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脂多糖引发兔血小板反应的机制。II. 脂质A负责脂多糖与血小板结合的证据。

Mechanisms of lipopolysaccharide-initiated rabbit platelet responses. II. Evidence that lipid A is responsible for binding of lipopolysaccharide to the platelet.

作者信息

Morrison D C, Oades Z G

出版信息

J Immunol. 1979 Mar;122(3):753-8.

PMID:448073
Abstract

The mechanism of bacterial lipopolysaccharide-(LPS) initiated, complement-(C) mediated rabbit platelet lysis has been examined. The results of these studies support our previous observations that activation of the alternative C pathway is required for platelet lysis and that preparations of LPS that activate only the classical pathway (e.g., lipid A) do not cause lysis. The temporal relationship of the interaction of the LPS with the platelet before the addition of plasma suggests a time-dependent association of the LPS with the platelet. On the basis of a number of experiments, including inhibition with polymyxin B, treatment of LPS with alkali, and blocking experiments with polysaccharide-free LPS preparations, it is concluded that the lipid A region of the LPS molecule is responsible for attaching the LPS to the platelet. Finally, a comparison of the activity of lipid A-associated protein-LPS complexes with protein-free LPS demonstrated that an equivalent extent of platelet lysis was achieved with one-one hundredth the concentration of the former as that required for protein-free LPS. The data suggest that LAP facilitates attachment of the LPS to the platelet.

摘要

已对细菌脂多糖(LPS)引发、补体(C)介导的兔血小板溶解机制进行了研究。这些研究结果支持了我们之前的观察,即血小板溶解需要替代补体途径的激活,而仅激活经典途径的LPS制剂(如脂质A)不会导致溶解。在加入血浆之前,LPS与血小板相互作用的时间关系表明LPS与血小板存在时间依赖性结合。基于包括用多粘菌素B抑制、用碱处理LPS以及用无多糖LPS制剂进行阻断实验在内的一系列实验,得出结论:LPS分子的脂质A区域负责将LPS附着于血小板。最后,将脂质A相关蛋白-LPS复合物与无蛋白LPS的活性进行比较,结果表明,前者的浓度仅为无蛋白LPS所需浓度的百分之一时,就能实现同等程度的血小板溶解。数据表明,LAP促进LPS与血小板的附着。

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