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白细胞介素-10介导的免疫抑制分子机制的新见解。

New insights into the molecular mechanism of interleukin-10-mediated immunosuppression.

作者信息

Grütz Gerald

机构信息

Charité Berlin, Institute of Medical Immunology, Luisenstr. 6-8, Berlin, Germany.

出版信息

J Leukoc Biol. 2005 Jan;77(1):3-15. doi: 10.1189/jlb.0904484. Epub 2004 Nov 2.

Abstract

Interleukin-10 (IL-10) is an important immunomodulatory cytokine, which has attracted much attention because of its anti-inflammatory properties. It reduces antigen presentation and inhibits T cell activation. IL-10-treated myeloid cells lose their ability to respond toward the endotoxin lipopolysaccharide (LPS) with the production of several proinflammatory mediators. Thereby, IL-10 limits excessive inflammatory reactions in response to endotoxin as it occurs in colitis or endotoxin shock. Mice can be tolerized toward endotoxin shock when pretreated with a sublethal dose of LPS. This can be mimicked in vitro as LPS desensitization, resulting in a similar LPS hyporesponsiveness as observed with IL-10 pretreatment. However, an early block in LPS signaling characterizes LPS desensitization, whereas IL-10 seems to target late events. Controversial reports have been published where IL-10 would interfere with the induction of proinflammatory mediators, and little is known about the molecular mechanisms behind the anti-inflammatory activities of IL-10. Some recent publications have tried to gain more insight into the molecular mechanism of IL-10 by gene-expression profiling and functional studies in myeloid-derived cells. These results are reviewed here and compared with the progress that has been made to understand the induction of endotoxin tolerance by LPS itself.

摘要

白细胞介素-10(IL-10)是一种重要的免疫调节细胞因子,因其抗炎特性而备受关注。它可减少抗原呈递并抑制T细胞活化。经IL-10处理的髓样细胞失去了对内毒素脂多糖(LPS)产生多种促炎介质的反应能力。因此,IL-10可限制因内毒素引发的过度炎症反应,如在结肠炎或内毒素休克中所发生的那样。用亚致死剂量的LPS预处理小鼠,可使其对内毒素休克产生耐受。这在体外可模拟为LPS脱敏,从而导致与IL-10预处理时观察到的类似的LPS低反应性。然而,LPS信号传导的早期阻断是LPS脱敏的特征,而IL-10似乎作用于后期事件。已有相互矛盾的报道称IL-10会干扰促炎介质的诱导,而关于IL-10抗炎活性背后的分子机制知之甚少。最近的一些出版物试图通过基因表达谱分析和髓样来源细胞的功能研究,更深入地了解IL-10的分子机制。本文对这些结果进行了综述,并与在理解LPS自身诱导内毒素耐受方面所取得的进展进行了比较。

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