微生物,巨噬细胞和一氧化氮。

Behring Institute Mitteilungen Pub Date : 1997-03-01
C Bogdan
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引用次数: 0

摘要

一氧化氮(NO)最重要的功能之一是参与抗微生物和抗病毒防御。本文总结了该功能的证据,并编译了目前被认为是通过高输出生成NO来控制的感染因子,因为它发生在活化的巨噬细胞和其他表达NO合成酶诱导异构体的细胞中(iNOS, NOS-2)。本文还将回顾一氧化氮与微生物之间的一些鲜为人知的相互作用形式,包括在感染过程中一氧化氮作为免疫抑制或组织破坏分子的作用,宿主细胞来源的一氧化氮对微生物抗氧化系统的调节,一氧化氮对寄生虫阶段转化的贡献,微生物产物对巨噬细胞一氧化氮的诱导或抑制,以及某些细菌和寄生虫中内源性一氧化氮合成酶途径的存在。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Of microbes, macrophages and nitric oxide.

One of the most prominent functions of nitric oxide (NO) is its participation in antimicrobial and antiviral defense. This paper summarizes the evidence for this function and compiles the infectious agents which are currently thought to be controlled via high out-put generation of NO as it occurs in activated macrophages and other cells expressing the inducible isoform of NO-synthase (iNOS, NOS-2). Several less appreciated forms of interaction between NO and microbes will also be reviewed, including the role of NO as an immunosuppressive or tissue-destructive molecule during the course of infections, the regulation of microbial antioxidant systems by host cell-derived NO, the contribution of NO to parasite stage conversion, the induction or suppression of macrophage iNOS by microbial products, and the existence of endogenous NO synthase pathways in certain bacteria and parasites.

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