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生物膜中持久细胞的出现:是计算的还是偶然的?

Emergence of persister cells in : calculated or fortuitous move?

机构信息

Quorum Sensing Laboratory, Centre for Research in Infectious Diseases (CRID), School of Chemical and Biotechnology, SASTRA Deemed to be University, Thanjavur, India.

出版信息

Crit Rev Microbiol. 2024 Feb;50(1):64-75. doi: 10.1080/1040841X.2022.2159319. Epub 2022 Dec 22.

Abstract

A stable but reversible phenotype switch from normal to persister state is advantageous to the intracellular pathogens to cause recurrent infections and to evade the host immune system. is a versatile opportunistic pathogen known to cause chronic infections with significant mortality. One of the notable features is the ability to switch to a per-sisters cell, which is found in planktonic and biofilm states. This phenotypic switch is always an open question to explore the hidden fundamental science that coheres with a calculated or fortuitous move. Toxin-antitoxin modules, nutrient stress, and an erroneous translation-enabled state of dormancy entail this persistent behaviour in . It is paramount to get a clear picture of why the cell chooses to enter a persistent condition, as it would decide the course of treatment. Analyzing the exit from a persistent state to an active state and the subsequent repercussion of this transition is essential to determine its role in chronic infections. This review attempts to provide a constructed argument discussing the most widely accepted mechanisms and identifying the various attributes of persistence.

摘要

从正常状态到持续存在状态的稳定但可逆的表型转换,有利于细胞内病原体引起反复感染并逃避宿主免疫系统。 是一种众所周知的多功能机会性病原体,可导致慢性感染,死亡率很高。其显著特征之一是能够切换到休眠细胞,这种细胞存在于浮游生物和生物膜状态。这种表型转换始终是一个探索隐藏基础科学的开放性问题,这与计算或偶然的移动一致。毒素-抗毒素模块、营养压力和错误翻译使休眠状态成为可能,从而导致 持续存在。了解细胞为什么选择进入持续状态至关重要,因为这将决定治疗方案。分析从持续状态到活跃状态的退出以及这种转变的后续影响,对于确定其在慢性感染中的作用至关重要。本综述试图提供一个有说服力的论点,讨论最广泛接受的机制,并确定持久性的各种属性。

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