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巨噬细胞对内毒素作用的脱敏与脂多糖结合位点的下调无关。

Desensitization of macrophages to endotoxin effects is not correlated with a down-regulation of lipopolysaccharide-binding sites.

作者信息

Fahmi H, Chaby R

机构信息

URA-1116 du Centre National de la Recherche Scientifique, Université de Paris-Sud, Orsay, France.

出版信息

Cell Immunol. 1993 Aug;150(1):219-29. doi: 10.1006/cimm.1993.1191.

Abstract

Bacterial endotoxin (LPS) can induce a tolerance to its own effects in vitro, in macrophages. To achieve a better understanding of the mechanism of this type of desensitization, we studied the regulation of the production of interleukin 1, interleukin 6, and tumor necrosis factor alpha by mouse peritoneal macrophages in response to LPS, after a preliminary exposure to LPS or to structurally related synthetic lipids. The concomitant down-regulation of LPS-binding sites was also analyzed. Complete desensitization of macrophages by LPS treatment was accompanied by a decrease of up to 70% in the number of LPS-binding sites. Preexposure of the cells to synthetic lipids also could induce down-regulation of LPS-binding sites and desensitization for cytokine production. However, there was no correlation between the structures that induce desensitization and those that elicit a down-regulation of LPS receptors. Furthermore, some synthetic compounds induced in the cells a restricted state of tolerance, characterized by a lack of secretion of only one cytokine in response to LPS. The results show that down-regulation of LPS receptors is not a prerequisite for the induction of LPS tolerance, and that different LPS substructures can down-regulate differently the various responses of the cells to LPS, thus suggesting that different pathways are operative for induction of endotoxin tolerance.

摘要

细菌内毒素(脂多糖,LPS)在体外可诱导巨噬细胞对其自身作用产生耐受性。为了更好地理解这种脱敏机制,我们研究了小鼠腹腔巨噬细胞在预先暴露于LPS或结构相关的合成脂质后,对LPS产生的白细胞介素1、白细胞介素6和肿瘤坏死因子α的产生调控。同时还分析了LPS结合位点的下调情况。LPS处理使巨噬细胞完全脱敏,同时LPS结合位点数量减少高达70%。细胞预先暴露于合成脂质也可诱导LPS结合位点下调以及细胞因子产生脱敏。然而,诱导脱敏的结构与引起LPS受体下调的结构之间没有相关性。此外,一些合成化合物在细胞中诱导出一种有限的耐受状态,其特征是对LPS仅缺乏一种细胞因子的分泌。结果表明,LPS受体下调不是诱导LPS耐受性的先决条件,并且不同的LPS亚结构可以不同程度地下调细胞对LPS的各种反应,从而表明诱导内毒素耐受性存在不同的作用途径。

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