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激光捕获显微切割技术在睾丸基因表达分析中的应用。

Application of laser-capture microdissection to analysis of gene expression in the testis.

作者信息

Sluka Pavel, O'Donnell Liza, McLachlan Robert I, Stanton Peter G

机构信息

Prince Henry's Institute of Medical Research, Monash Medical Centre, Clayton, Victoria 3168, Australia.

出版信息

Prog Histochem Cytochem. 2008;42(4):173-201. doi: 10.1016/j.proghi.2007.10.001.

Abstract

The isolation and molecular analysis of highly purified cell populations from complex, heterogeneous tissues has been a challenge for many years. Spermatogenesis in the testis is a particularly difficult process to study given the unique multiple cellular associations within the seminiferous epithelium, making the isolation of specific cell types difficult. Laser-capture microdissection (LCM) is a recently developed technique that enables the isolation of individual cell populations from complex tissues. This technology has enhanced our ability to directly examine gene expression in enriched testicular cell populations by routine methods of gene expression analysis, such as real-time RT-PCR, differential display, and gene microarrays. The application of LCM has however introduced methodological hurdles that have not been encountered with more conventional molecular analyses of whole tissue. In particular, tissue handling (i.e. fixation, storage, and staining), consumables (e.g. slide choice), staining reagents (conventional H&E vs. fluorescence), extraction methods, and downstream applications have all required re-optimisation to facilitate differential gene expression analysis using the small amounts of material obtained using LCM. This review will discuss three critical issues that are essential for successful procurement of cells from testicular tissue sections; tissue morphology, capture success, and maintenance of molecular integrity. The importance of these issues will be discussed with specific reference to the two most commonly used LCM systems; the Arcturus PixCell IIe and PALM systems. The rat testis will be used as a model, and emphasis will be placed on issues of tissue handling, processing, and staining methods, including the application of fluorescence techniques to assist in the identification of cells of interest for the purposes of mRNA expression analysis.

摘要

多年来,从复杂的异质组织中分离和分子分析高度纯化的细胞群体一直是一项挑战。鉴于生精上皮内独特的多种细胞关联,睾丸中的精子发生是一个特别难以研究的过程,这使得特定细胞类型的分离变得困难。激光捕获显微切割(LCM)是一种最近开发的技术,能够从复杂组织中分离单个细胞群体。这项技术增强了我们通过常规基因表达分析方法,如实时逆转录聚合酶链反应(RT-PCR)、差异显示和基因微阵列,直接检查富集的睾丸细胞群体中基因表达的能力。然而,LCM的应用带来了一些方法上的障碍,这些障碍在对整个组织进行更传统的分子分析时并未遇到。特别是,组织处理(即固定、储存和染色)、耗材(如载玻片选择)、染色试剂(传统苏木精-伊红染色与荧光染色)、提取方法和下游应用都需要重新优化,以促进使用LCM获得的少量材料进行差异基因表达分析。本综述将讨论从睾丸组织切片成功获取细胞所必需的三个关键问题;组织形态、捕获成功率和分子完整性的维持。将结合两种最常用的LCM系统;Arcturus PixCell IIe和PALM系统,具体讨论这些问题的重要性。将以大鼠睾丸作为模型,并重点关注组织处理、加工和染色方法的问题,包括应用荧光技术来协助识别感兴趣的细胞,以进行mRNA表达分析。

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