Journal of Medical Microbiology · 2007 · 225 citations · 16 references
Antiparasitic AgentMalariaApoptosisMolecular BiologyCell DeathCell-cycle ArrestVisceral LeishmaniasisArtemisinin Triggers InductionDrug ResistanceMedicinal ChemistrySitu LabellingAnti-cancer AgentMitochondrial Membrane PotentialCell DivisionBiochemistryParasitic ProtozoaPharmacologyCell BiologyLeishmania Donovani PromastigotesNatural SciencesMedicineDrug Discovery
A major impediment to effective anti-leishmanial chemotherapy is the emergence of drug resistance, especially to sodium antimony gluconate, the first-line treatment for leishmaniasis. Artemisinin, a sesquiterpene lactone isolated from Artemisia annua, is an established anti-malarial compound that showed anti-leishmanial activity in both promastigotes and amastigotes, with IC(50) values of 160 and 22 microM, respectively, and, importantly, was accompanied by a high safety index (>22-fold). The leishmanicidal activity of artemisinin was mediated via apoptosis as evidenced by externalization of phosphatidylserine, loss of mitochondrial membrane potential, in situ labelling of DNA fragments by terminal deoxyribonucleotidyltransferase-mediated dUTP nick end labelling (TUNEL) and cell-cycle arrest at the sub-G(0)/G(1) phase. Taken together, these data indicate that artemisinin has promising anti-leishmanial activity that is mediated by programmed cell death and, accordingly, merits consideration and further investigation as a therapeutic option for the treatment of leishmaniasis.
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Nilkantha Sen, Benu Brata Das, Anirban Ganguly et al. · Cell Death and Differentiation · 2004 · 230 citations · Full text
Damien Arnoult, Khadija Akarid, Alain Grodet et al. · Cell Death and Differentiation · 2002 · 215 citations · Full text