杂蒽
罗丹明
化学空间
抗菌剂
部分
组合化学
抗生素耐药性
药物发现
化学
化学生物学
纳米技术
抗生素
生物化学
有机化学
材料科学
荧光
物理
量子力学
作者
Xiao Luo,Liujia Qian,Yansheng Xiao,Yao Tang,Yang Zhao,Xia Wang,Luyan Gu,Zuhai Lei,Jianming Bao,Jiahui Wu,Tingting He,Fupin Hu,Jing Zheng,Honglin Li,Weiping Zhu,Lei Shao,Xiaojing Dong,Daijie Chen,Xuhong Qian,Youjun Yang
标识
DOI:10.1038/s41467-018-08241-3
摘要
Abstract Antimicrobial resistance is a public health emergency and warrants coordinated global efforts. Challenge is that no alternative molecular platform has been identified for discovery of abundant antimicrobial hit compounds. Xanthene libraries have been screened for bioactive compounds. However, the potentially accessible chemistry space of xanthene dyes is limited by the existing xanthene synthesis. Herein we report a mild one-step synthesis, which permits late-stage introduction of a xanthene moiety onto i.e. natural products, pharmaceuticals, and bioactive compounds and construction of a focused library of rhodamine dyes exhibiting facile functional, topographical and stereochemical diversity. In vitro screening yields 37 analogs with mid-to-high bactericidal activity against WHO priority drug-resistant pathogens. These findings suggest that synthetic dye libraries exhibiting high structural diversity is a feasible chemical space combating antibacterial resistance, to complement the natural sources.
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