Longitudinal changes in iron homeostasis in human experimental and clinical malaria

Stephen Woolley, Matthew J. Grigg, Louise Marquart, Jeremy S.E. Gower, Kim Piera, Arya Sheela Nair, Fiona M. Amante, Giri S. Rajahram, Timothy William, David M. Frazer, Stephan Chalon, James S. McCarthy, Nicholas M. Anstey, Bridget E. Barber

Research output: Contribution to journalArticlepeer-review

5 Citations (Scopus)

Abstract

Background

The interaction between iron status and malaria is incompletely understood. We evaluated longitudinal changes in iron homeostasis in volunteers enrolled in malaria volunteer infection studies (VIS) and in Malaysian patients with falciparum and vivax malaria.

Methods

We retrieved data and samples from 55 participants (19 female) enrolled in malaria VIS, and 171 patients (45 female) with malaria and 30 healthy controls (13 female) enrolled in clinical studies in Malaysia. Ferritin, hepcidin, erythropoietin, and soluble transferrin receptor (sTfR) were measured by ELISA.

Findings

In the VIS, participants’ parasitaemia was correlated with baseline mean corpuscular volume (MCV), but not iron status (ferritin, hepcidin or sTfR). Ferritin, hepcidin and sTfR all increased during the VIS. Ferritin and hepcidin normalised by day 28, while sTfR remained elevated. In VIS participants, baseline ferritin was associated with post-treatment increases in liver transaminase levels. In Malaysian patients with malaria, hepcidin and ferritin were elevated on admission compared to healthy controls, while sTfR increased following admission. By day 28, hepcidin had normalised; however, ferritin and sTfR both remained elevated.

Interpretation

Our findings demonstrate that parasitaemia is associated with an individual's MCV rather than iron status. The persistent elevation in sTfR 4 weeks post-infection in both malaria VIS and clinical malaria may reflect a causal link between malaria and iron deficiency.

Original languageEnglish
Article number105189
Pages (from-to)e105189
JournaleBioMedicine
Volume105
Early online date7 Jun 2024
DOIs
Publication statusPublished - 7 Jun 2024

Keywords

  • Controlled human malaria infection
  • Hepcidin
  • Iron
  • Iron deficiency
  • Malaria
  • Volunteer infection studies

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