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Strategies for mitigating emerging artemisinin-based antimalarial drug resistance in Rwanda

A promising approach for managing therapies in malaria-endemic countries

Datos Bibliográficos

ID21879451
AutoresClaude Mambo Muvunyi (0000-0003-4180-442X, Rwanda Biomedical Center), Pierre Gashema (0000-0001-9348-0936, Africa Centres for Disease Control and Prevention), Aimable Mbituyumuremyi (Rwanda Biomedical Center), Patrick Gad Iradukunda (0000-0002-0236-7776, University of Kigali), Emmanuel Edwar Siddig (0000-0001-6314-7374, Africa Centres for Disease Control and Prevention), Jean Damascene Niyonzima (Rwanda Biomedical Center), Emmanuel Hakizimana (0000-0002-9386-9850, Rwanda Biomedical Center), Noella Umulisa (University of Kigali), Abdisalan M Noor (0000-0003-2242-4499, Harvard University Press), Jules Mugabo Semahore (0009-0003-6554-6194, University of Kigali), Albert Tuyishime (0009-0004-3118-4989, Rwanda Biomedical Center), Jean de Dieu HARELIMANA (0000-0003-0944-5404, Rwanda Biomedical Center), Jeanne Umuhire (Rwanda Biomedical Center), Yvan Butera (0000-0002-0648-2384, Rwanda Biomedical Center), Sabin Nsanzimana (0000-0002-5946-0015, Rwanda Biomedical Center)
Año2025
Volumen10
Número10
Páginase020884
Fecha de publicación2025-10-01
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaBMJ Global Health (JOURNAL)
Identificadores de la revistaISSN: 2059-7908 • E-ISSN: 2059-7908
EditorialBMJ (PUBLISHER • GB)
DOI10.1136/bmjgh-2025-020884
PMID41043959
OpenAlexW4414796020
IdiomaEN
Referencias citadas31

Malaria treatment failures associated with reduced efficacy of chloroquine (CQ) and amodiaquine (AQ) antimalarial drugs emerged in Rwanda during the 1980s, prompting the policy shift towards adopting artemisinin-based combination therapies in 2006 as an alternative. However, recent findings from malaria surveillance and therapeutic efficacy studies have revealed a countrywide increase in antimalarial drug resistance. Particularly, artemether-lumefantrine (AL) efficacy has significantly decreased, probably due to the emergence of Plasmodium falciparum ( Pf ) genomic mutations. To mitigate the current drug resistance, Rwanda has adopted targeted multiple first-line therapies. Through the national malaria control program, antimalarial drugs were deployed in accordance with the reported resistance profile. A significant rise in Pfkelch13 mutations, particularly A675V associated with AL resistance, was mainly reported in the western region; therefore, artesunate-pyronaridine was recommended. Dihydroartemisinin-piperaquine was considered in eastern and central regions, where R561H mutations were predominant. On the contrary, AL was maintained in the southern region, where the prevalence of the R561H mutation was low. Insights from this data-driven model will inform its extension to other malaria-endemic countries facing emerging Pf genetic diversity

Amodiaquine · Chloroquine · Combination therapy · Drug · Drug resistance · Malaria · Proguanil · Public health · Computational Drug Discovery Methods · Drug-Induced Hepatotoxicity and Protection · Malaria Research and Control

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