Canadian Blood Services, Centre for Blood Research and the Department of Pathology and Laboratory Medicine, University of British Columbia, 2350 Health Sciences Mall, Vancouver, BC, Canada.
J Proteomics. 2010 Jan 3;73(3):436-44. doi: 10.1016/j.jprot.2009.08.002. Epub 2009 Aug 12.
Proteomics has brought new perspectives to the fields of hematology and transfusion medicine in the last decade. The steady improvement of proteomic technology is propelling novel discoveries of molecular mechanisms by studying protein expression, post-translational modifications and protein interactions. This review article focuses on the application of proteomics to the identification of molecular mechanisms leading to the deterioration of blood platelets during storage - a critical aspect in the provision of platelet transfusion products. Several proteomic approaches have been employed to analyse changes in the platelet protein profile during storage and the obtained data now need to be translated into platelet biochemistry in order to connect the results to platelet function. Targeted biochemical applications then allow the identification of points for intervention in signal transduction pathways. Once validated and placed in a transfusion context, these data will provide further understanding of the underlying molecular mechanisms leading to platelet storage lesion. Future aspects of proteomics in blood banking will aim to make use of protein markers identified for platelet storage lesion development to monitor proteome changes when alterations such as the use of additive solutions or pathogen reduction strategies are put in place in order to improve platelet quality for patients.
在过去十年中,蛋白质组学为血液学和输血医学领域带来了新的视角。蛋白质组学技术的稳步改进通过研究蛋白质表达、翻译后修饰和蛋白质相互作用,推动了分子机制的新发现。本文综述了蛋白质组学在鉴定导致储存过程中血小板恶化的分子机制中的应用,这是血小板输血产品提供的一个关键方面。已经采用了几种蛋白质组学方法来分析储存过程中血小板蛋白谱的变化,并且现在需要将获得的数据转化为血小板生物化学,以便将结果与血小板功能联系起来。有针对性的生化应用可以识别信号转导途径中的干预点。一旦经过验证并应用于输血环境中,这些数据将进一步了解导致血小板储存损伤的潜在分子机制。未来血液银行蛋白质组学的一个方面将旨在利用鉴定出的血小板储存损伤发展的蛋白质标记物来监测蛋白质组的变化,当添加溶液或病原体减少策略等变化被引入时,以改善患者的血小板质量。