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血小板:生理学和生物化学。

Platelets: Physiology and Biochemistry.

机构信息

Department of Anaesthesiology and Intensive Care, Experimental and Clinical Haemostasis, University-Hospital Munster, Munster, Germany.

出版信息

Semin Thromb Hemost. 2024 Jul;50(5):794-803. doi: 10.1055/s-0043-1777305. Epub 2023 Dec 12.

Abstract

This article represents a republication of an article originally published in STH in 2005. This republication is to help celebrate 50 years of publishing for STH. The original abstract follows.Platelets are specialized blood cells that play central roles in physiologic and pathologic processes of hemostasis, inflammation, tumor metastasis, wound healing, and host defense. Activation of platelets is crucial for platelet function that includes a complex interplay of adhesion and signaling molecules. This article gives an overview of the activation processes involved in primary and secondary hemostasis, for example, platelet adhesion, platelet secretion, platelet aggregation, microvesicle formation, and clot retraction/stabilization. In addition, activated platelets are predominantly involved in cross-talk to other blood and vascular cells. Stimulated "sticky" platelets enable recruitment of leukocytes at sites of vascular injury under high shear conditions. Platelet-derived microparticles as well as soluble adhesion molecules, sP-selectin and sCD40L, shed from the surface of activated platelets, are capable of activating, in turn, leukocytes and endothelial cells. This article focuses further on the new view of receptor-mediated thrombin generation of human platelets, necessary for the formation of a stable platelet-fibrin clot during secondary hemostasis. Finally, special emphasis is placed on important stimulatory and inhibitory signaling pathways that modulate platelet function.

摘要

本文代表了一篇最初于 2005 年发表在 STH 的文章的再版。本次再版是为了庆祝 STH 出版 50 周年。原文摘要如下。

血小板是一种专门的血细胞,在止血、炎症、肿瘤转移、伤口愈合和宿主防御的生理和病理过程中发挥核心作用。血小板的激活对于包括粘附和信号分子复杂相互作用的血小板功能至关重要。本文概述了原发性和继发性止血中涉及的激活过程,例如血小板黏附、血小板分泌、血小板聚集、微囊泡形成和血凝块回缩/稳定。此外,激活的血小板主要参与与其他血液和血管细胞的交叉对话。受刺激的“粘性”血小板能够在高剪切条件下在血管损伤部位募集白细胞。血小板衍生的微颗粒以及从激活的血小板表面脱落的可溶性粘附分子 sP-选择素和 sCD40L,能够依次激活白细胞和内皮细胞。本文进一步关注了人类血小板中受体介导的凝血酶生成的新观点,这对于继发性止血过程中形成稳定的血小板纤维蛋白凝块是必要的。最后,特别强调了调节血小板功能的重要刺激和抑制信号通路。

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