单元格信封
生物发生
抗生素耐药性
生物
抗生素
抗菌剂
包络线(雷达)
生物膜
细菌细胞结构
微生物学
计算生物学
细菌
工程类
大肠杆菌
遗传学
航空航天工程
雷达
基因
作者
Nikol Kadeřábková,Ayesha J. S. Mahmood,R. Christopher D. Furniss,Despoina A. I. Mavridou
标识
DOI:10.1016/bs.ampbs.2023.05.003
摘要
Gram-negative bacteria are uniquely equipped to defeat antibiotics. Their outermost layer, the cell envelope, is a natural permeability barrier that contains an array of resistance proteins capable of neutralizing most existing antimicrobials. As a result, its presence creates a major obstacle for the treatment of resistant infections and for the development of new antibiotics. Despite this seemingly impenetrable armor, in-depth understanding of the cell envelope, including structural, functional and systems biology insights, has promoted efforts to target it that can ultimately lead to the generation of new antibacterial therapies. In this article, we broadly overview the biology of the cell envelope and highlight attempts and successes in generating inhibitors that impair its function or biogenesis. We argue that the very structure that has hampered antibiotic discovery for decades has untapped potential for the design of novel next-generation therapeutics against bacterial pathogens.
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