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毛细管分离技术助力基于组织蛋白质组学的生物标志物发现。

Capillary separations enabling tissue proteomics-based biomarker discovery.

作者信息

Guo Tong, Lee Cheng S, Wang Weijie, DeVoe Don L, Balgley Brian M

机构信息

Department of Chemistry and Biochemistry, University of Maryland, College Park, MD, USA.

出版信息

Electrophoresis. 2006 Sep;27(18):3523-32. doi: 10.1002/elps.200600094.

Abstract

Development of the capability to enable large-scale proteome studies, analogous to comprehensive gene expression analysis, will clearly have far-reaching impacts on protein biomarker investigations of human diseases such as cancer through interrogation of the archived fresh frozen and formalin-fixed and paraffin-embedded tissue collections. This review therefore focuses on the most recent advances in microdissection techniques and proteome platforms for procuring homogeneous subpopulations of tumor cells or structures and performing comprehensive analysis of protein profiles within tissue specimens, respectively. Developments in capillary separations capable of providing extremely high resolving power and selective analyte enrichment are particularly highlighted for their roles within the broader context of a state-of-the-art integrated tissue proteome effort. The capabilities of CIEF-based multidimensional separations for performing proteome analysis from minute samples create new opportunities in the pursuit of biomarker discovery using enriched and selected cell populations procured from tissue specimens. These proteome technological advances combined with recently developed tissue microdissection techniques provide powerful tools for those seeking to gain a greater understanding at the global level of the cellular machinery associated with human diseases such as cancer.

摘要

与全面的基因表达分析类似,大规模蛋白质组研究能力的发展,通过对存档的新鲜冷冻以及福尔马林固定石蜡包埋组织样本进行分析,必将对诸如癌症等人类疾病的蛋白质生物标志物研究产生深远影响。因此,本综述聚焦于显微切割技术和蛋白质组平台的最新进展,前者用于获取肿瘤细胞或结构的均一亚群,后者用于对组织样本中的蛋白质图谱进行全面分析。能够提供极高分辨率和选择性分析物富集的毛细管分离技术的进展,因其在最先进的综合组织蛋白质组研究中的作用而受到特别关注。基于CIEF的多维分离技术从微量样本中进行蛋白质组分析的能力,为利用从组织样本中获取的富集和选定细胞群体来寻找生物标志物创造了新机会。这些蛋白质组技术进展与最近开发的组织显微切割技术相结合,为那些试图在全球层面更深入了解与癌症等人类疾病相关的细胞机制的人提供了强大工具。

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