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补体攻击巨噬细胞后花生四烯酸的释放及氧化衍生物的形成:通道形成的作用

Release of arachidonic acid and formation of oxygenated derivatives after complement attack on macrophages: role of channel formation.

作者信息

Imagawa D K, Osifchin N E, Ramm L E, Koga P G, Hammer C H, Shin H S, Mayer M M

出版信息

J Immunol. 1986 Jun 15;136(12):4637-43.

PMID:3086438
Abstract

Treatment of [3H]arachidonic acid ([3H]C20:4)-labeled, antibody-sensitized mouse resident peritoneal macrophages with rabbit serum complement, or C6-deficient rabbit serum + C6, caused hydrolytic release of incorporated [3H]C20:4 from phospholipids, followed by conversion to oxygenated derivatives. The C6 dose-response curve for release of C20:4 plus its metabolites was monotonic, which indicates dependence on channel formation, whereas the dose-response curve for lysis displayed multi-hit behavior. High-performance liquid chromatography demonstrated that the major radiolabeled products in the aqueous phase co-eluted with C20:4, 6-keto-prostaglandin F1 alpha (6-keto-PGF1 alpha), and prostaglandin E2. Kinetic studies of the release of 6-keto-PGF1 alpha, the major metabolite, displayed biphasic characteristics; a moderate amount of this prostaglandin was released before the onset of cell lysis. Experimental evidence obtained by freeze-thaw or by incubation of these cells with melittin or A23187 indicated that cell lysis does not necessarily result in the production of inflammatory mediators. Furthermore, when macrophages were treated with serum complement, it was apparent that the major part of the release was due to C5b-9 and not to the action of C5a. We conclude that release of C20:4 and its derivatives from complement-treated macrophages does not depend on cytolysis, but is a consequence of insertion and channel formation.

摘要

用兔血清补体或C6缺陷兔血清+C6处理[3H]花生四烯酸([3H]C20:4)标记、抗体致敏的小鼠腹腔常驻巨噬细胞,导致结合的[3H]C20:4从磷脂中水解释放,随后转化为氧化衍生物。C20:4及其代谢产物释放的C6剂量反应曲线是单调的,这表明其依赖于通道形成,而细胞溶解的剂量反应曲线表现出多击行为。高效液相色谱法表明,水相中的主要放射性标记产物与C20:4、6-酮-前列腺素F1α(6-酮-PGF1α)和前列腺素E2共洗脱。主要代谢产物6-酮-PGF1α释放的动力学研究显示出双相特征;在细胞溶解开始前释放了适量的这种前列腺素。通过冻融或用蜂毒肽或A2318对这些细胞进行孵育获得的实验证据表明,细胞溶解不一定会导致炎症介质的产生。此外,当巨噬细胞用血清补体处理时,很明显释放的主要部分是由于C5b-9,而不是C5a的作用。我们得出结论,补体处理的巨噬细胞中C20:4及其衍生物的释放不依赖于细胞溶解,而是插入和通道形成的结果。

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