Benayahu Dafna, Socher Rina, Shur Irena
Department of Cell and Developmental Biology, Sackler School of Medicine, Tel-Aviv University, Tel-Aviv, Israel.
Methods Mol Biol. 2008;455:191-201. doi: 10.1007/978-1-59745-104-8_15.
Laser capture microdissection (LCM) method allows selection of individual or clustered cells from intact tissues. This technology enables one to pick cells from tissues that are difficult to study individually, sort the anatomical complexity of these tissues, and make the cells available for molecular analyses. Following the cells' extraction, the nucleic acids and proteins can be isolated and used for multiple applications that provide an opportunity to uncover the molecular control of cellular fate in the natural microenvironment. Utilization of LCM for the molecular analysis of cells from skeletal tissues will enable one to study differential patterns of gene expression in the native intact skeletal tissue with reliable interpretation of function for known genes as well as to discover novel genes. Variability between samples may be caused either by differences in the tissue samples (different areas isolated from the same section) or some variances in sample handling. LCM is a multi-task technology that combines histology, microscopy work, and dedicated molecular biology. The LCM application will provide results that will pave the way toward high throughput profiling of tissue-specific gene expression using Gene Chip arrays. Detailed description of in vivo molecular pathways will make it possible to elaborate on control systems to apply for the repair of genetic or metabolic diseases of skeletal tissues.
激光捕获显微切割(LCM)技术能够从完整组织中挑选单个细胞或细胞簇。这项技术使人们能够从难以单独研究的组织中挑选细胞,梳理这些组织的解剖复杂性,并使细胞可用于分子分析。细胞提取后,核酸和蛋白质可被分离出来,并用于多种应用,从而有机会揭示天然微环境中细胞命运的分子调控机制。利用LCM对骨骼组织中的细胞进行分子分析,将使人们能够研究天然完整骨骼组织中基因表达的差异模式,对已知基因的功能进行可靠解读,并发现新基因。样本之间的差异可能是由组织样本的差异(从同一切片中分离的不同区域)或样本处理中的某些差异引起的。LCM是一项集组织学、显微镜操作和专用分子生物学于一体的多任务技术。LCM的应用将为使用基因芯片阵列进行组织特异性基因表达的高通量分析铺平道路。对体内分子途径的详细描述将有助于阐明适用于修复骨骼组织遗传或代谢疾病的控制系统。