化学
结核分枝杆菌
肺结核
行动方式
微生物学
多重耐药
抗药性
药品
霉酸
分枝杆菌
药理学
抗生素
生物化学
生物
医学
病理
作者
Yixin Cui,Alice Lanne,Xudan Peng,Edward P. Browne,Apoorva Bhatt,Nicholas J. Coltman,Philip G. E. Craven,Liam R. Cox,Nicholas J. Cundy,Katie Dale,Antonio Feula,Jon Frampton,Martin Fung,Michael J. Morton,Aaron Goff,Mariwan Salih,Xingfen Lang,Xingjian Li,Chris Moon,Jordan Pascoe
标识
DOI:10.1021/acs.jmedchem.3c01643
摘要
and MDR-TB, were identified. These compounds demonstrate no detectable drug resistance. The mode of action and target deconvolution studies suggest that these compounds inhibit mycobacterial growth by interfering with cell envelope biogenesis, specifically late-stage mycolic acid biosynthesis. Transcriptomic analysis demonstrates that the BGAz compounds tested display a mode of action distinct from the existing mycobacterial cell wall inhibitors. In addition, the compounds tested exhibit toxicological and PK/PD profiles that pave the way for their development as antitubercular chemotherapies.
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