Skip to main navigation Skip to search Skip to main content

High-Throughput Assay and Discovery of Small Molecules that Interrupt Malaria Transmission

  • David M. Plouffe
  • , Melanie Wree
  • , Alan Y. Du
  • , Stephan Meister
  • , Fengwu Li
  • , Kailash Patra
  • , Aristea Lubar
  • , Shinji L. Okitsu
  • , Erika L. Flannery
  • , Nobutaka Kato
  • , Olga Tanaseichuk
  • , Eamon Comer
  • , Bin Zhou
  • , Kelli Kuhen
  • , Yingyao Zhou
  • , Didier Leroy
  • , Stuart L. Schreiber
  • , Christina A. Scherer
  • , Joseph Vinetz
  • , Elizabeth A. Winzeler
  • Genomics Institute of the Novartis Research Foundation
  • Department of Pediatrics
  • Department of Medicine
  • EMD Serono Research and Development Institute
  • Broad Institute
  • Medicines for Malaria Venture (MMV)
  • Harvard University

Research output: Contribution to journalArticlepeer-review

134 Scopus citations

Abstract

Preventing transmission is an important element of malaria control. However, most of the current available methods to assay for malaria transmission blocking are relatively low throughput and cannot be applied to large chemical libraries. We have developed a high-throughput and cost-effective assay, the Saponin-lysis Sexual Stage Assay (SaLSSA), for identifying small molecules with transmission-blocking capacity. SaLSSA analysis of 13,983 unique compounds uncovered that >90% of well-characterized antimalarials, including endoperoxides and 4-aminoquinolines, as well as compounds active against asexual blood stages, lost most of their killing activity when parasites developed into metabolically quiescent stage V gametocytes. On the other hand, we identified compounds with consistent low nanomolar transmission-blocking activity, some of which showed cross-reactivity against asexual blood and liver stages. The data clearly emphasize substantial physiological differences between sexual and asexual parasites and provide a tool and starting points for the discovery and development of transmission-blocking drugs.

Original languageEnglish
Pages (from-to)114-126
Number of pages13
JournalCell Host and Microbe
Volume19
Issue number1
DOIs
StatePublished - 13 Jan 2016
Externally publishedYes

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

  • Plasmodium
  • chemotherapy
  • gametocytes
  • malaria
  • transmission

Fingerprint

Dive into the research topics of 'High-Throughput Assay and Discovery of Small Molecules that Interrupt Malaria Transmission'. Together they form a unique fingerprint.

Cite this