化学
乙酰唑胺
体内
碳酸酐酶
万古霉素
微生物学
抗生素
肠球菌
耐万古霉素肠球菌
药理学
酶
细菌
生物化学
金黄色葡萄球菌
内科学
医学
生物
生物技术
遗传学
作者
Katrina J. Holly,Prabhakara R. Tharra,Nader S. Abutaleb,Alessio Nocentini,Ahmed A. Abouelkhair,Molly S. Youse,Anil Kumar Marapaka,Abdallah S. Abdelsattar,Weiwei An,Faith L. Drummond,Olivia C. Snell,Mohamed N. Seleem,Daniel P. Flaherty
标识
DOI:10.1021/acs.jmedchem.5c01584
摘要
As one of the leading causes of hospital-acquired infections reported by the National Healthcare Safety Network, vancomycin-resistant enterococci (VRE) continue to afflict patients in healthcare facilities, with limited FDA-approved drugs available for treating systemic infections. Our group previously showed the 1,3,4-thiadiazole acetazolamide human carbonic anhydrase inhibitor scaffold can be repositioned with potent in vitro efficacy against enterococcal pathogens. However, only acetazolamide has been explored for in vivo efficacy in murine septicemia models. Herein, we report a hit-to-lead account in which we expand the structure-activity relationship for the 1,3,4-thiadiazole scaffold, identified lead candidates with favorable in vitro ADME profiles, and advanced a promising lead analog forward into in vivo pharmacokinetic studies. Ultimately, we demonstrated efficacy in a murine septicemic peritonitis infection model after oral dosing. Overall, we demonstrate a successful example of an acetazolamide-based lead compound with in vivo therapeutic potential for the treatment of septicemic vancomycin-resistant VRE infection.
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