Screening for K13-Propeller Mutations Associated with Artemisinin Resistance in Plasmodium falciparum in Yambio County (Western Equatoria State, South Sudan)

Author:

Molina-de la Fuente Irene123,Sagrado Benito María José4,Ousley Janet5,Gisbert Francisco de Bartolomé4,García Luz23,González Vicenta23,Benito Agustín23,Chol Buai Tut6,Julla Ahmed7,Bakri Abubakr8,Nanclares Carolina4,Berzosa Pedro23

Affiliation:

1. Department of Biomedicine and Biotechnology, School of Pharmacy, University of Alcalá, Alcalá de Henares, Madrid, Spain;

2. Malaria and Neglected Diseases Laboratory, National Centre of Tropical Medicine, Institute of Health Carlos III, Madrid, Spain;

3. CIBERINFECT – CIBER Infectious Diseases, Madrid, Spain;

4. Médecins Sans Frontières, Barcelona, Spain;

5. Médecins Sans Frontières, New York, New York;

6. Médecins Sans Frontières, Juba, South Sudan;

7. Ministry of Health, Juba, South Sudan;

8. Médecins Sans Frontières, Nairobi, Kenya

Abstract

ABSTRACT. Artemisinin-combined treatments are the recommended first-line treatment of Plasmodium falciparum malaria, but they are being threatened by emerging artemisinin resistance. Mutations in pfk13 are the principal molecular marker for artemisinin resistance. This study characterizes the presence of mutations in pfk13 in P. falciparum in Western Equatoria State, South Sudan. We analyzed 468 samples from patients with symptomatic malaria and found 15 mutations (8 nonsynonymous and 7 synonymous). Each mutation appeared only once, and none were validated or candidate markers of artemisinin resistance. However, some mutations were in the same or following position of validated and candidate resistance markers, suggesting instability of the gene that could lead to resistance. The R561L nonsynonymous mutation was found in the same position as the R561H validated mutation. Moreover, the A578S mutation, which is widespread in Africa, was also reported in this study. We found a high diversity of other pfk13 mutations in low frequency. Therefore, routine molecular surveillance of resistance markers is highly recommended to promptly detect the emergence of resistance-related mutations and to limit their spread.

Publisher

American Society of Tropical Medicine and Hygiene

Subject

Virology,Infectious Diseases,Parasitology

Reference33 articles.

1. Artemisinin-based combination treatment of falciparum malaria;Nosten,2007

2. Association of Plasmodium falciparum kelch13 R561H genotypes with delayed parasite clearance in Rwanda: an open-label, single-arm, multicentre, therapeutic efficacy study;Uwimana,2021

3. Changing antimalarial drug resistance patterns identified by surveillance at three sites in Uganda;Tumwebaze,2017

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