Publication | Closed Access
Endoperoxide Carbonyl Falcipain 2/3 Inhibitor Hybrids: Toward Combination Chemotherapy of Malaria through a Single Chemical Entity
36
Citations
14
References
2010
Year
Bioorganic ChemistryAntiparasitic AgentMalariaAntimicrobial ChemotherapySingle Chemical EntityRedox BiologyPharmaceutical ChemistryOxidative StressMedicinal ChemistryHematologyAnti-cancer AgentSingle Prodrug EntityCombination ChemotherapyBiochemistryInhibitor HybridsToward Combination ChemotherapyDrug DevelopmentHeme HomeostasisPharmacologyCarbonyl Protease InhibitorNatural SciencesHeme DegradationMedicineDrug Discovery
We extend our approach of combination chemotherapy through a single prodrug entity (O'Neill et al. Angew. Chem., Int. Ed. 2004, 43, 4193) by using a 1,2,4-trioxolane as a protease inhibitor carbonyl-masking group. These molecules are designed to target the malaria parasite through two independent mechanisms of action: iron(II) decomposition releases the carbonyl protease inhibitor and potentially cytotoxic C-radical species in tandem. Using a proposed target "heme", we also demonstrate heme alkylation/carbonyl inhibitor release and quantitatively measure endoperoxide turnover in parasitized red blood cells.
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