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细菌脂多糖激活会导致单个腹膜巨噬细胞胞质游离钙浓度发生变化。

Activation by bacterial lipopolysaccharide causes changes in the cytosolic free calcium concentration in single peritoneal macrophages.

作者信息

Letari O, Nicosia S, Chiavaroli C, Vacher P, Schlegel W

机构信息

Department of Medicine, University of Geneva, Switzerland.

出版信息

J Immunol. 1991 Aug 1;147(3):980-3.

PMID:1907309
Abstract

Variations in the cytosolic free Ca2+ concentration [( Ca2+]i) upon LPS exposure were studied in single rat peritoneal macrophages loaded with fura-2 under carefully controlled conditions. Of a total of 60 cells examined, 47% responded to LPS (1 microgram/ml) with an increase in [Ca2+]i. Macrophages were heterogeneous with regard to the LPS response, with individual cells exhibiting single rapid and transient increases in [Ca2+]i, multiple transients, or slower and more sustained variations. In 62% of the responding cells, a second exposure to LPS elicited a [Ca2+]i rise, although usually to a slightly lower peak value. Thus, rapid desensitization to LPS does not occur in the majority of these macrophages. EGTA did not abolish the response of those cells that exhibited a single rapid transient in [Ca2+]i, indicating that the source of the initial [Ca2+]i rise was the intracellular stores. There was no obvious correlation between the type of response to LPS and the initial morphologic features (rounded vs polarized) of the cells. Our present work shows unequivocally that LPS induces increases in macrophage [Ca2+]i and, thereby, lends substantial support to the hypothesis that [Ca2+]i is a second messenger in LPS-mediated activation of the macrophage.

摘要

在精心控制的条件下,对负载fura - 2的单个大鼠腹腔巨噬细胞暴露于脂多糖(LPS)时胞质游离钙离子浓度[Ca2+]i的变化进行了研究。在总共检测的60个细胞中,47%对LPS(1微克/毫升)有反应,表现为[Ca2+]i升高。巨噬细胞对LPS的反应具有异质性,单个细胞表现出[Ca2+]i的单次快速短暂升高、多次短暂变化或更缓慢且持续时间更长的变化。在62%有反应的细胞中,再次暴露于LPS会引起[Ca2+]i升高,尽管通常峰值略低。因此,这些巨噬细胞中的大多数对LPS不会迅速脱敏。乙二醇双(2-氨基乙基醚)四乙酸(EGTA)并未消除那些[Ca2+]i表现出单次快速短暂升高的细胞的反应,这表明初始[Ca2+]i升高的来源是细胞内储存库。对LPS的反应类型与细胞最初的形态特征(圆形与极化)之间没有明显的相关性。我们目前的工作明确表明,LPS会诱导巨噬细胞[Ca2+]i升高,从而为[Ca2+]i是LPS介导的巨噬细胞激活中的第二信使这一假说提供了有力支持。

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