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Artemisinin-independent inhibitory activity of

Authors :
Kutub, Ashraf
Shahin, Tajeri
Christophe-Sébastien, Arnold
Nadia, Amanzougaghene
Jean-François, Franetich
Amélie, Vantaux
Valérie, Soulard
Mallaury, Bordessoulles
Guillaume, Cazals
Teun, Bousema
Geert-Jan, van Gemert
Roger, Le Grand
Nathalie, Dereuddre-Bosquet
Jean-Christophe, Barale
Benoit, Witkowski
Georges, Snounou
Romain, Duval
Cyrille Y, Botté
Dominique, Mazier
Source :
Life Science Alliance
Publication Year :
2021

Abstract

Infusions from two Artemisia species, one containing artemisinin, the other not, equally inhibit pre-erythrocytic and erythrocytic stages of different Plasmodium species, including two relapsing species.<br />Artemisinin-based combination therapies (ACT) are the frontline treatments against malaria worldwide. Recently the use of traditional infusions from Artemisia annua (from which artemisinin is obtained) or Artemisia afra (lacking artemisinin) has been controversially advocated. Such unregulated plant-based remedies are strongly discouraged as they might constitute sub-optimal therapies and promote drug resistance. Here, we conducted the first comparative study of the anti-malarial effects of both plant infusions in vitro against the asexual erythrocytic stages of Plasmodium falciparum and the pre-erythrocytic (i.e., liver) stages of various Plasmodium species. Low concentrations of either infusion accounted for significant inhibitory activities across every parasite species and stage studied. We show that these antiplasmodial effects were essentially artemisinin-independent and were additionally monitored by observations of the parasite apicoplast and mitochondrion. In particular, the infusions significantly incapacitated sporozoites, and for Plasmodium vivax and P. cynomolgi, disrupted the hypnozoites. This provides the first indication that compounds other than 8-aminoquinolines could be effective antimalarials against relapsing parasites. These observations advocate for further screening to uncover urgently needed novel antimalarial lead compounds.

Details

ISSN :
25751077
Volume :
5
Issue :
3
Database :
OpenAIRE
Journal :
Life science alliance
Accession number :
edsair.pmid..........a0ba6cb185719c1f434bcfb1eb7650a5