纳米银诱导微生物氧化应激及其抗菌机制
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广西自然科学基金项目(2020GXNSFAA297198);广西特聘专家项目(厅发[2018]39号);广西科技基地和人才专项(桂科AD19110074)


Microbial Oxidative Stress Induced by Silver Nanoparticles and Its Antimicrobial Mechanism
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    摘要:

    近年来,为解决致病菌的耐药性问题,多种新型抗菌剂应运而生。其中,银纳米粒子(AgNPs)的抗菌效果颇为突出,受到广泛关注。AgNPs抗菌性涉及生物膜、细胞损伤和基因表达等复杂的生物过程。氧化应激反应在这一生物过程中占据重要地位。在AgNPs胁迫下,微生物胞内产生过量的活性氧(ROS),激发胞内的氧化应激,并产生以下3个方面的作用:破坏细胞壁、细胞膜及其内容物;影响氧化应激相关基因表达;影响蛋白质翻译过程和代谢通路的变化。基于此,本文将介绍AgNPs胁迫下微生物氧化应激的产生,重点阐述氧化应激在细胞、基因表达、转录组和蛋白组水平对微生物的影响机制,以便深入了解氧化应激在AgNPs抗菌中的作用。

    Abstract:

    In recent years, in order to solve the problem of drug resistance of pathogenic bacteria, a variety of new antimicrobial agents emerged. Among them, the antibacterial effect of silver nanoparticles (AgNPs) is quite outstanding, so it has been widely concerned. The antimicrobial activity of AgNPs involves complex biological processes such as biofilm, cell damage and gene expression. Oxidative stress reaction plays an important role in this biological process. Under the stress of AgNPs, excessive reactive oxygen species(ROS) is produced in microorganisms, which stimulates intracellular oxidative stress and causes the following three effects: destruction of cell wall, cell membrane and its contents; affecting oxidative stress related gene expression; changes in protein translation processes and metabolic pathways. Based on this, this paper introduced the generation of microbial oxidative stress under the stress of AgNPs, focusing on the influence mechanism of oxidative stress on microorganisms at the levels of cells, gene expression, transcriptome and proteome. This is helpful to further understand the role of oxidative stress in the antimicrobial mechanism of AgNPs.

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潘蒋娟;李培骏;苏东林;赵志远;李高阳;单杨.纳米银诱导微生物氧化应激及其抗菌机制[J].中国食品学报,2021,21(11):389-396

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  • 在线发布日期: 2021-12-17
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