Ex vivo susceptibilities to ganaplacide and diversity in potential resistance mediators in Ugandan Plasmodium falciparum isolates

Author:

Kreutzfeld Oriana1ORCID,Orena Stephen2,Okitwi Martin2,Tumwebaze Patrick K.2,Byaruhanga Oswald2,Katairo Thomas2,Conrad Melissa D.1ORCID,Legac Jennifer1,Garg Shreeya1,Crudale Rebecca3,Aydemir Ozkan4,Giesbrecht David3,Nsobya Samuel L.2,Blasco Benjamin5,Duffey Maelle5,Rouillier Melanie5,Bailey Jeffrey A.3,Cooper Roland A.6ORCID,Rosenthal Philip J.1ORCID

Affiliation:

1. University of California, San Francisco, California, USA

2. Infectious Diseases Research Collaboration, Kampala, Uganda

3. Brown University, Providence, Rhode Island, USA

4. Program in Molecular Medicine, University of Massachusetts Medical School, Worcester, Massachusetts, USA

5. Medicines for Malaria Venture, Geneva, Switzerland

6. Dominican University of California, San Rafael, California, USA

Abstract

ABSTRACT Novel antimalarials are urgently needed to combat rising resistance to available drugs. The imidazolopiperazine ganaplacide is a promising drug candidate, but decreased susceptibility of laboratory strains has been linked to polymorphisms in the Plasmodium falciparum cyclic amine resistance locus (PfCARL), acetyl-CoA transporter (PfACT), and UDP-galactose transporter (PfUGT). To characterize parasites causing disease in Africa, we assessed ex vivo drug susceptibilities to ganaplacide in 750 P . falciparum isolates collected in Uganda from 2017 to 2023. Drug susceptibilities were assessed using a 72-hour SYBR Green growth inhibition assay. The median IC 50 for ganaplacide was 13.8 nM, but some isolates had up to 31-fold higher IC 50 s (31/750 with IC 50 > 100 nM). To assess genotype-phenotype associations, we sequenced genes potentially mediating altered ganaplacide susceptibility in the isolates using molecular inversion probe and dideoxy sequencing methods. PfCARL was highly polymorphic, with eight mutations present in >5% of isolates. None of these eight mutations had previously been selected in laboratory strains with in vitro drug pressure and none were found to be significantly associated with decreased ganaplacide susceptibility. Mutations in PfACT and PfUGT were found in ≤5% of isolates, except for two frequent (>20%) mutations in PfACT; one mutation in PfACT (I140V) was associated with a modest decrease in susceptibility. Overall, Ugandan P. falciparum isolates were mostly highly susceptible to ganaplacide. Known resistance mediators were polymorphic, but mutations previously selected with in vitro drug pressure were not seen, and mutations identified in the Ugandan isolates were generally not associated with decreased ganaplacide susceptibility.

Funder

HHS | NIH | OSC | Common Fund

Medicines for Malaria Venture

Publisher

American Society for Microbiology

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