Oral iron supplements for children in malaria-endemic areas

Michael Itzkovich1,2, Ami Neuberger3, Itai Harris4,5

  • 1Infectious Diseases Unit, Sheba Medical Center, Ramat Gan, Israel.

Insights

Iron supplementation in children in malaria-endemic areas has little to no effect on clinical malaria, but may increase risk if malaria prevention services are limited. Combining iron with antimalarial treatment significantly reduces malaria incidence.

Area of Science:

  • Public Health and Tropical Medicine
  • Nutritional Science
  • Pediatrics

Background:

  • Iron deficiency anemia is a prevalent nutritional disorder in children residing in malaria-endemic regions, linked to adverse health and developmental outcomes.
  • Concerns exist that iron supplementation may exacerbate malaria risk by promoting parasite growth, especially where malaria prevention and treatment are inadequate.

Purpose of the Study:

  • To assess the efficacy and safety of iron supplementation, with or without folic acid, in children living in areas with intense, year-round malaria transmission.
  • To evaluate the impact of iron supplementation on clinical malaria, severe malaria, mortality, and hospitalizations in pediatric populations in malaria-endemic zones.

Main Methods:

  • A systematic review and meta-analysis of individual and cluster-randomized controlled trials (RCTs) involving children under 18 in malaria-endemic regions.
  • Searched multiple databases (CENTRAL, MEDLINE, Embase, Global Index Medicus) and trial registries up to April 2024, including a search update in May 2025.
  • Included trials compared iron (alone or with folic acid) versus placebo/no treatment, or iron plus antimalarial treatment versus placebo/no treatment, with critical outcomes including clinical malaria, severe malaria, and death.

Main Results:

  • Iron supplementation alone showed little to no difference in clinical malaria risk (high-certainty evidence) but slightly reduced severe malaria risk (high-certainty evidence).
  • In areas with malaria prevention services, iron supplementation may slightly reduce clinical malaria; however, in areas lacking these services, it may slightly increase clinical malaria risk (low-certainty evidence).
  • Combining iron with antimalarial prophylaxis significantly reduced clinical malaria (high-certainty evidence) and hospitalizations/clinic visits (moderate-certainty evidence).

Conclusions:

  • Iron supplementation generally has little to no impact on clinical malaria risk, but its administration requires careful consideration of local malaria prevention and management capacities.
  • In resource-limited settings, iron can be provided without prior anemia screening if effective malaria control measures are in place.
  • Iron supplementation combined with antimalarial prophylaxis is highly effective in reducing malaria incidence and related healthcare utilization in children.
Abstract

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