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Molecular analysis of complex tissues is facilitated by laser capture microdissection: critical role of upstream tissue processing.

机译:激光捕获显微切割有助于复杂组织的分子分析:上游组织加工的关键作用。

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摘要

Every tissue contains heterogeneous cell populations. Laser capture microdissection (LCM) facilitates cell isolation from complex tissues followed by molecular analysis. LCM entails placing a transparent film over a tissue section or a cytological sample, visualizing the cells microscopically, and selectively adhering the cells of interest to the film with a focused pulse from an infrared laser. The film with the procured cells is then removed from the original sample and placed directly into DNA, RNA, or protein-extraction buffer for processing. LCM has revolutionized molecular analysis of complex tissues because it combines the topographic precision of microscopy with the power of molecular genetics, genomics, and proteomics. However, the success of molecular analysis still depends on the experimental design and requires the understanding of each technical step involved in specimen preparation. This review attempts to rationalize and demystify the choice of various technical options in upstream tissue processing supporting global analytical strategies.
机译:每个组织都包含异种细胞群。激光捕获显微切割(LCM)有助于从复杂组织中分离细胞,然后进行分子分析。 LCM需要在组织切片或细胞学样品上放置透明膜,在显微镜下可视化细胞,并使用来自红外激光的聚焦脉冲将目标细胞选择性地粘附到膜上。然后将带有获得细胞的膜从原始样品中取出,直接放入DNA,RNA或蛋白质提取缓冲液中进行冲洗。 LCM革新了复杂组织的分子分析方法,因为它结合了显微镜的地形学精度和分子遗传学,基因组学和蛋白质组学的功能。但是,分子分析的成功仍然取决于实验设计,并且需要了解样品制备中涉及的每个技术步骤。这篇综述试图使支持全局分析策略的上游组织加工中各种技术选择的选择合理化和神秘化。

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