Plasmodium falciparum and Plasmodium vivax Demonstrate Contrasting Chloroquine Resistance Reversal Phenotypes

Author:

Wirjanata Grennady1,Handayuni Irene1,Prayoga Pak2,Leonardo Leo2,Apriyanti Dwi3,Trianty Leily3,Wandosa Ruland2,Gobay Basbak2,Kenangalem Enny24,Poespoprodjo Jeanne Rini245,Noviyanti Rintis3,Kyle Dennis E.6,Cheng Qin78,Price Ric N.19,Marfurt Jutta1

Affiliation:

1. Global and Tropical Health Division, Menzies School of Health Research, Charles Darwin University, Casuarina, Darwin, Australia

2. Papuan Health and Community Development Foundation (PHCDF), Timika, Papua, Indonesia

3. Eijkman Institute for Molecular Biology, Jakarta, Indonesia

4. District Health Authority, Timika, Papua, Indonesia

5. Department of Paediatrics, Faculty of Medicine, Gadjah Mada University, Yogyakarta, Indonesia

6. Department of Global Health, University of South Florida, Tampa, Florida, USA

7. Australian Army Malaria Institute, Brisbane, Australia

8. Clinical Tropical Medicine, Queensland Institute of Medical Research, Brisbane, Australia

9. Centre for Tropical Medicine and Global Health, Nuffield Department of Clinical Medicine, University of Oxford, Oxford, United Kingdom

Abstract

ABSTRACT High-grade chloroquine (CQ) resistance has emerged in both Plasmodium falciparum and P. vivax . The aim of the present study was to investigate the phenotypic differences of CQ resistance in both of these species and the ability of known CQ resistance reversal agents (CQRRAs) to alter CQ susceptibility. Between April 2015 and April 2016, the potential of verapamil (VP), mibefradil (MF), L703,606 (L7), and primaquine (PQ) to reverse CQ resistance was assessed in 46 P. falciparum and 34 P. vivax clinical isolates in Papua, Indonesia, where CQ resistance is present in both species, using a modified schizont maturation assay. In P. falciparum , CQ 50% inhibitory concentrations (IC 50 s) were reduced when CQ was combined with VP (1.4-fold), MF (1.2-fold), L7 (4.2-fold), or PQ (1.8-fold). The degree of CQ resistance reversal in P. falciparum was highly correlated with CQ susceptibility for all CQRRAs ( R 2 = 0.951, 0.852, 0.962, and 0.901 for VP, MF, L7, and PQ, respectively), in line with observations in P. falciparum laboratory strains. In contrast, no reduction in the CQ IC 50 s was observed with any of the CQRRAs in P. vivax , even in those isolates with high chloroquine IC 50 s. The differential effect of CQRRAs in P. falciparum and P. vivax suggests significant differences in CQ kinetics and, potentially, the likely mechanism of CQ resistance between these two species.

Funder

National Health and Medical Research Council

Swiss National Science Foundation

Department of Health | National Health and Medical Research Council

Wellcome

Publisher

American Society for Microbiology

Subject

Infectious Diseases,Pharmacology (medical),Pharmacology

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