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Genomic surveillance of malaria parasites in an indigenous community in the Peruvian Amazon

  • Luis Cabrera-Sosa
  • , Oscar Nolasco
  • , Johanna H. Kattenberg
  • , Carlos Fernandez-Miñope
  • , Hugo O. Valdivia
  • , Keare Barazorda
  • , Silvia Arévalo de los Rios
  • , Hugo Rodriguez-Ferrucci
  • , Joseph M. Vinetz
  • , Anna Rosanas-Urgell
  • , Jean Pierre Van geertruyden
  • , Dionicia Gamboa
  • , Christopher Delgado-Ratto
  • Universidad Peruana Cayetano Heredia
  • Universidad Peruana Cayetano Heredia, Instituto de Medicina Tropical Alexander von Humboldt
  • Institute of Tropical Medicine
  • University of Antwerp
  • NAMRID-Unit 3800
  • Dirección Regional de Salud de Loreto
  • Universidad Nacional de la Amazonia Peruana
  • Yale University School of Medicine

Research output: Contribution to journalArticlepeer-review

7 Scopus citations

Abstract

Hard-to-reach communities represent Peru's main challenge for malaria elimination, but information about transmission in these areas is scarce. Here, we assessed Plasmodium vivax (Pv) and P. falciparum (Pf) transmission dynamics, resistance markers, and Pf hrp2/3 deletions in Nueva Jerusalén (NJ), a remote, indigenous community in the Peruvian Amazon with high population mobility. We collected samples from November 2019 to May 2020 by active (ACD) and passive case detection (PCD) in NJ. Parasites were identified with microscopy and PCR. Then, we analyzed a representative set of positive-PCR samples (Pv = 68, Pf = 58) using highly-multiplexed deep sequencing assays (AmpliSeq) and compared NJ parasites with ones from other remote Peruvian areas using population genetics indexes. The ACD intervention did not reduce malaria cases in the short term, and persistent malaria transmission was observed (at least one Pv infection was detected in 96% of the study days). In Nueva Jerusalen, the Pv population had modest genetic diversity (He = 0.27). Pf population had lower diversity (He = 0.08) and presented temporal clustering, one of these clusters linked to an outbreak in February 2020. Moreover, Pv and Pf parasites from NJ exhibited variable levels of differentiation (Pv Fst = 0.07–0.52 and Pf Fst = 0.11–0.58) with parasites from other remote areas. No artemisin resistance mutations but chloroquine (57%) and sulfadoxine-pyrimethamine (35–67%) were detected in NJ's Pf parasites. Moreover, pfhrp2/3 gene deletions were common (32–50% of parasites with one or both genes deleted). The persistent Pv transmission and the detection of a Pf outbreak with parasites genetically distinct from the local ones highlight the need for tailored interventions focusing on mobility patterns and imported infections in remote areas to eliminate malaria in the Peruvian Amazon.

Original languageEnglish
Article number16291
JournalScientific Reports
Volume14
Issue number1
DOIs
StatePublished - Dec 2024

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • Drug resistance
  • Genetic diversity
  • HRP2
  • Malaria elimination
  • Malaria persistence
  • Population genetics

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