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活性氧和活性氮在沙门氏菌感染中是双刃剑。

Reactive oxygen species and reactive nitrogen species are double-edged swords in Salmonella infection.

作者信息

Song Yue, Ni Ting, Zhao Yifei, Sang Zichun, Wang Qiwen, Xia Xingyu, Liu Chang, Zhang Wenlu, Li Shasha, Deng Bo, Wu Pengfei, Tan Junfeng, Li Zhongjie, Li Wanwu

机构信息

College of Basic Medicine and Forensic Medicine, Henan University of Science and Technology, Luoyang, 471023, China.

出版信息

Arch Microbiol. 2025 Aug 6;207(9):215. doi: 10.1007/s00203-025-04420-1.

Abstract

Salmonella contains a group of serovars, which are more than just enteropathogenic bacteria but dangerous pathogens causing systemic infection of human, livestock, and poultry. As an innate immune response, inflammation induces reactive oxygen species (ROS) and reactive nitrogen species (RNS) production from host cells in response to Salmonella infection. Generally, ROS and RNS are regarded as bactericidal substances for their ability to oxidize and modify the bacterial biomolecules including proteins, DNA, RNA, lipids, etc. However, excessive ROS and RNS damage the functions of host cells through the destroy of host biomolecules. Salmonella inhibits ROS/RNS production, eliminates toxic ROS/RNS, and mends damaged DNA/proteins using specific enzymes or proteins to avoid the killing of ROS/RNS. In hypoxic intracellular environment or intestinal lumen, Salmonella exploits the chemical reaction products of ROS or RNS to promote its growth during infection. This review article provides deep insights for understanding the functions of ROS/RNS in Salmonella infection.

摘要

沙门氏菌包含一组血清型,它们不仅仅是肠道致病菌,更是可导致人类、牲畜和家禽全身感染的危险病原体。作为一种天然免疫反应,炎症会促使宿主细胞在感染沙门氏菌后产生活性氧(ROS)和活性氮(RNS)。一般来说,ROS和RNS因其能够氧化和修饰包括蛋白质、DNA、RNA、脂质等在内的细菌生物分子而被视为杀菌物质。然而,过量的ROS和RNS会通过破坏宿主生物分子来损害宿主细胞的功能。沙门氏菌会抑制ROS/RNS的产生,清除有毒的ROS/RNS,并利用特定的酶或蛋白质修复受损的DNA/蛋白质,以避免被ROS/RNS杀死。在低氧的细胞内环境或肠腔中,沙门氏菌在感染期间利用ROS或RNS的化学反应产物来促进自身生长。这篇综述文章为理解ROS/RNS在沙门氏菌感染中的作用提供了深刻见解。

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