left">HIV duration (years)</td>
<td align="center">0.032</td>
<td align="center">0.731</td>
<td align="center">&#x2212;0.012</td>
<td align="center">0.899</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">0.856<xref ref-type="table-fn" rid="TFN0003">**</xref></td>
<td align="center">&#x003C; 0.0001</td>
<td align="center">&#x2212;0.083</td>
<td align="center">0.368</td>
</tr>
<tr>
<td align="left">Duration of ART use (years)</td>
<td align="center">&#x2212;0.038</td>
<td align="center">0.684</td>
<td align="center">&#x2212;0.051</td>
<td align="center">0.578</td>
<td align="center">0.856<xref ref-type="table-fn" rid="TFN0003">**</xref></td>
<td align="center">&#x003C; 0.0001</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">&#x2212;0.131</td>
<td align="center">0.157</td>
</tr>
</tbody>
</table>
<table-wrap-foot>
<fn><p>ART, antiretroviral therapy; BMI, body mass index; MET, metabolic equivalent.</p></fn>
<fn id="TFN0002"><label>*</label><p>, significant correlation, <italic>P</italic> &#x003C; 0.05;</p></fn>
<fn id="TFN0003"><label>**</label><p>, significant correlation, <italic>P</italic> &#x003C; 0.01.</p></fn>
</table-wrap-foot>
</table-wrap>
<p>The model with the lowest BIC was selected as the best model.</p>
<p>Serum 25(OH)D was neither associated with any of the three BMD outcomes, nor with percent body fat or lean mass. However, serum 25(OH)D showed a significant association with BMI in the unadjusted model (<italic>P</italic> = 0.024); however, there was no significant association after adjusting for education level, household income, age, physical activity and alcohol intake. There was a positive association between physical activity and left hip FN BMD. Age was consistently inversely associated with all body composition outcomes. Both percent fat mass and lean mass were associated with left hip FN BMD and total BMD, but not with total spine BMD (<xref ref-type="table" rid="T0004">Table 4</xref>).</p>
<table-wrap id="T0004">
<label>TABLE 4</label>
<caption><p>Association between serum vitamin D and body composition and interdependent associations between body composition variables.</p></caption>
<table frame="hsides" rules="groups">
<thead>
<tr>
<th valign="top" align="left" rowspan="2">Variable</th>
<th valign="top" align="center" colspan="2">Total BMD<hr/></th>
<th valign="top" align="center" colspan="2">Total spine BMD<hr/></th>
<th valign="top" align="center" colspan="2">Left hip FN BMD<hr/></th>
<th valign="top" align="center" colspan="2">Percentage body fat<hr/></th>
<th valign="top" align="center" colspan="2">Lean mass<hr/></th>
</tr>
<tr>
<th valign="top" align="center">Mean estimate</th>
<th valign="top" align="center"><italic>P</italic></th>
<th valign="top" align="center">Mean estimate</th>
<th valign="top" align="center"><italic>P</italic></th>
<th valign="top" align="center">Mean estimate</th>
<th valign="top" align="center"><italic>P</italic></th>
<th valign="top" align="center">Mean estimate</th>
<th valign="top" align="center"><italic>P</italic></th>
<th valign="top" align="center">Mean estimate</th>
<th valign="top" align="center"><italic>P</italic></th>
</tr>
</thead>
<tbody>
<tr>
<td align="left" colspan="11"><bold>Association between serum vitamin D and body composition</bold></td>
</tr>
<tr>
<td align="left">Age (years)</td>
<td align="center">&#x2212;0.009</td>
<td align="center">&#x003C; 0.0001</td>
<td align="center">0.068</td>
<td align="center">0.031</td>
<td align="center">&#x2212;0.008</td>
<td align="center">&#x003C; 0.0001</td>
<td align="center">&#x2212;0.105</td>
<td align="center">0.406</td>
<td align="center">&#x2212;0.004</td>
<td align="center">0.032</td>
</tr>
<tr>
<td align="left">Education level</td>
<td align="center">0.021</td>
<td align="center">0.836</td>
<td align="center">0.137</td>
<td align="center">0.467</td>
<td align="center">&#x2212;0.006</td>
<td align="center">0.585</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Household income</td>
<td align="center">0.005</td>
<td align="center">0.519</td>
<td align="center">0.125</td>
<td align="center">0.364</td>
<td align="center">0.020</td>
<td align="center">0.010</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Duration of ART (years)</td>
<td align="center">&#x2212;0.011</td>
<td align="center">0.545</td>
<td align="center">0.214</td>
<td align="center">0.511</td>
<td align="center">&#x2212;0.001</td>
<td align="center">0.562</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Alcohol intake (g)</td>
<td align="center">0.001</td>
<td align="center">0.415</td>
<td align="center">&#x2212;0.006</td>
<td align="center">0.820</td>
<td align="center">&#x2212;0.0001</td>
<td align="center">0.894</td>
<td align="center">&#x2212;0.004</td>
<td align="center">0.943</td>
<td align="center">0.0008</td>
<td align="center">0.573</td>
</tr>
<tr>
<td align="left">Physical activity (MET min/week)</td>
<td align="center">0.032</td>
<td align="center">0.067</td>
<td align="center">&#x2212;0.118</td>
<td align="center">0.708</td>
<td align="center">0.041</td>
<td align="center">0.021</td>
<td align="center">0.558</td>
<td align="center">0.323</td>
<td align="center">0.0001</td>
<td align="center">0.994</td>
</tr>
<tr>
<td align="left">Serum 25(OH)D (ng/mL)</td>
<td align="center">&#x2212;0.951</td>
<td align="center">0.886</td>
<td align="center">&#x2212;0.003</td>
<td align="center">0.784</td>
<td align="center">&#x2212;8.20</td>
<td align="center">0.904</td>
<td align="center">&#x2212;0.035</td>
<td align="center">0.404</td>
<td align="center">&#x2212;0.001</td>
<td align="center">0.131</td>
</tr>
<tr>
<td align="left" colspan="11"><bold>Interdependent associations between &#x0025;BF, lean mass and BMD</bold></td>
</tr>
<tr>
<td align="left">Age (years)</td>
<td align="center">&#x2212;0.009</td>
<td align="center">&#x003C; 0.0001</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Education level</td>
<td align="center">&#x2212;0.001</td>
<td align="center">0.898</td>
<td align="center">0.141</td>
<td align="center">0.440</td>
<td align="center">&#x2212;0.009</td>
<td align="center">0.299</td>
<td align="center">-</td>
<td align="left"></td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Household income</td>
<td align="center">0.005</td>
<td align="center">0.496</td>
<td align="center">0.125</td>
<td align="center">0.353</td>
<td align="center">0.021</td>
<td align="center">0.003</td>
<td align="center">-</td>
<td align="left"></td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Duration of ART (years)</td>
<td align="center">&#x2212;0.0009</td>
<td align="center">0.582</td>
<td align="center">0.020</td>
<td align="center">0.526</td>
<td align="center">&#x2212;0.001</td>
<td align="center">0.482</td>
<td align="center">-</td>
<td align="left"></td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Alcohol intake (g)</td>
<td align="center">0.001</td>
<td align="center">0.359</td>
<td align="center">&#x2212;0.007</td>
<td align="center">0.772</td>
<td align="center">&#x2212;2.609</td>
<td align="center">0.984</td>
<td align="center">-</td>
<td align="left"></td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Physical activity (MET min/week)</td>
<td align="center">0.027</td>
<td align="center">0.112</td>
<td align="center">&#x2212;0.072</td>
<td align="center">0.817</td>
<td align="center">0.029</td>
<td align="center">0.070</td>
<td align="center">-</td>
<td align="left"></td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Percent body fat (&#x0025;)</td>
<td align="center">0.003</td>
<td align="center">0.004</td>
<td align="center">&#x2212;0.031</td>
<td align="center">0.147</td>
<td align="center">0.006</td>
<td align="center">&#x003C; 0.0001</td>
<td align="center">-</td>
<td align="left"></td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left" colspan="11"><bold>Interdependent association between lean mass and BMD</bold></td>
</tr>
<tr>
<td align="left">Age (years)</td>
<td align="center">&#x2212;0.008</td>
<td align="center">&#x003C; 0.0001</td>
<td align="center">0.067</td>
<td align="center">0.032</td>
<td align="center">&#x2212;0.007</td>
<td align="center">&#x003C; 0.0001</td>
<td align="center">-</td>
<td align="left"></td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Education level</td>
<td align="center">0.001</td>
<td align="center">0.911</td>
<td align="center">0.128</td>
<td align="center">0.487</td>
<td align="center">&#x2212;0.006</td>
<td align="center">0.541</td>
<td align="center">-</td>
<td align="left"></td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Household income</td>
<td align="center">0.005</td>
<td align="center">0.511</td>
<td align="center">0.127</td>
<td align="center">0.349</td>
<td align="center">0.020</td>
<td align="center">0.005</td>
<td align="center">-</td>
<td align="left"></td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Duration of ART (years)</td>
<td align="center">&#x2212;0.001</td>
<td align="center">0.530</td>
<td align="center">0.020</td>
<td align="center">0.528</td>
<td align="center">&#x2212;0.001</td>
<td align="center">0.451</td>
<td align="center">-</td>
<td align="left"></td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Alcohol intake (g/day)</td>
<td align="center">0.001</td>
<td align="center">0.399</td>
<td align="center">&#x2212;0.006</td>
<td align="center">0.807</td>
<td align="center">&#x2212;0.0002</td>
<td align="center">0.857</td>
<td align="center">-</td>
<td align="left"></td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Physical activity (MET min/week)</td>
<td align="center">0.033</td>
<td align="center">0.051</td>
<td align="center">&#x2212;0.128</td>
<td align="center">0.682</td>
<td align="center">0.041</td>
<td align="center">0.016</td>
<td align="center">-</td>
<td align="left"></td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
<tr>
<td align="left">Lean mass (kg)</td>
<td align="center">0.256</td>
<td align="center">0.001</td>
<td align="center">&#x2212;0.258</td>
<td align="center">0.854</td>
<td align="center">0.301</td>
<td align="center">&#x003C; 0.0001</td>
<td align="center">-</td>
<td align="left"></td>
<td align="center">-</td>
<td align="center">-</td>
</tr>
</tbody>
</table>
<table-wrap-foot>
<fn><p>ART, antiretroviral therapy; BMD, bone mineral density; FN, femoral neck; MET, metabolic equivalent.</p></fn>
</table-wrap-foot>
</table-wrap>
</sec>
</sec>
<sec id="s0012">
<title>Discussion</title>
<p>This 2-year longitudinal study focused on investigating the association between serum 25(OH)D and body composition (lean mass, fat mass and BMD) in South African postmenopausal women living with HIV and on ART. According to the Endocrine Society and International Osteoporosis Foundation cut-offs for vitamin D status by Valcour et al.,<sup><xref ref-type="bibr" rid="CIT0033">33</xref></sup> serum 25(OH)D insufficiency (deficiency and insufficiency) increased from 29.7&#x0025; at baseline to 49.0&#x0025; at year 2 of follow-up. Despite a significant decrease in serum 25(OH)D over time, there were practically no changes in BMD over the 2 years. There was no association between serum 25(OH)D concentration and total BMD, spine BMD, left hip FN BMD, lean mass or &#x0025;BF consistently throughout the study period. From the LMMs on the interdependent associations between body composition components, lean mass and fat mass showed positive associations with total BMD and left hip FN BMD but not with total spine BMD. Lean mass proved to be stronger predictor of BMD than fat mass.</p>
<p>The study findings on vitamin D status (insufficiency and deficiency prevalence) correspond with those from some observational studies amongst postmenopausal women populations.<sup><xref ref-type="bibr" rid="CIT0036">36</xref>,<xref ref-type="bibr" rid="CIT0037">37</xref>,<xref ref-type="bibr" rid="CIT0038">38</xref></sup> Kuchuk et al.<sup><xref ref-type="bibr" rid="CIT0039">39</xref></sup> reported similar serum 25(OH)D deficiency levels in both summer and winter amongst postmenopausal women from 29 countries across the world. Serum 25(OH)D concentrations also declined during the 2-year study period in the Dallas Heart Study on a multi-ethnic adult population in Dallas, Texas, United States.<sup><xref ref-type="bibr" rid="CIT0040">40</xref></sup></p>
<p>Vitamin D is primarily known for an association with BMD via the homeostasis of calcium and phosphate.<sup><xref ref-type="bibr" rid="CIT0041">41</xref></sup></p>
<p>There was no association observed between serum 25(OH)D and total BMD, left hip FN BMD and total spine BMD over a follow-up period of two years. The study findings are in agreement with a number of studies, including randomised controlled trials (RCTs) with vitamin D supplementation.<sup><xref ref-type="bibr" rid="CIT0042">42</xref>,<xref ref-type="bibr" rid="CIT0043">43</xref></sup> A cross-sectional study by Kamineni et al.<sup><xref ref-type="bibr" rid="CIT0044">44</xref></sup> in India amongst postmenopausal women revealed findings similar to this study, where no correlation was observed between serum 25(OH)D and BMD. However, a cross-sectional study amongst Chinese postmenopausal women found positive correlations between serum 25(OH)D and BMD outcomes at lumbar spine, total hip and FN.<sup><xref ref-type="bibr" rid="CIT0045">45</xref></sup> Differences between the findings of these studies and the current study could be partially explained by differences in menopause duration, duration of sunlight exposure amongst the women, genetic factors and ethnicity.<sup><xref ref-type="bibr" rid="CIT0044">44</xref></sup></p>
<p>Study observation period is likely another plausible reason for the lack of association between serum 25(OH) and BMD. Changes in BMD take a long time to manifest and, hence, the duration could have been inadequate to detect noticeable significant changes in this study. Hamill et al.<sup><xref ref-type="bibr" rid="CIT0046">46</xref></sup> observed a cohort of urban black HIV-infected South African premenopausal women over a period of 24 months. A significant finding was the attenuation of bone mass loss beyond 12 months up to 24 months in the HIV-infected group on ART. Although the participants were premenopausal women, this signifies that bone loss in HIV-infected patients within the first 12 months on ART could be transient. Our study&#x2019;s participants showed a small, but significant, BMD increase at left FN BMD and total BMD, but no change at total spine BMD. Other authors had suggested a follow-up longer than 24 months to ascertain BMD changes.<sup><xref ref-type="bibr" rid="CIT0046">46</xref></sup> This study&#x2019;s participants had an average ART use duration of 9 years, which might explain BMD stabilisation. Information about previous ART regimens could not be determined; however, it is likely that most women received first-line ART regimens at the public outpatient clinics and could have been switched to the present first-line regimen (TDF, FTC, EFV) soon after these fixed dose combinations became available in 2013.<sup><xref ref-type="bibr" rid="CIT0047">47</xref></sup> Therefore, most women have been exposed to TDF for three years or longer.</p>
<p>Despite the lack of association between serum 25(OH)D and BMD, we reported a decline in serum 25(OH)D levels from baseline to two years; however, the effect size was relatively small. This decrease may be related to the HIV status of the women. A high prevalence of vitamin D deficiency has been described amongst HIV-infected patients.<sup><xref ref-type="bibr" rid="CIT0010">10</xref></sup> The inflammatory processes associated with HIV infection and ART metabolism both alter vitamin D metabolism and may have been associated with the decline in serum 25(OH)D levels during the observation period.<sup><xref ref-type="bibr" rid="CIT0048">48</xref></sup></p>
<p>Very low serum 25(OH)D concentrations trigger PTH surge, which leads to bone demineralisation as a compensatory measure to maintain balance in serum calcium.<sup><xref ref-type="bibr" rid="CIT0049">49</xref></sup> The decline in serum 25(OH)D concentrations probably explains the small, although non-significant, progressive increase in PTH, which was probably insufficient to lead to a decline in BMD. In agreement with this study&#x2019;s findings, Kota et al.<sup><xref ref-type="bibr" rid="CIT0050">50</xref></sup> reported no direct association between serum 25(OH)D and BMD. However, they found a stronger inverse association with serum 25(OH)D and PTH, indicating that low serum 25(OH)D level was indirectly associated with low BMD. Contrary findings to ours were reported in a 12-months longitudinal study amongst urban black South African premenopausal women. An increase in serum 25(OH)D regardless of the HIV status was reported over 12 months.<sup><xref ref-type="bibr" rid="CIT0051">51</xref></sup> The obvious difference between the two studies is age of the participants, where the study participants were postmenopausal women (mean age: 50 years), whereas the other study included premenopausal women.</p>
<p>Aging is a known risk factor for hypovitaminosis D through decreased vitamin D receptors and consequent alteration of vitamin D metabolism.<sup><xref ref-type="bibr" rid="CIT0052">52</xref></sup> We also found a non-significant inverse correlation between serum 25(OH)D concentration and age. A longitudinal study in Amsterdam reported a small decline in serum 25(OH)D levels in older participants (65&#x2013;88 years) over 13 years, which is in agreement with the study findings.<sup><xref ref-type="bibr" rid="CIT0053">53</xref></sup> Poopedi et al.<sup><xref ref-type="bibr" rid="CIT0054">54</xref></sup> affirmed progressive fluctuations in serum 25(OH)D levels in a study amongst healthy adolescents over 10 years. These progressive changes in serum 25(OH)D levels observed in longitudinal studies, as well as this study, signify that single measurements are unreliable for determining associations between serum 25(OH)D and diseases.</p>
<p>This study reported no association between serum 25(OH)D and percent body fat or lean mass; however, there was a weak negative correlation with BMI. In agreement with this finding, there is a recent cross-sectional study amongst postmenopausal women, which reported an inverse correlation between serum 25(OH)D and anthropometric measurements, including BMI.<sup><xref ref-type="bibr" rid="CIT0055">55</xref></sup> BMI is used as a proxy for adiposity, and the sequestration theory provides a probable explanation for the inverse association displayed between body fat and serum 25(OH)D.<sup><xref ref-type="bibr" rid="CIT0056">56</xref></sup></p>
<p>In a cross-sectional study, however, Li et al.<sup><xref ref-type="bibr" rid="CIT0045">45</xref></sup> reported no association between BMI and serum 25(OH)D in Chinese postmenopausal women. The authors argued that their result was based on the unique body composition of the Chinese women, characterised by a lower prevalence of obesity than in other ethnic groups. This emphasises the role of ethnicity in the interaction between serum 25(OH)D and body composition. The study participants had a relatively high prevalence rate of overweight and obesity, which is in the range of 22.5&#x0025; &#x2013; 25.7&#x0025; and 38.3&#x0025; &#x2013; 40.0&#x0025;, respectively, over two years.</p>
<p>Previous observational studies have described other known determinants of BMD; however, the relative contribution of lean mass and fat mass to BMD remains a contentious subject. The data of this study showed that both lean mass and percent fat mass were positively associated with left hip FN BMD and total BMD, but not with total spine BMD. However, lean mass was a stronger predictor of BMD than fat mass. This result is a replication of findings from other observational studies amongst postmenopausal women.<sup><xref ref-type="bibr" rid="CIT0057">57</xref>,<xref ref-type="bibr" rid="CIT0058">58</xref>,<xref ref-type="bibr" rid="CIT0059">59</xref></sup> Similarly, a systematic review by Ho-Pham et al.<sup><xref ref-type="bibr" rid="CIT0060">60</xref></sup> proved lean mass to be a stronger determinant of BMD compared with fat mass. This signifies that the interdependent interactions between body composition components can be influenced by menopause status. The association between fat mass and BMD is probably mediated by the increased load placed on the skeleton, whereas lean mass influences BMD through increased mechanical stress mediated by muscle on the skeleton. Both mediators act as stimuli for osteogenesis.<sup><xref ref-type="bibr" rid="CIT0061">61</xref>,<xref ref-type="bibr" rid="CIT0062">62</xref></sup></p>
<p>A significant proportion of the women in this study were overweight (22.5&#x0025; and 25.7&#x0025; at baseline and 2-year follow-up, respectively) and obese (38.3&#x0025; at baseline and 40.0&#x0025; at 2-year follow-up). We reported a quite unusual finding of a small, but significant, fat mass decline and lean mass increase in the women during the 2-year study period, in contrast with normal aging changes.<sup><xref ref-type="bibr" rid="CIT0057">57</xref></sup> The results of this study revealed a significant positive association between physical activity and left hip FN BMD, the site most prone to fracture in postmenopausal women. Such findings were reported previously in a Canadian retrospective study amongst postmenopausal women.<sup><xref ref-type="bibr" rid="CIT0063">63</xref></sup></p>
<p>Apart from serum 25(OH)D concentration, known risk factors for low BMD, such as dark skin, HIV, ART and advanced age (postmenopausal status), were present in the study participants. Physical activity levels were relatively good, signifying probable adequate exposure to sunlight and adequate stimuli to maintaining bone health. We further reported low exposure to lifestyle risk activities such as smoking and alcohol intake. These factors may further explain the small decrease in serum 25(OH)D levels and the preserved BMD over a follow-up period of two years. Diet is another known modifiable risk factor for optimal bone health, with the value of specific nutrients, such as dietary calcium and vitamin D, well established.<sup><xref ref-type="bibr" rid="CIT0064">64</xref></sup></p>
<p>The dietary calcium and vitamin D intake of participants were relatively low compared with dietary recommendations (1200 mg and 15 mcg, respectively, per day).<sup><xref ref-type="bibr" rid="CIT0035">35</xref></sup> These results are in line with those of previous studies amongst South African women.<sup><xref ref-type="bibr" rid="CIT0065">65</xref></sup> Foods are poor sources of vitamin D. Therefore, most of the daily input of vitamin D comes from cutaneous synthesis rather than from diet.<sup><xref ref-type="bibr" rid="CIT0064">64</xref></sup> In countries where foods are fortified with vitamin D, these foods are the major dietary source of vitamin D<sup><xref ref-type="bibr" rid="CIT0064">64</xref></sup>; however, few foods are enriched with vitamin D in South Africa.<sup><xref ref-type="bibr" rid="CIT0065">65</xref></sup></p>
</sec>
<sec id="s0013">
<title>Recommendations</title>
<p>Urbanisation of black South African women may increase the risk of low bone mass because of low vitamin D status, low calcium intake and high bone turnover.<sup><xref ref-type="bibr" rid="CIT0065">65</xref></sup> Hence, there is a need for advising women on the intake of vitamin D and calcium. As the largest source of vitamin D is through cutaneous synthesis, an increase in outdoor activities and exposure to the sun may help to improve the vitamin D status.</p>
</sec>
<sec id="s0014">
<title>Limitations and strengths</title>
<p>Limitations and strengths existed in this study that need to be acknowledged. Firstly, this study used an observational design with limited control over other potential covariates, and no HIV-negative reference group was included. Secondly, all participants originated from the same locality in the North West province of South Africa and, therefore, generalisation of the findings to a wider population across South Africa and beyond should be performed cautiously. Thirdly, the sample size was relatively small, thereby undermining the power for subgroup analysis, that is, subgroups based on the vitamin D status. It was challenging to recruit more participants, because most HIV-infected women from the outpatient clinics were premenopausal. The findings of no statistically significant associations could, therefore, be because of type II error, and a larger sample could potentially have yielded a different result.</p>
<p>Regarding strengths, to the best of our knowledge, this is the first longitudinal study on an association between serum 25(OH)D and body composition in South African postmenopausal women living with HIV and on ART in South Africa. A longitudinal design provides stronger evidence of probable associations when compared with a cross-sectional study design. Future studies should consider all determinants of serum 25(OH)D concentration and body composition, such as duration of sunlight exposure, as well as dietary assessment over a longer duration.</p>
</sec>
<sec id="s0015">
<title>Conclusion</title>
<p>This 2-year longitudinal study indicates no association between serum 25(OH)D concentration and BMD over time. However, BMI was inversely associated with serum 25(OH)D concentration. In terms of the relative contribution of lean mass and fat mass to maintenance of BMD, lean mass is a stronger determinant of BMD than fat mass. South African postmenopausal women living with HIV and on ART maintained their BMD at all three sites over a period of two years. The study further suggests that BMD decreased with increasing age, whilst physical activity was protective against a decrease in BMD in this group of women. The results of this study may inform strategies to prevent fractures in postmenopausal women living with HIV. Increasing lean mass through physical activity could be important to preventing frailty and morbidity in this vulnerable group.</p>
</sec>
</body>
<back>
<ack>
<title>Acknowledgements</title>
<p>The authors acknowledge the assistance of registered nurses, Ms C.M. Lessing and Ms A. Anthony, who acted as study coordinators and assisted with the blood sample collection. Ms G. Wood performed language editing of the manuscript. Postdoctoral associate Dr Patricia Ukegbu and postgraduate students Shams Bakali, Phillip Buys and Persuade Makore assisted with study coordination and data collection.</p>
<sec id="s20016" sec-type="COI-statement">
<title>Competing interests</title>
<p>The authors declare that they have no financial or personal relationships, which may have inappropriately influenced them in writing this article.</p>
</sec>
<sec id="s20017">
<title>Authors&#x2019; contributions</title>
<p>S.M., MSc student, and C.E., PhD student, collected data, drafted the manuscript and analysed the data. J.C. contributed to the manuscript preparation and participated in data collection. M.C. supervised statistical analysis and approved the final version of the manuscript. C.M.C.M. supervised biochemical analyses and approved the final version of the manuscript. H.S.K. conceptualised the study, supervised data collection and quality control, interpreted the data and approved the final version of the article.</p>
</sec>
<sec id="s20018">
<title>Funding information</title>
<p>The authors acknowledge financial support from the Support for Nutrition Research in Africa (SUNReA), the Sugar Association of South Africa, Massey University, New Zealand, and the South African National Research Foundation (NRF TWAS programme) [UID 1055500]. The funders were not involved in any aspect of the design, implementation, analysis, or interpretation and write-up of the study. Any opinion, findings and conclusion or recommendation expressed in this article is that of the authors, and the NRF does not accept any liability in this regard.</p>
</sec>
<sec id="s20019">
<title>Data availability</title>
<p>No data are available from publicly available data sets; however, data will be made available after approval from the Health Research Ethics Committee, North-West University, if requested by reviewers or editors after submission to a scientific journal.</p>
</sec>
<sec id="s20020">
<title>Disclaimer</title>
<p>The views and opinions expressed in this article are those of the authors and do not necessarily reflect the official policy or position of any affiliated agency of the authors.</p>
</sec>
</ack>
<ref-list id="references">
<title>References</title>
<ref id="CIT0001"><label>1.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Carmeliet</surname> <given-names>G</given-names></string-name>, <string-name><surname>Dermauw</surname> <given-names>V</given-names></string-name>, <string-name><surname>Bouillon</surname> <given-names>R</given-names></string-name></person-group>. <article-title>Vitamin D signaling in calcium and bone homeostasis: A delicate balance</article-title>. <source>Best Pract Res Clin Endocrinol Metab</source>. <year>2015</year>;<volume>29</volume>(<issue>4</issue>):<fpage>621</fpage>&#x2013;<lpage>631</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1016/j.beem.2015.06.001">https://doi.org/10.1016/j.beem.2015.06.001</ext-link></comment></mixed-citation></ref>
<ref id="CIT0002"><label>2.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Bouillon</surname> <given-names>R</given-names></string-name>, <string-name><surname>Carmeliet</surname> <given-names>G</given-names></string-name></person-group>. <article-title>Vitamin D insufficiency: Definition, diagnosis and management</article-title>. <source>Best Pract Res Clin Endocrinol Metab</source>. <year>2018</year>;<volume>32</volume>(<issue>5</issue>):<fpage>669</fpage>&#x2013;<lpage>684</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/org/10.1016/j.beem.2018.09.014">https://doi.org/org/10.1016/j.beem.2018.09.014</ext-link></comment></mixed-citation></ref>
<ref id="CIT0003"><label>3.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Wang</surname> <given-names>H</given-names></string-name>, <string-name><surname>Chen</surname> <given-names>W</given-names></string-name>, <string-name><surname>Li</surname> <given-names>D</given-names></string-name>, <etal>et al</etal></person-group>. <article-title>Vitamin D and chronic diseases</article-title>. <source>Aging Dis</source>. <year>2017</year>;<volume>8</volume>(<issue>3</issue>):<fpage>346</fpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.14336/AD.2016.1021">https://doi.org/10.14336/AD.2016.1021</ext-link></comment></mixed-citation></ref>
<ref id="CIT0004"><label>4.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Mansoor</surname> <given-names>S</given-names></string-name>, <string-name><surname>Habib</surname> <given-names>A</given-names></string-name>, <string-name><surname>Ghani</surname> <given-names>F</given-names></string-name>, <etal>et al</etal></person-group>. <article-title>Prevalence and significance of vitamin D deficiency and insufficiency among apparently healthy adults</article-title>. <source>Clin Biochem</source>. <year>2010</year>;<volume>43</volume>(<issue>18</issue>):<fpage>1431</fpage>&#x2013;<lpage>1435</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1016/j.clinbiochem.2010.09.022">https://doi.org/10.1016/j.clinbiochem.2010.09.022</ext-link></comment></mixed-citation></ref>
<ref id="CIT0005"><label>5.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Nair</surname> <given-names>R</given-names></string-name>, <string-name><surname>Maseeh</surname> <given-names>A</given-names></string-name></person-group>. <article-title>Vitamin D: The &#x201C;sunshine&#x201D; vitamin</article-title>. <source>J Pharmacol Pharmacother</source>. <year>2012</year>;<volume>3</volume>(<issue>2</issue>):<fpage>118</fpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.4103/0976-500X.95506">https://doi.org/10.4103/0976-500X.95506</ext-link></comment></mixed-citation></ref>
<ref id="CIT0006"><label>6.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Palacios</surname> <given-names>C</given-names></string-name>, <string-name><surname>Gonzalez</surname> <given-names>L</given-names></string-name></person-group>. <article-title>Is vitamin D deficiency a major global public health problem?</article-title> <source>J Steroid Biochem Mol Biol</source>. <year>2014</year>;<volume>144</volume>:<fpage>138</fpage>&#x2013;<lpage>145</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1016/j.jsbmb.2013.11.003">https://doi.org/10.1016/j.jsbmb.2013.11.003</ext-link></comment></mixed-citation></ref>
<ref id="CIT0007"><label>7.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Arabi</surname> <given-names>A</given-names></string-name>, <string-name><surname>El Rassi</surname> <given-names>R</given-names></string-name>, <string-name><surname>Fuleihan</surname> <given-names>GE-H</given-names></string-name></person-group>. <article-title>Hypovitaminosis D in developing countries &#x2013; Prevalence, risk factors and outcomes</article-title>. <source>Nat Rev Endocrinol</source>. <year>2010</year>;<volume>6</volume>(<issue>10</issue>):<fpage>550</fpage>&#x2013;<lpage>561</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1038/nrendo.2010.146">https://doi.org/10.1038/nrendo.2010.146</ext-link>.</comment></mixed-citation></ref>
<ref id="CIT0008"><label>8.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Durazo-Arvizu</surname> <given-names>RA</given-names></string-name>, <string-name><surname>Camacho</surname> <given-names>P</given-names></string-name>, <string-name><surname>Bovet</surname> <given-names>P</given-names></string-name>, <etal>et al</etal></person-group>. <article-title>25-Hydroxyvitamin D in African-origin populations at varying latitudes challenges the construct of a physiologic norm</article-title>. <source>Am J Clin Nutr</source>. <year>2014</year>;<volume>100</volume>(<issue>3</issue>):<fpage>908</fpage>&#x2013;<lpage>914</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.3945/ajcn.113.066605">https://doi.org/10.3945/ajcn.113.066605</ext-link></comment></mixed-citation></ref>
<ref id="CIT0009"><label>9.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Dao</surname> <given-names>CN</given-names></string-name>, <string-name><surname>Patel</surname> <given-names>P</given-names></string-name>, <string-name><surname>Overton</surname> <given-names>ET</given-names></string-name>, <etal>et al</etal></person-group>. <article-title>Low vitamin D among HIV-infected adults: Prevalence of and risk factors for low vitamin D Levels in a cohort of HIV-infected adults and comparison to prevalence among adults in the US general population</article-title>. <source>Clin Infect Dis</source>. <year>2011</year>;<volume>52</volume>(<issue>3</issue>):<fpage>396</fpage>&#x2013;<lpage>405</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1093/cid/ciq158">https://doi.org/10.1093/cid/ciq158</ext-link></comment></mixed-citation></ref>
<ref id="CIT0010"><label>10.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Pinzone</surname> <given-names>M</given-names></string-name>, <string-name><surname>Di Rosa</surname> <given-names>M</given-names></string-name>, <string-name><surname>Malaguarnera</surname> <given-names>M</given-names></string-name>, <etal>et al</etal></person-group>. <article-title>Vitamin D deficiency in HIV infection: An underestimated and undertreated epidemic</article-title>. <source>Eur Rev Med Pharmacol Sci</source>. <year>2013</year>;<volume>17</volume>(<issue>9</issue>):<fpage>1218</fpage>&#x2013;<lpage>1232</lpage>.</mixed-citation></ref>
<ref id="CIT0011"><label>11.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Sherwood</surname> <given-names>JE</given-names></string-name>, <string-name><surname>Mesner</surname> <given-names>OC</given-names></string-name>, <string-name><surname>Weintrob</surname> <given-names>AC</given-names></string-name>, <etal>et al</etal></person-group>. <article-title>Vitamin D deficiency and its association with low bone mineral density, HIV-related factors, hospitalization, and death in a predominantly black HIV-infected cohort</article-title>. <source>Clin Infect Dis</source>. <year>2012</year>;<volume>55</volume>(<issue>12</issue>):<fpage>1727</fpage>&#x2013;<lpage>1736</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1093/cid/cis785">https://doi.org/10.1093/cid/cis785</ext-link></comment></mixed-citation></ref>
<ref id="CIT0012"><label>12.</label><mixed-citation publication-type="web"><person-group person-group-type="author"><collab>Avert</collab></person-group>. <source>HIV and AIDS in East and Southern Africa 2019 [homepage on the Internet]</source>. <comment>[cited 2021 Sept 3] Available from: <ext-link ext-link-type="uri" xlink:href="https://www.avert.org/professionals/hiv-around-world/sub-saharan-africa">https://www.avert.org/professionals/hiv-around-world/sub-saharan-africa</ext-link></comment></mixed-citation></ref>
<ref id="CIT0013"><label>13.</label><mixed-citation publication-type="book"><person-group person-group-type="author"><collab>SANAC</collab></person-group>. <source>South Africans&#x2019; national strategic plan for HIV, TB and STI 2017&#x2013;2022</source>. <publisher-loc>Pretoria</publisher-loc>: <publisher-name>South African National AIDS Council</publisher-name>; <year>2017</year>.</mixed-citation></ref>
<ref id="CIT0014"><label>14.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Broder</surname> <given-names>S</given-names></string-name></person-group>. <article-title>The development of antiretroviral therapy and its impact on the HIV-1/AIDS pandemic</article-title>. <source>Antiviral Res</source>. <year>2010</year>;<volume>85</volume>(<issue>1</issue>):<fpage>1</fpage>&#x2013;<lpage>18</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1016/j.antiviral.2009.10.002">https://doi.org/10.1016/j.antiviral.2009.10.002</ext-link></comment></mixed-citation></ref>
<ref id="CIT0015"><label>15.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Dave</surname> <given-names>JA</given-names></string-name>, <string-name><surname>Cohen</surname> <given-names>K</given-names></string-name>, <string-name><surname>Micklesfield</surname> <given-names>LK</given-names></string-name>, <string-name><surname>Maartens</surname> <given-names>G</given-names></string-name>, <string-name><surname>Levitt</surname> <given-names>NS</given-names></string-name></person-group>. <article-title>Antiretroviral therapy, especially efavirenz, is associated with low bone mineral density in HIV-infected South Africans</article-title>. <source>PLoS One</source>. <year>2015</year>;<volume>10</volume>(<issue>12</issue>):<fpage>e0144286</fpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1371/journal.pone.0144286">https://doi.org/10.1371/journal.pone.0144286</ext-link></comment></mixed-citation></ref>
<ref id="CIT0016"><label>16.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Herrin</surname> <given-names>M</given-names></string-name>, <string-name><surname>Tate</surname> <given-names>JP</given-names></string-name>, <string-name><surname>Akg&#x00FC;n</surname> <given-names>KM</given-names></string-name>, <etal>et al</etal></person-group>. <article-title>Weight gain and incident diabetes among HIV infected-veterans initiating antiretroviral therapy compared to uninfected individuals</article-title>. <source>J Acquir Immune Defic Syndr</source>. <year>2016</year>;<volume>73</volume>(<issue>2</issue>):<fpage>228</fpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1097/QAI.0000000000001071">https://doi.org/10.1097/QAI.0000000000001071</ext-link></comment></mixed-citation></ref>
<ref id="CIT0017"><label>17.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Shiau</surname> <given-names>S</given-names></string-name>, <string-name><surname>Broun</surname> <given-names>EC</given-names></string-name>, <string-name><surname>Arpadi</surname> <given-names>SM</given-names></string-name>, <string-name><surname>Yin</surname> <given-names>MT</given-names></string-name></person-group>. <article-title>Incident fractures in HIV-infected individuals: A systematic review and meta-analysis</article-title>. <source>AIDS (London, England)</source>. <year>2013</year>;<volume>27</volume>(<issue>12</issue>):<fpage>1949</fpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1097/QAD.0b013e328361d241">https://doi.org/10.1097/QAD.0b013e328361d241</ext-link></comment></mixed-citation></ref>
<ref id="CIT0018"><label>18.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Yin</surname> <given-names>MT</given-names></string-name>, <string-name><surname>Zhang</surname> <given-names>CA</given-names></string-name>, <string-name><surname>McMahon</surname> <given-names>DJ</given-names></string-name>, <etal>et al</etal></person-group>. <article-title>Higher rates of bone loss in postmenopausal HIV-infected women: A longitudinal study</article-title>. <source>J Clin Endocrinol Metab</source>. <year>2012</year>;<volume>97</volume>(<issue>2</issue>):<fpage>554</fpage>&#x2013;<lpage>562</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1210/jc.2011-2197">https://doi.org/10.1210/jc.2011-2197</ext-link></comment></mixed-citation></ref>
<ref id="CIT0019"><label>19.</label><mixed-citation publication-type="book"><person-group person-group-type="author"><string-name><surname>Wanke</surname> <given-names>C</given-names></string-name></person-group>. <source>Epidemiology, clinical manifestations, and diagnosis of HIV-associated lipodystrophy</source>. <comment>UpToDate</comment>. <publisher-loc>Waltham, MA</publisher-loc>: <publisher-name>Walters Kluwer Health</publisher-name>; <year>2016</year>.</mixed-citation></ref>
<ref id="CIT0020"><label>20.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Tsiaras</surname> <given-names>WG</given-names></string-name>, <string-name><surname>Weinstock</surname> <given-names>MA</given-names></string-name></person-group>. <article-title>Factors influencing vitamin D status</article-title>. <source>Acta Derm Venereol</source>. <year>2011</year>;<volume>91</volume>(<issue>2</issue>):<fpage>115</fpage>&#x2013;<lpage>124</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.2340/00015555-0980">https://doi.org/10.2340/00015555-0980</ext-link></comment></mixed-citation></ref>
<ref id="CIT0021"><label>21.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Boonchaya-anant</surname> <given-names>P</given-names></string-name>, <string-name><surname>Holick</surname> <given-names>MF</given-names></string-name>, <string-name><surname>Apovian</surname> <given-names>CM</given-names></string-name></person-group>. <article-title>Serum 25-hydroxyvitamin D levels and metabolic health status in extremely obese individuals</article-title>. <source>Obesity</source>. <year>2014</year>;<volume>22</volume>(<issue>12</issue>):<fpage>2539</fpage>&#x2013;<lpage>2543</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1002/oby.20877">https://doi.org/10.1002/oby.20877</ext-link></comment></mixed-citation></ref>
<ref id="CIT0022"><label>22.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Vimaleswaran</surname> <given-names>KS</given-names></string-name>, <string-name><surname>Berry</surname> <given-names>DJ</given-names></string-name>, <string-name><surname>Lu</surname> <given-names>C</given-names></string-name>, <etal>et al</etal></person-group>. <article-title>Causal relationship between obesity and vitamin D status: Bi-directional Mendelian randomization analysis of multiple cohorts</article-title>. <source>PLoS Med</source>. <year>2013</year>;<volume>10</volume>(<issue>2</issue>):<fpage>e1001383</fpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1371/journal.pmed.1001383">https://doi.org/10.1371/journal.pmed.1001383</ext-link></comment></mixed-citation></ref>
<ref id="CIT0023"><label>23.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Vorster</surname> <given-names>HH</given-names></string-name>, <string-name><surname>Kruger</surname> <given-names>A</given-names></string-name>, <string-name><surname>Margetts</surname> <given-names>BM</given-names></string-name></person-group>. <article-title>The nutrition transition in Africa: Can it be steered into a more positive direction?</article-title> <source>Nutrients</source>. <year>2011</year>;<volume>3</volume>(<issue>4</issue>):<fpage>429</fpage>&#x2013;<lpage>441</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.3390/nu3040429">https://doi.org/10.3390/nu3040429</ext-link></comment></mixed-citation></ref>
<ref id="CIT0024"><label>24.</label><mixed-citation publication-type="web"><person-group person-group-type="author"><collab>National Department of Health</collab></person-group>. <source>The DHS Program Demographic and Health Survey 2016 [homepage on the Internet] [cited 2021 Sept 3]</source>. <comment>Available from: <ext-link ext-link-type="uri" xlink:href="https://dhsprogram.com/publications/publication-fr337-dhs-final-reports.cfm">https://dhsprogram.com/publications/publication-fr337-dhs-final-reports.cfm</ext-link></comment></mixed-citation></ref>
<ref id="CIT0025"><label>25.</label><mixed-citation publication-type="web"><person-group person-group-type="author"><string-name><surname>Shisana</surname> <given-names>O</given-names></string-name>, <string-name><surname>Labadarios</surname> <given-names>D</given-names></string-name>, <string-name><surname>Rehle</surname> <given-names>T</given-names></string-name>, <etal>et al</etal></person-group>. <source>The South African National Health and Nutrition Examination Survey, 2012: SANHANES-1: The health and nutritional status of the nation [homepage on the Internet]</source>. <year>2014</year> <comment>[cited 2021 Sept 3]. Available from: <ext-link ext-link-type="uri" xlink:href="http://hdl.handle.net/20.500.11910/2864">http://hdl.handle.net/20.500.11910/2864</ext-link></comment></mixed-citation></ref>
<ref id="CIT0026"><label>26.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Faul</surname> <given-names>F</given-names></string-name>, <string-name><surname>Erdfelder</surname> <given-names>E</given-names></string-name>, <string-name><surname>Buchner</surname> <given-names>A</given-names></string-name>, <string-name><surname>Lang</surname> <given-names>A-G</given-names></string-name></person-group>. <article-title>Statistical power analyses using G* Power 3.1: Tests for correlation and regression analyses</article-title>. <source>Behav Res Methods</source>. <year>2009</year>;<volume>41</volume>(<issue>4</issue>):<fpage>1149</fpage>&#x2013;<lpage>1160</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.3758/BRM.41.4.1149">https://doi.org/10.3758/BRM.41.4.1149</ext-link></comment></mixed-citation></ref>
<ref id="CIT0027"><label>27.</label><mixed-citation publication-type="book"><person-group person-group-type="author"><collab>World Health Organisation</collab></person-group>. <source>Assessment of fracture risk and its application to screening for postmenopausal osteoporosis: Report of a WHO study group [meeting held in Rome from 22 to 25 June 1992]</source>. <publisher-loc>Geneva</publisher-loc>: <publisher-name>World Health Organization</publisher-name>; <year>1994</year>.</mixed-citation></ref>
<ref id="CIT0028"><label>28.</label><mixed-citation publication-type="book"><person-group person-group-type="author"><string-name><surname>Lee</surname> <given-names>RD</given-names></string-name>, <string-name><surname>Nieman</surname> <given-names>DC</given-names></string-name></person-group>. <source>Nutritional assessment</source>. <publisher-loc>New York, NY</publisher-loc>: <publisher-name>McGraw-Hill</publisher-name>; <year>2013</year>.</mixed-citation></ref>
<ref id="CIT0029"><label>29.</label><mixed-citation publication-type="web"><person-group person-group-type="author"><collab>WHO</collab></person-group>. <source>Global Physical Activity Questionnaire (GPAQ) Analysis Guide 2017 [homepage on the Internet] [cited 2021 Sept 3]</source>. <comment>Available from: <ext-link ext-link-type="uri" xlink:href="https://www.who.int/ncds/surveillance/steps/resources/GPAQ_Analysis_Guide.pdf">https://www.who.int/ncds/surveillance/steps/resources/GPAQ_Analysis_Guide.pdf</ext-link></comment></mixed-citation></ref>
<ref id="CIT0030"><label>30.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Venter</surname> <given-names>C</given-names></string-name>, <string-name><surname>MacIntyre</surname> <given-names>U</given-names></string-name>, <string-name><surname>Vorster</surname> <given-names>H</given-names></string-name></person-group>. <article-title>The development and testing of a food portion photograph book for use in an African population</article-title>. <source>J Hum Nutr Diet</source>. <year>2000</year>;<volume>13</volume>(<issue>3</issue>):<fpage>205</fpage>&#x2013;<lpage>218</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1046/j.1365-277x.2000.00228.x">https://doi.org/10.1046/j.1365-277x.2000.00228.x</ext-link></comment></mixed-citation></ref>
<ref id="CIT0031"><label>31.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Wentzel-Viljoen</surname> <given-names>E</given-names></string-name>, <string-name><surname>Kruger</surname> <given-names>A</given-names></string-name>, <string-name><surname>Laubscher</surname> <given-names>R</given-names></string-name></person-group>. <article-title>Using different approaches to assess the reproducibility of a culturally sensitive quantified food frequency questionnaire</article-title>. <source>S Afr J Clin Nutr</source>. <year>2011</year>;<volume>24</volume>(<issue>3</issue>):<fpage>143</fpage>&#x2013;<lpage>148</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1080/16070658.2011.11734366">https://doi.org/10.1080/16070658.2011.11734366</ext-link></comment></mixed-citation></ref>
<ref id="CIT0032"><label>32.</label><mixed-citation publication-type="book"><person-group person-group-type="author"><string-name><surname>Wolmarans</surname> <given-names>P</given-names></string-name>, <string-name><surname>Danster</surname> <given-names>N</given-names></string-name>, <string-name><surname>Dalton</surname> <given-names>A</given-names></string-name>, <string-name><surname>Rossouw</surname> <given-names>K</given-names></string-name>, <string-name><surname>Sch&#x00F6;nfeldt</surname> <given-names>H</given-names></string-name></person-group>. <source>Condensed food composition tables for South Africa</source>. <publisher-loc>Cape Town</publisher-loc>: <publisher-name>Medical Research Council</publisher-name>; <year>2010</year>; p. <fpage>1</fpage>&#x2013;<lpage>126</lpage>.</mixed-citation></ref>
<ref id="CIT0033"><label>33.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Valcour</surname> <given-names>A</given-names></string-name>, <string-name><surname>Blocki</surname> <given-names>F</given-names></string-name>, <string-name><surname>Hawkins</surname> <given-names>D</given-names></string-name>, <string-name><surname>Rao</surname> <given-names>SD</given-names></string-name></person-group>. <article-title>Effects of age and serum 25-OH-vitamin D on serum parathyroid hormone levels</article-title>. <source>J Clin Endocrinol Metab</source>. <year>2012</year>;<volume>97</volume>(<issue>11</issue>):<fpage>3989</fpage>&#x2013;<lpage>3895</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1210/jc.2012-2276">https://doi.org/10.1210/jc.2012-2276</ext-link></comment></mixed-citation></ref>
<ref id="CIT0034"><label>34.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Cohen</surname> <given-names>J</given-names></string-name></person-group>. <article-title>Quantitative methods in psychology: A power primer</article-title>. <source>Psychol Bull</source>. <year>1992</year>;<volume>112</volume>(<issue>1</issue>):<fpage>155</fpage>&#x2013;<lpage>159</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1037//0033-2909.112.1.155">https://doi.org/10.1037//0033-2909.112.1.155</ext-link></comment></mixed-citation></ref>
<ref id="CIT0035"><label>35.</label><mixed-citation publication-type="book"><person-group person-group-type="author"><collab>Institute of Medicine</collab></person-group>. <source>Dietary reference intakes for calcium and vitamin D</source>. <publisher-loc>Washington, DC</publisher-loc>: <publisher-name>National Academies Press</publisher-name>; <year>2011</year>.</mixed-citation></ref>
<ref id="CIT0036"><label>36.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Chutterpaul</surname> <given-names>P</given-names></string-name>, <string-name><surname>Paruk</surname> <given-names>F</given-names></string-name>, <string-name><surname>Cassim</surname> <given-names>B</given-names></string-name></person-group>. <article-title>Prevalence of vitamin D deficiency in older South Africans with and without hip fractures and the effects of age, body weight, ethnicity and functional status</article-title>. <source>J Endocrinol Metabol Diab S Afr</source>. <year>2019</year>;<volume>24</volume>(<issue>1</issue>):<fpage>10</fpage>&#x2013;<lpage>15</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1080/16089677.2018.1534360">https://doi.org/10.1080/16089677.2018.1534360</ext-link></comment></mixed-citation></ref>
<ref id="CIT0037"><label>37.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Tindall</surname> <given-names>AM</given-names></string-name>, <string-name><surname>Schall</surname> <given-names>JI</given-names></string-name>, <string-name><surname>Seme</surname> <given-names>B</given-names></string-name>, <etal>et al</etal></person-group>. <article-title>Vitamin D status, nutrition and growth in HIV-infected mothers and HIV-exposed infants and children in Botswana</article-title>. <source>PLoS One</source>. <year>2020</year>;<volume>15</volume>(<issue>8</issue>):<fpage>e0236510</fpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1371/journal.pone.0236510">https://doi.org/10.1371/journal.pone.0236510</ext-link></comment></mixed-citation></ref>
<ref id="CIT0038"><label>38.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>White</surname> <given-names>Z</given-names></string-name>, <string-name><surname>White</surname> <given-names>S</given-names></string-name>, <string-name><surname>Dalvie</surname> <given-names>T</given-names></string-name>, <string-name><surname>Kruger</surname> <given-names>MC</given-names></string-name>, <string-name><surname>Van Zyl</surname> <given-names>A</given-names></string-name>, <string-name><surname>Becker</surname> <given-names>P</given-names></string-name></person-group>. <article-title>Bone health, body composition, and vitamin D status of black preadolescent children in South Africa</article-title>. <source>Nutrients</source>. <year>2019</year>;<volume>11</volume>(<issue>6</issue>):<fpage>1243</fpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.3390/nu11061243">https://doi.org/10.3390/nu11061243</ext-link></comment></mixed-citation></ref>
<ref id="CIT0039"><label>39.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Kuchuk</surname> <given-names>NO</given-names></string-name>, <string-name><surname>Van Schoor</surname> <given-names>NM</given-names></string-name>, <string-name><surname>Pluijm</surname> <given-names>SM</given-names></string-name>, <string-name><surname>Chines</surname> <given-names>A</given-names></string-name>, <string-name><surname>Lips</surname> <given-names>P</given-names></string-name></person-group>. <article-title>Vitamin D status, parathyroid function, bone turnover, and BMD in postmenopausal women with osteoporosis: Global perspective</article-title>. <source>J Bone Miner Res</source>. <year>2009</year>;<volume>24</volume>(<issue>4</issue>):<fpage>693</fpage>&#x2013;<lpage>701</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1359/jbmr.081209">https://doi.org/10.1359/jbmr.081209</ext-link></comment></mixed-citation></ref>
<ref id="CIT0040"><label>40.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Mirfakhraee</surname> <given-names>S</given-names></string-name>, <string-name><surname>Ayers</surname> <given-names>CR</given-names></string-name>, <string-name><surname>McGuire</surname> <given-names>DK</given-names></string-name>, <string-name><surname>Maalouf</surname> <given-names>NM</given-names></string-name></person-group>. <article-title>Longitudinal changes in serum 25&#x2013;hydroxyvitamin D in the Dallas Heart Study</article-title>. <source>Clin Endocrinol (Oxf)</source>. <year>2017</year>;<volume>87</volume>(<issue>3</issue>):<fpage>242</fpage>&#x2013;<lpage>248</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1111/cen.13374">https://doi.org/10.1111/cen.13374</ext-link></comment></mixed-citation></ref>
<ref id="CIT0041"><label>41.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Blaine</surname> <given-names>J</given-names></string-name>, <string-name><surname>Chonchol</surname> <given-names>M</given-names></string-name>, <string-name><surname>Levi</surname> <given-names>M</given-names></string-name></person-group>. <article-title>Renal control of calcium, phosphate, and magnesium homeostasis</article-title>. <source>Clin J Am Soc Nephrol</source>. <year>2015</year>;<volume>10</volume>(<issue>7</issue>):<fpage>1257</fpage>&#x2013;<lpage>1272</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.2215/CJN.09750913">https://doi.org/10.2215/CJN.09750913</ext-link></comment></mixed-citation></ref>
<ref id="CIT0042"><label>42.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Aloia</surname> <given-names>J</given-names></string-name>, <string-name><surname>Fazzari</surname> <given-names>M</given-names></string-name>, <string-name><surname>Islam</surname> <given-names>S</given-names></string-name>, <etal>et al</etal></person-group>. <article-title>Vitamin D supplementation in elderly black women does not prevent bone loss: A randomized controlled trial</article-title>. <source>J Bone Min Res</source>. <year>2018</year>;<volume>33</volume>(<issue>11</issue>):<fpage>1916</fpage>&#x2013;<lpage>1922</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1002/jbmr.3521">https://doi.org/10.1002/jbmr.3521</ext-link></comment></mixed-citation></ref>
<ref id="CIT0043"><label>43.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Aspray</surname> <given-names>TJ</given-names></string-name>, <string-name><surname>Chadwick</surname> <given-names>T</given-names></string-name>, <string-name><surname>Francis</surname> <given-names>RM</given-names></string-name>, <etal>et al</etal></person-group>. <article-title>Randomized controlled trial of vitamin D supplementation in older people to optimize bone health</article-title>. <source>Am J Clin Nutr</source>. <year>2019</year>;<volume>109</volume>(<issue>1</issue>):<fpage>207</fpage>&#x2013;<lpage>217</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1093/ajcn/nqy280">https://doi.org/10.1093/ajcn/nqy280</ext-link></comment></mixed-citation></ref>
<ref id="CIT0044"><label>44.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Kamineni</surname> <given-names>V</given-names></string-name>, <string-name><surname>Latha</surname> <given-names>AP</given-names></string-name>, <string-name><surname>Ramathulasi</surname> <given-names>K</given-names></string-name></person-group>. <article-title>Association between serum 25-hydroxyvitamin D levels and bone mineral density in normal postmenopausal women</article-title>. <source>J Midlife Health</source>. <year>2016</year>;<volume>7</volume>(<issue>4</issue>):<fpage>163</fpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.4103/0976-7800.195694">https://doi.org/10.4103/0976-7800.195694</ext-link></comment></mixed-citation></ref>
<ref id="CIT0045"><label>45.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Li</surname> <given-names>S</given-names></string-name>, <string-name><surname>Ou</surname> <given-names>Y</given-names></string-name>, <string-name><surname>Zhang</surname> <given-names>H</given-names></string-name>, <etal>et al</etal></person-group>. <article-title>Vitamin D status and its relationship with body composition, bone mineral density and fracture risk in urban central south Chinese postmenopausal women</article-title>. <source>Ann Nutr Metab</source>. <year>2014</year>;<volume>64</volume>(<issue>1</issue>):<fpage>13</fpage>&#x2013;<lpage>19</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1159/000358340">https://doi.org/10.1159/000358340</ext-link>.</comment></mixed-citation></ref>
<ref id="CIT0046"><label>46.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Hamill</surname> <given-names>MM</given-names></string-name>, <string-name><surname>Pettifor</surname> <given-names>JM</given-names></string-name>, <string-name><surname>Ward</surname> <given-names>KA</given-names></string-name>, <string-name><surname>Norris</surname> <given-names>SA</given-names></string-name>, <string-name><surname>Prentice</surname> <given-names>A</given-names></string-name></person-group>. <article-title>Bone mineral density, body composition, and mineral homeostasis over 24 months in urban South African women with HIV exposed to antiretroviral therapy</article-title>. <source>J Bone Min Res Plus</source>. <year>2020</year>;<volume>4</volume>(<issue>5</issue>):<fpage>e10343</fpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1002/jbm4.10343">https://doi.org/10.1002/jbm4.10343</ext-link></comment></mixed-citation></ref>
<ref id="CIT0047"><label>47.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Davies</surname> <given-names>NECG</given-names></string-name></person-group>. <article-title>Fixed-dose combination for adults accessing antiretroviral therapy: Advice document</article-title>. <source>S Afr J HIV Med</source>. <year>2013</year>;<volume>14</volume>(<issue>1</issue>):<fpage>41</fpage>&#x2013;<lpage>43</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.7196/SAJHIVMED.913">https://doi.org/10.7196/SAJHIVMED.913</ext-link></comment></mixed-citation></ref>
<ref id="CIT0048"><label>48.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Childs</surname> <given-names>K</given-names></string-name>, <string-name><surname>Welz</surname> <given-names>T</given-names></string-name>, <string-name><surname>Samarawickrama</surname> <given-names>A</given-names></string-name>, <string-name><surname>Post</surname> <given-names>FA</given-names></string-name></person-group>. <article-title>Effects of vitamin D deficiency and combination antiretroviral therapy on bone in HIV-positive patients</article-title>. <source>AIDS</source>. <year>2012</year>;<volume>26</volume>(<issue>3</issue>):<fpage>253</fpage>&#x2013;<lpage>262</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1097/QAD.0b013e32834f324b">https://doi.org/10.1097/QAD.0b013e32834f324b</ext-link>.</comment></mixed-citation></ref>
<ref id="CIT0049"><label>49.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Ardawi</surname> <given-names>M-S</given-names></string-name>, <string-name><surname>Sibiany</surname> <given-names>A</given-names></string-name>, <string-name><surname>Bakhsh</surname> <given-names>T</given-names></string-name>, <string-name><surname>Qari</surname> <given-names>M</given-names></string-name>, <string-name><surname>Maimani</surname> <given-names>A</given-names></string-name></person-group>. <article-title>High prevalence of vitamin D deficiency among healthy Saudi Arabian men: Relationship to bone mineral density, parathyroid hormone, bone turnover markers, and lifestyle factors</article-title>. <source>Osteoporos Int</source>. <year>2012</year>;<volume>23</volume>(<issue>2</issue>):<fpage>675</fpage>&#x2013;<lpage>686</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1007/s00198-011-1606-1">https://doi.org/10.1007/s00198-011-1606-1</ext-link></comment></mixed-citation></ref>
<ref id="CIT0050"><label>50.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Kota</surname> <given-names>SK</given-names></string-name>, <string-name><surname>Jammula</surname> <given-names>S</given-names></string-name>, <string-name><surname>Kota</surname> <given-names>S</given-names></string-name>, <string-name><surname>Meher</surname> <given-names>L</given-names></string-name>, <string-name><surname>Modi</surname> <given-names>K</given-names></string-name></person-group>. <article-title>Correlation of vitamin D, bone mineral density and parathyroid hormone levels in adults with low bone density</article-title>. <source>Indian J Orthop</source>. <year>2013</year>;<volume>47</volume>(<issue>4</issue>):<fpage>402</fpage>&#x2013;<lpage>407</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.4103/0019-5413.114932">https://doi.org/10.4103/0019-5413.114932</ext-link></comment></mixed-citation></ref>
<ref id="CIT0051"><label>51.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Hamill</surname> <given-names>MM</given-names></string-name>, <string-name><surname>Pettifor</surname> <given-names>JM</given-names></string-name>, <string-name><surname>Ward</surname> <given-names>KA</given-names></string-name>, <string-name><surname>Norris</surname> <given-names>SA</given-names></string-name>, <string-name><surname>Prentice</surname> <given-names>A</given-names></string-name></person-group>. <article-title>Changes in bone mineral density, body composition, vitamin D status, and mineral metabolism in urban HIV-positive South African women over 12 months</article-title>. <source>J Bone Min Res</source>. <year>2017</year>;<volume>32</volume>(<issue>8</issue>):<fpage>1615</fpage>&#x2013;<lpage>1624</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1002/jbmr.3147">https://doi.org/10.1002/jbmr.3147</ext-link></comment></mixed-citation></ref>
<ref id="CIT0052"><label>52.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>De Jongh</surname> <given-names>RT</given-names></string-name>, <string-name><surname>Van Schoor</surname> <given-names>NM</given-names></string-name>, <string-name><surname>Lips</surname> <given-names>P</given-names></string-name></person-group>. <article-title>Changes in vitamin D endocrinology during aging in adults</article-title>. <source>Mol Cell Endocrinol</source>. <year>2017</year>;<volume>453</volume>:<fpage>144</fpage>&#x2013;<lpage>150</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1016/j.mce.2017.06.005">https://doi.org/10.1016/j.mce.2017.06.005</ext-link></comment></mixed-citation></ref>
<ref id="CIT0053"><label>53.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Van Schoor</surname> <given-names>N</given-names></string-name>, <string-name><surname>Knol</surname> <given-names>D</given-names></string-name>, <string-name><surname>Deeg</surname> <given-names>D</given-names></string-name>, <string-name><surname>Peters</surname> <given-names>F</given-names></string-name>, <string-name><surname>Heijboer</surname> <given-names>A</given-names></string-name>, <string-name><surname>Lips</surname> <given-names>P</given-names></string-name></person-group>. <article-title>Longitudinal changes and seasonal variations in serum 25-hydroxyvitamin D levels in different age groups: Results of the Longitudinal Aging Study Amsterdam</article-title>. <source>Osteoporos Int</source>. <year>2014</year>;<volume>25</volume>(<issue>5</issue>):<fpage>1483</fpage>&#x2013;<lpage>1491</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1007/s00198-014-2651-3">https://doi.org/10.1007/s00198-014-2651-3</ext-link></comment></mixed-citation></ref>
<ref id="CIT0054"><label>54.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Poopedi</surname> <given-names>MA</given-names></string-name>, <string-name><surname>Norris</surname> <given-names>SA</given-names></string-name>, <string-name><surname>Micklesfield</surname> <given-names>LK</given-names></string-name>, <string-name><surname>Pettifor</surname> <given-names>JM</given-names></string-name></person-group>. <article-title>Does vitamin D status track through adolescence?</article-title> <source>Am J Clin Nutr</source>. <year>2015</year>;<volume>102</volume>(<issue>5</issue>):<fpage>1025</fpage>&#x2013;<lpage>1029</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.3945/ajcn.115.112714">https://doi.org/10.3945/ajcn.115.112714</ext-link></comment></mixed-citation></ref>
<ref id="CIT0055"><label>55.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>V&#x00E1;zquez-Lorente</surname> <given-names>H</given-names></string-name>, <string-name><surname>Molina-L&#x00F3;pez</surname> <given-names>J</given-names></string-name>, <string-name><surname>Herrera-Quintana</surname> <given-names>L</given-names></string-name>, <string-name><surname>Gamarra-Morales</surname> <given-names>Y</given-names></string-name>, <string-name><surname>L&#x00F3;pez-Gonz&#x00E1;lez</surname> <given-names>B</given-names></string-name>, <string-name><surname>Planells</surname> <given-names>E</given-names></string-name></person-group>. <article-title>Association between body fatness and vitamin D3 status in a postmenopausal population</article-title>. <source>Nutrients</source>. <year>2020</year>;<volume>12</volume>(<issue>3</issue>):<fpage>667</fpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.3390/nu12030667">https://doi.org/10.3390/nu12030667</ext-link></comment></mixed-citation></ref>
<ref id="CIT0056"><label>56.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Rosenstreich</surname> <given-names>SJ</given-names></string-name>, <string-name><surname>Rich</surname> <given-names>C</given-names></string-name>, <string-name><surname>Volwiler</surname> <given-names>W</given-names></string-name></person-group>. <article-title>Deposition in and release of vitamin D 3 from body fat: Evidence for a storage site in the rat</article-title>. <source>J Clin Invest</source>. <year>1971</year>;<volume>50</volume>(<issue>3</issue>):<fpage>679</fpage>&#x2013;<lpage>687</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1172/JCI106538">https://doi.org/10.1172/JCI106538</ext-link></comment></mixed-citation></ref>
<ref id="CIT0057"><label>57.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Chen</surname> <given-names>Y</given-names></string-name>, <string-name><surname>Xiang</surname> <given-names>J</given-names></string-name>, <string-name><surname>Wang</surname> <given-names>Z</given-names></string-name>, <etal>et al</etal></person-group>. <article-title>Associations of bone mineral density with lean mass, fat mass, and dietary patterns in postmenopausal Chinese women: A 2-year prospective study</article-title>. <source>PLoS One</source>. <year>2015</year>;<volume>10</volume>(<issue>9</issue>):<fpage>e0137097</fpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1371/journal.pone.0137097">https://doi.org/10.1371/journal.pone.0137097</ext-link></comment></mixed-citation></ref>
<ref id="CIT0058"><label>58.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Ilesanmi-Oyelere</surname> <given-names>BL</given-names></string-name>, <string-name><surname>Coad</surname> <given-names>J</given-names></string-name>, <string-name><surname>Roy</surname> <given-names>N</given-names></string-name>, <string-name><surname>Kruger</surname> <given-names>MC</given-names></string-name></person-group>. <article-title>Lean body mass in the prediction of bone mineral density in postmenopausal women</article-title>. <source>Biores Open Access</source>. <year>2018</year>;<volume>7</volume>(<issue>1</issue>):<fpage>150</fpage>&#x2013;<lpage>158</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1089/biores.2018.0025">https://doi.org/10.1089/biores.2018.0025</ext-link></comment></mixed-citation></ref>
<ref id="CIT0059"><label>59.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Sotunde</surname> <given-names>O</given-names></string-name>, <string-name><surname>Kruger</surname> <given-names>H</given-names></string-name>, <string-name><surname>Wright</surname> <given-names>HH</given-names></string-name>, <etal>et al</etal></person-group>. <article-title>Lean mass appears to be more strongly associated with bone health than fat mass in urban black South African women</article-title>. <source>J Nutr Health Aging</source>. <year>2015</year>;<volume>19</volume>(<issue>6</issue>):<fpage>628</fpage>&#x2013;<lpage>636</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1007/s12603-015-0492-1">https://doi.org/10.1007/s12603-015-0492-1</ext-link></comment></mixed-citation></ref>
<ref id="CIT0060"><label>60.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Ho-Pham</surname> <given-names>LT</given-names></string-name>, <string-name><surname>Nguyen</surname> <given-names>UD</given-names></string-name>, <string-name><surname>Nguyen</surname> <given-names>TV</given-names></string-name></person-group>. <article-title>Association between lean mass, fat mass, and bone mineral density: A meta-analysis</article-title>. <source>J Clin Endocrinol Metab</source>. <year>2014</year>;<volume>99</volume>(<issue>1</issue>):<fpage>30</fpage>&#x2013;<lpage>38</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1210/jc.2013-3190">https://doi.org/10.1210/jc.2013-3190</ext-link></comment></mixed-citation></ref>
<ref id="CIT0061"><label>61.</label><mixed-citation publication-type="web"><person-group person-group-type="author"><string-name><surname>Kelley</surname> <given-names>GA</given-names></string-name>, <string-name><surname>Kelley</surname> <given-names>KS</given-names></string-name>, <string-name><surname>Kohrt</surname> <given-names>WM</given-names></string-name></person-group>. <article-title>Exercise and bone mineral density in premenopausal women: A meta-analysis of randomized controlled trials</article-title>. <source>Int J Endocrinol</source>. <year>2013</year>;<day>2013</day>:<fpage>741639</fpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1155/2013/741639">https://doi.org/10.1155/2013/741639</ext-link></comment></mixed-citation></ref>
<ref id="CIT0062"><label>62.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Zhang</surname> <given-names>Z</given-names></string-name>, <string-name><surname>Shen</surname> <given-names>X</given-names></string-name>, <string-name><surname>Zhang</surname> <given-names>H</given-names></string-name>, <etal>et al</etal></person-group>. <article-title>The relationship between body composition and fracture risk using the FRAX model in central south C hinese postmenopausal women</article-title>. <source>Clin Endocrinol (Oxf)</source>. <year>2012</year>;<volume>77</volume>(<issue>4</issue>):<fpage>524</fpage>&#x2013;<lpage>530</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1111/j.1365-2265.2012.04399.x">https://doi.org/10.1111/j.1365-2265.2012.04399.x</ext-link></comment></mixed-citation></ref>
<ref id="CIT0063"><label>63.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Muir</surname> <given-names>JM</given-names></string-name>, <string-name><surname>Ye</surname> <given-names>C</given-names></string-name>, <string-name><surname>Bhandari</surname> <given-names>M</given-names></string-name>, <string-name><surname>Adachi</surname> <given-names>JD</given-names></string-name>, <string-name><surname>Thabane</surname> <given-names>L</given-names></string-name></person-group>. <article-title>The effect of regular physical activity on bone mineral density in post-menopausal women aged 75 and over: A retrospective analysis from the Canadian multicentre osteoporosis study</article-title>. <source>BMC Musculoskelet Disord</source>. <year>2013</year>;<volume>14</volume>(<issue>1</issue>):<fpage>1</fpage>&#x2013;<lpage>9</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1186/1471-2474-14-253">https://doi.org/10.1186/1471-2474-14-253</ext-link></comment></mixed-citation></ref>
<ref id="CIT0064"><label>64.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Bonjour</surname> <given-names>J-P</given-names></string-name>, <string-name><surname>Gu&#x00E9;guen</surname> <given-names>L</given-names></string-name>, <string-name><surname>Palacios</surname> <given-names>C</given-names></string-name>, <string-name><surname>Shearer</surname> <given-names>MJ</given-names></string-name>, <string-name><surname>Weaver</surname> <given-names>CM</given-names></string-name></person-group>. <article-title>Minerals and vitamins in bone health: The potential value of dietary enhancement</article-title>. <source>Br J Nutr</source>. <year>2009</year>;<volume>101</volume>(<issue>11</issue>):<fpage>1581</fpage>&#x2013;<lpage>1596</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1017/S0007114509311721">https://doi.org/10.1017/S0007114509311721</ext-link>.</comment></mixed-citation></ref>
<ref id="CIT0065"><label>65.</label><mixed-citation publication-type="journal"><person-group person-group-type="author"><string-name><surname>Kruger</surname> <given-names>MC</given-names></string-name>, <string-name><surname>Kruger</surname> <given-names>IM</given-names></string-name>, <string-name><surname>Wentzel-Viljoen</surname> <given-names>E</given-names></string-name>, <string-name><surname>Kruger</surname> <given-names>A</given-names></string-name></person-group>. <article-title>Urbanization of black South African women may increase risk of low bone mass due to low vitamin D status, low calcium intake, and high bone turnover</article-title>. <source>Nutr Res</source>. <year>2011</year>;<volume>31</volume>(<issue>10</issue>):<fpage>748</fpage>&#x2013;<lpage>758</lpage>. <comment><ext-link ext-link-type="uri" xlink:href="https://doi.org/10.1016/j.nutres.2011.09.012">https://doi.org/10.1016/j.nutres.2011.09.012</ext-link>.</comment></mixed-citation></ref>
</ref-list>
<fn-group>
<fn><p><bold>How to cite this article:</bold> Mwango S, Carboo J, Ellis C, Cockeran M, Mels CMC, Kruger HS. The association between serum vitamin D and body composition in South African HIV-infected women. S Afr J HIV Med. 2021;22(1), a1284. <ext-link ext-link-type="uri" xlink:href="https://doi.org/10.4102/sajhivmed.v22i1.1284">https://doi.org/10.4102/sajhivmed.v22i1.1284</ext-link></p></fn>
</fn-group>
</back>
</article>