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从实验台到病床的综述:群体感应与侵袭性细菌感染期间细胞间通讯的作用

Bench-to-bedside review: Quorum sensing and the role of cell-to-cell communication during invasive bacterial infection.

作者信息

Asad Shadaba, Opal Steven M

机构信息

Infectious Disease Division, Warren Alpert Medical School of Brown University, Memorial Hospital of Rhode Island, 111 Brewster Street, Pawtucket, RI 02860, USA.

出版信息

Crit Care. 2008;12(6):236. doi: 10.1186/cc7101. Epub 2008 Nov 25.

Abstract

Bacteria communicate extensively with each other and employ a communal approach to facilitate survival in hostile environments. A hierarchy of cell-to-cell signaling pathways regulates bacterial growth, metabolism, biofilm formation, virulence expression, and a myriad of other essential functions in bacterial populations. The notion that bacteria can signal each other and coordinate their assault patterns against susceptible hosts is now well established. These signaling networks represent a previously unrecognized survival strategy by which bacterial pathogens evade antimicrobial defenses and overwhelm the host. These quorum sensing communication signals can transgress species barriers and even kingdom barriers. Quorum sensing molecules can regulate human transcriptional programs to the advantage of the pathogen. Human stress hormones and cytokines can be detected by bacterial quorum sensing systems. By this mechanism, the pathogen can detect the physiologically stressed host, providing an opportunity to invade when the patient is most vulnerable. These rather sophisticated, microbial communication systems may prove to be a liability to pathogens as they make convenient targets for therapeutic intervention in our continuing struggle to control microbial pathogens.

摘要

细菌之间广泛交流,并采用群体方式在恶劣环境中促进生存。细胞间信号通路的层级结构调节细菌生长、代谢、生物膜形成、毒力表达以及细菌群体中众多其他基本功能。细菌能够相互发信号并协调其对易感宿主的攻击模式这一观念现已得到充分确立。这些信号网络代表了一种此前未被认识到的生存策略,细菌病原体借此逃避抗菌防御并压倒宿主。这些群体感应通讯信号能够跨越物种障碍甚至界的障碍。群体感应分子能够调节人类转录程序,从而有利于病原体。人类应激激素和细胞因子能够被细菌群体感应系统检测到。通过这种机制,病原体能够检测到生理上处于应激状态的宿主,从而在患者最脆弱时获得入侵的机会。这些相当复杂的微生物通讯系统可能会被证明是病原体的一个弱点,因为在我们持续控制微生物病原体的斗争中,它们成为了治疗干预的便利靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6463/2646340/35a4ae747eec/cc7101-1.jpg

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