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首页> 外文期刊>Histology and histopathology >Advances in isolation and characterization of homogeneous cell populations using laser microdissection.
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Advances in isolation and characterization of homogeneous cell populations using laser microdissection.

机译:使用激光显微切割技术分离和表征同质细胞群体的研究进展。

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The isolation and characterization of homogeneous cell populations are of great importance for the analysis of gene expression, because normal tissues contain various types of cells, and the differences in the populations of isolated cells exert significant effects on gene expression analysis. Researchers have attempted to develop methods for the isolation of homogeneous cell populations, such as flow cytometry and mechanical dissection. However, the recent emergence of laser-assisted microdissection has revolutionized the isolation of single-cell populations from solid tissues. With the help of a cutting laser, laser microdissection can isolate tissues (cells) of interest without contamination from surrounding tissues with the microscopic visualization field. By combining laser microdissection and subsequent microarray technology, several studies have resulted in the identification of disease-related genes. In this review, we summarize the principle of laser microdissection and provide several successful examples of target-gene identification using the conventional method combining laser microdissection and microarray. Next, we discuss the practical drawbacks of the combinational method, such as the need for a large number of cells and the disturbance of the relative abundance of transcripts during RNA amplification. We introduce our modifications to combined laser microdissection and microarray for detection of disease-related genes; the technique is simple, yet practical and accurate. Finally, versatile applications of laser microdissection, not only to transcript expression analysis, but also to other genomics and proteomics analyses are, also presented.
机译:均质细胞群的分离和表征对于基因表达分析非常重要,因为正常组织包含各种类型的细胞,并且分离细胞群的差异对基因表达分析具有重要影响。研究人员已尝试开发分离同质细胞群体的方法,例如流式细胞术和机械解剖。但是,最近出现的激光辅助显微解剖技术彻底革新了从实体组织中分离单细胞种群的方法。借助切割激光,激光显微切割可以在显微镜可视化视野中分离出感兴趣的组织(细胞)而不会受到周围组织的污染。通过结合激光显微解剖和随后的微阵列技术,数项研究已导致鉴定与疾病相关的基因。在这篇综述中,我们总结了激光显微切割的原理,并提供了使用结合了激光显微切割和微阵列的常规方法鉴定靶基因的成功实例。接下来,我们讨论组合方法的实际缺点,例如需要大量细胞,以及在RNA扩增过程中干扰转录本的相对丰度。我们介绍了对激光显微解剖和微阵列结合检测疾病相关基因的改进;该技术简单,实用且准确。最后,还介绍了激光显微切割的广泛应用,不仅可以用于转录表达分析,还可以应用于其他基因组学和蛋白质组学分析。

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