Skip to main navigation Skip to search Skip to main content

Iron nutrition and COVID-19 among Nigerian healthcare workers

  • Katherine Wander
  • , Olayinka O. Ogunleye
  • , Evelyn N. Nwagu
  • , Uche S. Unigwe
  • , Amelia N. Odo
  • , Chinedu M. Chukwubike
  • , Sunday A. Omilabu
  • , Olumuyiwa B. Salu
  • , Bukola S. Owolabi
  • , Bodunrin I. Osikomaiya
  • , Samuel O. Ebede
  • , Abimbola Bowale
  • , Abimbola O. Olaitan
  • , Christopher U. Chukwu
  • , Chibuzo O. Ndiokwelu
  • , Chioma Edu-Alamba
  • , Constance Azubuike
  • , Oluwasegun A. Odubiyi
  • , Yusuf A. Hassan
  • , Nifemi Oloniniyi
  • Akinrinlola Muyiwa Kelvin, Raheem Rashidat Abiola, Amina Saliu, Ololade O. Fadipe, Roosevelt A. Anyanwu, Mercy R. Orenolu, Maryam A. Abdullah, Onyinye D. Ishaya, Chinenye J. Agulefo, Iorhen E. Akase, Megan E. Gauck, Zifan Huang, Mei Hsiu Chen, Titilayo A. Okoror, Masako Fujita
  • Lagos State University
  • University of Nigeria
  • University of Lagos
  • Lagos University Teaching Hospital
  • Lagos State Blood Transfusion Service
  • Lagos State Civil Service
  • Olabisi Onabanjo University
  • Mainland Hospital
  • Usmanu Danfodiyo University
  • State University of New York Binghamton University
  • Michigan State University

Research output: Contribution to journalArticlepeer-review

Abstract

Background and objectives. The optimal iron hypothesis (OIH) posits that risk for infection is lowest at a mild level of iron deficiency. The extent to which this protection results from arms race dynamics in the evolution of iron acquisition and sequestration mechanisms is unclear. We evaluated the OIH with regard to severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), an emerging infectious agent. Methodology. We tested 304 healthcare workers at baseline for iron deficiency (zinc protoporphyrin:heme), anemia (hemoglobin), and SARS-CoV-2 (salivary PCR), and followed them for ~3 months with biweekly SARS-CoV-2 tests. We fit logistic regression models based on Akaike Information Criterion. Results. Adequate data were available for 199 participants. Iron replete (OR: 2.87, 95% CI: 0.85, 9.75) and anemia (OR: 2.48; 95% CI: 0.82, 7.85) were associated with higher risk for SARS-CoV-2 infection after control for covariates. Logistic regression and Cox proportional hazards models of the SARS-CoV-2 outcome were similar. Anemia (OR: 1.81; 95% CI: 0.88, 3.71) was associated with respiratory symptoms regardless of SARS-CoV-2 infection. Conclusions and implications. These findings provide partial support for the OIH: SARS-CoV-2 infection risk was elevated at the high end of the range of iron availability; however, the elevated risk among those with anemia was not, as expected, specific to severe iron deficiency. Narrowly, for COVID-19 epidemiology, these findings accord with evidence that SARS-CoV-2’s ability to establish infection is enhanced by access to iron. More broadly, these findings suggest that the OIH does not hinge on a long history of evolutionary arms race dynamics in access to host iron.

Original languageEnglish
Pages (from-to)287-297
Number of pages11
JournalEvolution, Medicine and Public Health
Volume12
Issue number1
DOIs
StatePublished - 2024

Keywords

  • SARS-CoV-2
  • emerging infectious disease
  • evolutionary epidemiology
  • optimal iron hypothesis

Fingerprint

Dive into the research topics of 'Iron nutrition and COVID-19 among Nigerian healthcare workers'. Together they form a unique fingerprint.

Cite this