Thongboonkerd Visith
Medical Molecular Biology Unit, Office for Research and Development, Faculty of Medicine Siriraj Hospital, Mahidol University, Bangkok, Thailand.
J Proteome Res. 2007 Oct;6(10):3881-90. doi: 10.1021/pr070328s. Epub 2007 Sep 7.
During the proteomic era, one of the most rapidly growing areas in biomedical research is biomarker discovery, particularly using proteomic technologies. Urinary proteomics has become one of the most attractive subdisciplines in clinical proteomics, as the urine is an ideal source for the discovery of noninvasive biomarkers for human diseases. However, there are several barriers to the success of the field and urinary proteome analysis is not a simple task because the urine has low protein concentration, high levels of salts or other interfering compounds, and more importantly, high degree of variations (both intra-individual and inter-individual variabilities). This article provides step-by-step practical points to perform urinary proteome analysis, covering detailed information for study design, sample collection, sample storage, sample preparation, proteomic analysis, and data interpretation. The discussion herein should stimulate further discussion and refinement to develop guidelines and standardizations for urinary proteome study.
在蛋白质组学时代,生物医学研究中发展最为迅速的领域之一是生物标志物的发现,尤其是利用蛋白质组学技术。尿液蛋白质组学已成为临床蛋白质组学中最具吸引力的子学科之一,因为尿液是发现人类疾病非侵入性生物标志物的理想来源。然而,该领域的成功存在若干障碍,尿液蛋白质组分析并非易事,因为尿液中蛋白质浓度低、盐或其他干扰化合物含量高,更重要的是,存在高度的变异性(个体内和个体间的变异性)。本文提供了进行尿液蛋白质组分析的逐步实用要点,涵盖了研究设计、样本采集、样本储存、样本制备、蛋白质组分析和数据解读的详细信息。本文的讨论应能激发进一步的讨论和完善,以制定尿液蛋白质组研究的指南和标准化方法。