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血小板蛋白质组学。

Platelet proteomics.

机构信息

Division of Angiology and Haemostasis, Department of Internal Medicine, Faculty of Medicine, University Hospitals of Geneva, Geneva, Switzerland.

出版信息

Mass Spectrom Rev. 2012 Mar-Apr;31(2):331-51. doi: 10.1002/mas.20345. Epub 2011 Oct 18.

Abstract

Platelets are small cell fragments, produced by megakaryocytes, in the bone marrow. They play an important role in hemostasis and diverse thrombotic disorders. They are therefore primary targets of antithrombotic therapies. They are implicated in several pathophysiological pathways, such as inflammation or wound repair. In blood circulation, platelets are activated by several pathways including subendothelial matrix and thrombin, triggering the formation of the platelet plug. Studying their proteome is a powerful approach to understand their biology and function. However, particular attention must be paid to different experimental parameters, such as platelet quality and purity. Several technologies are involved during the platelet proteome processing, yielding information on protein identification, characterization, localization, and quantification. Recent technical improvements in proteomics combined with inter-disciplinary strategies, such as metabolomic, transcriptomics, and bioinformatics, will help to understand platelets biological mechanisms. Therefore, a comprehensive analysis of the platelet proteome under different environmental conditions may contribute to elucidate complex processes relevant to platelet function regarding bleeding disorders or platelet hyperreactivity and identify new targets for antiplatelet therapy.

摘要

血小板是骨髓中由巨核细胞产生的小细胞碎片。它们在止血和多种血栓形成障碍中起着重要作用。因此,它们是抗血栓治疗的主要靶点。它们涉及几种病理生理途径,如炎症或伤口修复。在血液循环中,血小板通过包括亚内皮基质和凝血酶在内的几种途径被激活,触发血小板栓的形成。研究它们的蛋白质组学是了解其生物学和功能的有力方法。然而,必须特别注意不同的实验参数,如血小板的质量和纯度。在血小板蛋白质组处理过程中涉及到几种技术,可提供关于蛋白质鉴定、特征描述、定位和定量的信息。蛋白质组学的最新技术改进与代谢组学、转录组学和生物信息学等跨学科策略相结合,将有助于理解血小板的生物学机制。因此,在不同的环境条件下对血小板蛋白质组进行全面分析,可能有助于阐明与出血障碍或血小板高反应性相关的血小板功能的复杂过程,并确定抗血小板治疗的新靶点。

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