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Published on: January 19, 2024
Artemisinin Activity in Red Blood Cells from Anemic Children
Fatou Joof1, Morgan M Goheen2, Carla Cerami1
11Medical Research Council Unit The Gambia at London School of Hygiene and Tropical Medicine, Banjul, The Gambia.
Insights
Host anemia does not affect artemisinin drug activity against malaria parasites. This study found no difference in artemisinin efficacy or sensitivity in red blood cells from anemic versus non-anemic children.
Area of Science:
- Malariology
- Hematology
- Pharmacology
Background:
- Artemisinin combination therapies are the primary treatment for falciparum malaria.
- Artemisinin efficacy relies on heme iron activation within red blood cells (RBCs).
- Anemia and iron deficiency are common in malaria-endemic regions, potentially impacting treatment.
Purpose of the Study:
- To investigate if host anemia affects artemisinin activity.
- To determine if anemia alters the sensitivity of Plasmodium falciparum to artemisinin.
- To assess the impact of anemia on standard antimalarial drug efficacy.
Main Methods:
- Collected RBCs from anemic and non-anemic Gambian children (aged 2-24 months).
- Assessed artemisinin sensitivity of resistant and sensitive P. falciparum strains in vitro using the ring-stage survival assay.
- Performed standard antimalarial drug activity assays.
Main Results:
- No significant differences in artemisinin sensitivity were observed between anemic and non-anemic RBCs (P > 0.05).
- No correlation was found between artemisinin activity and host hemoglobin levels.
- IC50 values for major antimalarial drug classes showed no difference between anemic and non-anemic RBCs.
Conclusions:
- Host anemia does not appear to influence the activity of artemisinin-based antimalarial drugs.
- The findings suggest that anemia does not compromise artemisinin efficacy in treating malaria.
Abstract:
Artemisinin combination therapies are the current frontline therapy for falciparum malaria. Artemisinin is activated by heme iron, and the consequent production of reactive oxygen species and carbon-centered radicals results in rapid parasite clearance. Red blood cells (RBCs) from anemic iron-deficient individuals have decreased levels of heme, and such deficiencies are highly prevalent among children and pregnant women in malaria-endemic countries. We, therefore, investigated the possibility that host anemia could impair artemisinin activity and alter the drug sensitivity of artemisinin-resistant strains of Plasmodium falciparum. We collected RBCs from anemic (n = 35) and nonanemic (n = 11) Gambian children between the ages of 2 and 24 months. Parasites grown in RBCs from both groups were assessed in vitro using the ring-stage survival assay with artemisinin-resistant and artemisinin-sensitive strains of P. falciparum. No differences were found in artemisinin sensitivity (P > 0.05), and there was no correlation between artemisinin activity and host hemoglobin levels. Standard antimalarial drug activity assays for representatives of the major classes of antimalarial drugs found no differences in the IC50 values against P. falciparum between anemic and nonanemic RBCs. We conclude that host anemia does not influence artemisinin activity.
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