LPS对人单核细胞补体(C3)合成的刺激。

W K Nichols
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引用次数: 19

摘要

以人单核细胞样细胞系U937为模型系统,研究了大肠杆菌脂多糖(LPS)和其他免疫调节剂对单核细胞合成补体成分C3的影响。采用酶联免疫吸附试验(ELISA)测定培养细胞培养基中C3的积累量。在LPS(0.01和0.10微克/毫升)存在下,U937细胞的C3产量分别增加了2倍和5倍。在含淋巴因子上清存在的情况下,C3的产生也增加了,这些上清是从人外周血单个核细胞中获得的,这些细胞经过豆豆蛋白A-sepharose刺激。人γ -干扰素(50-500单位/ml)刺激U937细胞产生C3。脂多糖或单核细胞上清液对C3产生的刺激被环己亚胺阻断。LPS(0.10和1.0微克/毫升)也能刺激U937细胞产生PGE2,但在最低浓度(0.01微克/毫升)时,PGE2不能增加C3的生物合成。尽管外源性PGE1(10(-7)和10(-6)M)促进了C3产量的小幅增加,但脂多糖的作用并没有被抑制PGE2生物合成的吲哚美辛(10(-6)M)浓度降低。因此,脂多糖诱导的C3合成不是由U937细胞中PGE2的增加介导的。总之,这些观察结果表明,单核细胞/巨噬细胞的C3生物合成可以被局部炎症反应微环境中发现的细胞免疫反应介质调节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
LPS stimulation of complement (C3) synthesis by a human monocyte cell line.

The human monocyte-like cell line, U937, was utilized as a model system to assess the influence of lipopolysaccharides (LPS) from Escherichia coli and other immunomodulatory agents on the biosynthesis of complement component C3 by monocytoid cells. The amount of C3 accumulated in the medium of cultured cells was measured by an enzyme-linked immunoabsorbent assay (ELISA). In the presence of LPS (0.01 and 0.10 microgram/ml) C3 production by U937 cells was increased by 2- and 5-fold, respectively. C3 production was also increased in the presence of lymphokine-containing supernatants obtained from human peripheral blood mononuclear cells after their stimulation with concanavalin A-sepharose. Human gamma-interferon (50-500 units/ml) stimulated C3 production by U937 cells. Stimulation of C3 production by LPS or mononuclear cell supernatants was blocked by cycloheximide. LPS (0.10 and 1.0 microgram/ml) also stimulated PGE2 production by U937 cells but failed to increase PGE2 at the lowest concentration (0.01 micrograms/ml) shown to increase C3 biosynthesis. Although exogenous PGE1 (10(-7) and 10(-6) M) promoted a small increase in C3 production, the effect of LPS was not decreased by a concentration of indomethacin (10(-6) M) that inhibited biosynthesis of PGE2. Therefore, LPS-induced C3 synthesis is not mediated by an increase in PGE2 in U937 cells. In summary, these observations suggest that C3 biosynthesis by monocytes/macrophages can be modulated by mediators of cellular immune responses found in the microenvironment of a localized inflammatory reaction.

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