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超越激光显微切割技术:为癌症研究寻找“黄砖路”。

Beyond laser microdissection technology: follow the yellow brick road for cancer research.

机构信息

Inserm UMR_S1165, Institut Universitaire d'Hématologie Paris ; Université Paris-Diderot Paris.

Inserm UMR_S1165, Institut Universitaire d'Hématologie Paris ; Université Paris-Diderot Paris ; AP-HP, Hôpital Saint-Louis, Service de Pathologie Paris.

出版信息

Am J Cancer Res. 2014 Jan 15;4(1):1-28. eCollection 2014.

Abstract

Normal biological tissues harbour different populations of cells with intricate spacial distribution patterns resulting in heterogeneity of their overall cellular composition. Laser microdissection involving direct viewing and expertise by a pathologist, enables access to defined cell populations or specific region on any type of tissue sample, thus selecting near-pure populations of targeted cells. It opens the way for molecular methods directed towards well-defined populations, and provides also a powerful tool in studies focused on a limited number of cells. Laser microdissection has wide applications in oncology (diagnosis and research), cellular and molecular biology, biochemistry and forensics for tissue selection, but other areas have been gradually opened up to these new methodological approaches, such as cell cultures and cytogenetics. In clinical oncology trials, molecular profiling of microdissected samples can yield global "omics" information which, together, with the morphological analysis of cells, can provide the basis for diagnosis, prognosis and patient-tailored treatments. This remarkable technology has brought new insights in the understanding of DNA, RNA, and the biological functions and regulation of proteins to identify molecular disease signatures. We review herein the different applications of laser microdissection in a variety of fields, and we particularly focus attention on the pre-analytical steps that are crucial to successfully perform molecular-level investigations.

摘要

正常的生物组织中存在着不同群体的细胞,它们具有复杂的空间分布模式,导致其整体细胞组成存在异质性。通过直接观察和病理学家的专业知识进行的激光显微切割,能够获取到特定类型组织样本上定义明确的细胞群体或特定区域,从而选择目标细胞的近乎纯的群体。它为针对明确群体的分子方法开辟了道路,并为专注于少数细胞的研究提供了强大的工具。激光显微切割在肿瘤学(诊断和研究)、细胞和分子生物学、生物化学和法医领域的组织选择方面有广泛的应用,但其他领域也逐渐采用了这些新的方法学方法,例如细胞培养和细胞遗传学。在临床肿瘤学试验中,对显微切割样本进行分子分析可以提供全局的“组学”信息,这些信息与细胞的形态学分析结合起来,可以为诊断、预后和患者定制治疗提供依据。这项卓越的技术为理解 DNA、RNA 以及蛋白质的生物学功能和调控提供了新的见解,以确定分子疾病特征。本文综述了激光显微切割在各种领域的不同应用,特别关注了成功进行分子水平研究至关重要的分析前步骤。

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