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硫柳汞:一种多功能的巯基试剂、钙动员剂和细胞功能调节剂。

Thimerosal: a versatile sulfhydryl reagent, calcium mobilizer, and cell function-modulating agent.

作者信息

Elferink J G

机构信息

Department of Molecular Cell Biology, University of Leiden, The Netherlands.

出版信息

Gen Pharmacol. 1999 Jul;33(1):1-6. doi: 10.1016/s0306-3623(98)00258-4.

Abstract

An overview of the literature concerning the effects of thimerosal is presented. Because of its antibacterial effect, thimerosal is used for a variety of practical purposes such as antiseptic and preservative. In biomedical studies, thimerosal is used as a sulfhydryl reagent, and as a calcium-mobilizing agent. The ability of thimerosal to act as a sulfhydryl group is related to the presence of mercury. Relatively little study has been devoted to the mechanism of the reaction of thimerosal with the sulfhydryl group; the sulfhydryl reactive capacity is mostly concluded on the basis of inactivation of the effect by dithiothreitol (DTT). Thimersal causes a release of calcium from intracellular stores in many cells types; this is followed by an influx of extracellular calcium. Both InsP3- and ryanodine-sensitive calcium stores may be affected. Studies with permeabilized cells or organelles show that the effect of thimerosal on calcium is dependent on the concentration: low concentrations of thimerosal stimulate calcium release, high concentrations are inhibitory. This dependence is not found in intact cells. Thimerosal may activate or inhibit a number of cell functions. These are often related to the ability to release calcium or with the sulfhydryl reactivity. In platelets, thimerosal causes aggregation, increase of arachidonic acid metabolism, and exocytotic release of serotonin. In neutrophils, thimerosal causes, besides an increase of cytosolic free calcium, an increase of formyl-methionyl-leucyl-phenylalanine (fMLP)-activated leukotriene release, and a modulation of chemotactic migration and exocytosis. At low concentrations, thimerosal induces chemotactic migration of neutrophils, in the absence of other chemoattractants. The effect is also observed with thiosalicylic acid, indicating that the stimulation of migration was due to the thiosalicylic acid moiety of the thimerosal molecule. At higher concentrations, thimerosal causes inhibition of fMLP-activated migration. Low concentrations of thimerosal, but not of thiosalicylic acid, induced exocytotic enzyme release from neutrophils. High concentrations of thimerosal inhibited fMLP-activated exocytosis. The results point to an involvement of calcium mobilization and calcium influx of activation, and reaction with sulfhydryl groups for inhibition.

摘要

本文对有关硫柳汞作用效果的文献进行了综述。由于其抗菌作用,硫柳汞被用于多种实际用途,如防腐剂和保存剂。在生物医学研究中,硫柳汞用作巯基试剂和钙动员剂。硫柳汞作为巯基的作用能力与汞的存在有关。相对较少的研究致力于硫柳汞与巯基反应的机制;巯基反应能力大多是根据二硫苏糖醇(DTT)对其作用的灭活来推断的。硫柳汞会导致多种细胞类型从细胞内储存库释放钙;随后细胞外钙流入。肌醇三磷酸(InsP3)敏感和兰尼碱敏感的钙储存库都可能受到影响。对透化细胞或细胞器的研究表明,硫柳汞对钙的作用取决于浓度:低浓度的硫柳汞刺激钙释放,高浓度则起抑制作用。在完整细胞中未发现这种浓度依赖性。硫柳汞可能激活或抑制多种细胞功能。这些功能通常与钙释放能力或巯基反应性有关。在血小板中,硫柳汞会导致聚集、花生四烯酸代谢增加以及5-羟色胺的胞吐释放。在中性粒细胞中,除了胞质游离钙增加外,硫柳汞还会导致甲酰甲硫氨酰亮氨酰苯丙氨酸(fMLP)激活的白三烯释放增加,以及趋化性迁移和胞吐作用的调节。在低浓度时,硫柳汞在没有其他趋化因子的情况下诱导中性粒细胞的趋化性迁移。硫代水杨酸也观察到这种效果,表明迁移的刺激是由于硫柳汞分子的硫代水杨酸部分。在较高浓度时,硫柳汞会抑制fMLP激活的迁移。低浓度的硫柳汞,但不是硫代水杨酸,会诱导中性粒细胞胞吐酶释放。高浓度的硫柳汞抑制fMLP激活的胞吐作用。结果表明钙动员和钙流入参与激活过程,而与巯基的反应参与抑制过程。

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