4.6 Article

Vitamin D status and risk of incident tuberculosis disease: A nested case-control study, systematic review, and individual-participant data meta-analysis

Journal

PLOS MEDICINE
Volume 16, Issue 9, Pages -

Publisher

PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pmed.1002907

Keywords

-

Funding

  1. National Institute of Health (NIH)
  2. National Institute of Allergy and Infectious Diseases (NIAID) [U19AI076217, U01AI057786, TBRU U19AI111224]
  3. National Institute on Drug Abuse (NIDA) [T32DA013911]
  4. National Institute of Mental Health (NIMH) [R25MH083620]
  5. National Institute of Allergy and Infectious Diseases (NIAID) of the National Institutes of Health (NIH) [UM1AI068632, UM1AI068616, UM1AI106716]
  6. Eunice Kennedy Shriver National Institute of Child Health and Human Development (NICHD)
  7. National Institute of Mental Health (NIMH)
  8. NIAID
  9. NICHD International and Domestic Pediatric and Maternal HIV Clinical Trials Network (NICHD) [N01-DK-9-001/HHSN267200800001C]
  10. NIAID [UM1AI069465, R01 AI45462]
  11. NINDS [5R01NS077874]
  12. National Institute of Allergy and Infectious Diseases [U01AI068636]
  13. National Institute of Dental and Craniofacial Research (NIDCR)
  14. National Institute of Allergy and Infectious Diseases of the National Institutes of Health [UM1AI069465, U01AI069497, R01AI080417]
  15. Boehringer-Ingelheim
  16. Bristol-Myers Squibb
  17. Gilead Sciences
  18. GlaxoSmithKline
  19. NIH [F32AI140511]
  20. Gilead Foundation
  21. Ujala Foundation (Newtown Square, PA, USA)
  22. Wyncote Foundation (Philadelphia, PA, USA)
  23. NIH - Fogarty International Center Program of International Training Grants in Epidemiology Related to AIDS [D43-TW0000]
  24. NIAID Byramjee Jeejeebhoy Medical College HIV Clinical Trials Unit [U01 AI069497]
  25. NIAID's Baltimore-Washington-India Clinical Trials Unit [UM1 AI069465]
  26. National Institute of Child Health and Human Development [R01 HD32257]
  27. National Commission on Biotechnology [PCST/NCB-AC3/2003]
  28. Higher Education Commission (HEC) [20/796/RD/06]
  29. International Research Support Initiative Program of the Higher Education Commission Government of Pakistan
  30. Bill and Melinda Gates Foundation
  31. NIH Fogarty International Center [K01TW010829]

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Author summaryWhy was this study done? Although multiple lines of evidence suggest that vitamin D may play a role in host susceptibility to tuberculosis (TB) disease, the impact of low vitamin D on the risk of developing TB disease has not yet been firmly established. What did the researchers do and find? We conducted a study in Lima, Peru, in which we measured serum 25-(OH)D levels in individuals at high risk for TB disease and followed them for development of TB over 1 year. We pooled individual-level data from seven previously published prospective studies conducted worldwide and from our Lima cohort. We found that individuals with low levels of vitamin D were at higher risk of future progression to TB disease. What do these findings mean? These findings suggest that vitamin D deficiency is a risk factor for developing TB disease. Randomized control trials are needed to determine whether vitamin D supplementation reduces risk of TB disease. Background Few studies have evaluated the association between preexisting vitamin D deficiency and incident tuberculosis (TB). We assessed the impact of baseline vitamins D levels on TB disease risk. Methods and findings We assessed the association between baseline vitamin D and incident TB in a prospective cohort of 6,751 HIV-negative household contacts of TB patients enrolled between September 1, 2009, and August 29, 2012, in Lima, Peru. We screened for TB disease at 2, 6, and 12 months after enrollment. We defined cases as household contacts who developed TB disease at least 15 days after enrollment of the index patient. For each case, we randomly selected four controls from among contacts who did not develop TB disease, matching on gender and year of age. We also conducted a one-stage individual-participant data (IPD) meta-analysis searching PubMed and Embase to identify prospective studies of vitamin D and TB disease until June 8, 2019. We included studies that assessed vitamin D before TB diagnosis. In the primary analysis, we defined vitamin D deficiency as 25-(OH)D < 50 nmol/L, insufficiency as 50-75 nmol/L, and sufficiency as >75nmol/L. We estimated the association between baseline vitamin D status and incident TB using conditional logistic regression in the Lima cohort and generalized linear mixed models in the meta-analysis. We further defined severe vitamin D deficiency as 25-(OH)D < 25 nmol/L and performed stratified analyses by HIV status in the IPD meta-analysis. In the Lima cohort, we analyzed 180 cases and 709 matched controls. The adjusted odds ratio (aOR) for TB risk among participants with baseline vitamin D deficiency compared to sufficient vitamin D was 1.63 (95% CI 0.75-3.52; p = 0.22). We included seven published studies in the meta-analysis and analyzed 3,544 participants. In the pooled analysis, the aOR was 1.48 (95% CI 1.04-2.10; p = 0.03). The aOR for severe vitamin D deficiency was 2.05 (95% CI 0.87-4.87; p trend for decreasing 25-(OH)D levels from sufficient vitamin D to severe deficiency = 0.02). Among 1,576 HIV-positive patients, vitamin D deficiency conferred a 2-fold (aOR 2.18, 95% CI 1.22-3.90; p = 0.01) increased risk of TB, and the aOR for severe vitamin D deficiency compared to sufficient vitamin D was 4.28 (95% CI 0.85-21.45; p = 0.08). Our Lima cohort study is limited by the short duration of follow-up, and the IPD meta-analysis is limited by the number of possible confounding covariates available across all studies. Conclusion Our findings suggest vitamin D predicts TB disease risk in a dose-dependent manner and that the risk of TB disease is highest among HIV-positive individuals with severe vitamin D deficiency. Randomized control trials are needed to evaluate the possible role of vitamin D supplementation on reducing TB disease risk.

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