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Optimization of the electrophile of chloronitrobenzamide leads active against Trypanosoma brucei
Authors:Jong Yeon Hwang  David C Smithson  Gloria Holbrook  Fangyi Zhu  Michele C Connelly  Marcel Kaiser  Reto Brun  R Kiplin Guy
Institution:1. St. Jude Children’s Hospital, Department of Chemical Biology and Therapeutics, 262 Danny Thomas Place, Memphis, TN 38105-3678, USA;2. Department of Medical Parasitology, Swiss Tropical and Public Health Institute, Socinstr. 57, 4002 Basel, Switzerland
Abstract:We previously reported the phenylchloronitrobenzamides (PCNBs), a novel class of compounds active against the species of trypanosomes that cause Human African Trypanosomiasis (HAT). Herein, we explored the potential to adjust the reactivity of the electrophilic chloronitrobenzamide core. These studies identified compound 7d that potently inhibited the growth of trypanosomes (EC50 = 120 nM for Trypanosoma b. brucei, 18 nM for Trypanosoma b. rhodesiense, and 38 nM for Trypanosoma b. gambiense) without significant cytotoxicity against mammalian cell lines (EC50 > 25 μM for HepG2, HEK293, Raji, and BJ cell lines) and also had good stability in microsomal models (t1/2 > 4 h in both human and mouse). Overall these properties indicate the compound 7d and its analogs are worth further exploration as potential leads for HAT.
Keywords:Trypanosomes  Parasitology  Drug discovery
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