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Int J Parasitol Drugs Drug Resist ; 8(3): 488-492, 2018 12.
Article in English | MEDLINE | ID: mdl-30500526

ABSTRACT

Toxoplasma gondii is an obligate intracellular parasite with global incidence. The acute infection, toxoplasmosis, is treatable but current regimens have poor host tolerance and no cure has been found for latent infections. This work builds upon a previous high throughput screen which identified benzoquinone acyl hydrazone (KG8) as the most promising compound; KG8 displayed potent in vitro activity against T. gondii but only marginal in vivo efficacy in a T. gondii animal model. To define the potential of this new lead compound, we now describe a baseline structure-activity relationship for this chemotype. Several derivatives displayed IC50's comparable to that of the control treatment pyrimethamine with little to no cytotoxicity. The best of these, KGW44 and KGW59, had higher metabolic stability than KG8. In an in vivo T. gondii murine model, KGW59 significantly increased survivorship. This work provides new insights for optimization of this novel chemotype.


Subject(s)
Antiparasitic Agents/pharmacology , Antiparasitic Agents/therapeutic use , Benzoquinones/pharmacology , Benzoquinones/therapeutic use , Hydrazones/pharmacology , Toxoplasma/drug effects , Animals , Antiparasitic Agents/adverse effects , Antiparasitic Agents/chemistry , Benzoquinones/adverse effects , Benzoquinones/chemistry , Cell Line , Disease Models, Animal , Drug Discovery , Female , Humans , Hydrazones/chemistry , Hydrazones/therapeutic use , Inhibitory Concentration 50 , Mice , Pyrimethamine/administration & dosage , Pyrimethamine/therapeutic use , Structure-Activity Relationship , Toxoplasmosis/drug therapy , Toxoplasmosis/parasitology
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