Collaborative Innovation Center of Yangtze River Delta Region Green Pharmaceuticals, Key Laboratory of Marine Fishery Resources Exploitment & Utilization of Zhejiang Province, College of Pharmaceutical Science, Zhejiang University of Technology, 18 Chaowang Road, Hangzhou 310014, China.
Mar Drugs. 2022 Jul 28;20(8):488. doi: 10.3390/md20080488.
The survival selection pressure caused by antibiotic-mediated bactericidal and bacteriostatic activity is one of the important inducements for bacteria to develop drug resistance. Bacteria gain drug resistance through spontaneous mutation so as to achieve the goals of survival and reproduction. Quorum sensing (QS) is an intercellular communication system based on cell density that can regulate bacterial virulence and biofilm formation. The secretion of more than 30 virulence factors of is controlled by QS, and the formation and diffusion of biofilm is an important mechanism causing the multidrug resistance of , which is also closely related to the QS system. There are three main QS systems in : system, system, and system. Quorum-sensing inhibitors (QSIs) can reduce the toxicity of bacteria without affecting the growth and enhance the sensitivity of bacterial biofilms to antibiotic treatment. These characteristics make QSIs a popular topic for research and development in the field of anti-infection. This paper reviews the research progress of the quorum-sensing system and QSIs, targeting three QS systems, which will provide help for the future research and development of novel quorum-sensing inhibitors.
抗生素介导的杀菌和抑菌活性产生的生存选择压力是细菌产生耐药性的重要诱因之一。细菌通过自发突变获得耐药性,从而实现生存和繁殖的目标。群体感应(QS)是一种基于细胞密度的细胞间通讯系统,可调节细菌的毒力和生物膜形成。QS 控制着 30 多种毒力因子的分泌,生物膜的形成和扩散是导致 多药耐药的重要机制,这也与 QS 系统密切相关。 中有三个主要的 QS 系统:系统、系统和 系统。群体感应抑制剂(QSIs)可以降低细菌的毒性而不影响其生长,并增强细菌生物膜对抗生素治疗的敏感性。这些特性使得 QSIs 成为抗感染领域研究和开发的热门话题。本文综述了 种群体感应系统和 QSIs 的研究进展,针对三种 QS 系统,为新型群体感应抑制剂的未来研究和开发提供帮助。