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Multicolor chromosome painting in diagnostic and research applications.

机译:多色染色体绘画在诊断和研究中的应用。

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For many years whole chromosome painting probes have been the work-horses in a large variety of clinical and research molecular cytogenetic applications. In recent years painting probes have been complemented by an increasing number of further region-specific probes, which allow the specific staining of centromeres, subtelomeres or other regions within the genome. This development of new probe sets was greatly facilitated by the Human Genome Project from which well-characterized probes for any region within the genome have emerged. Furthermore, the evolution of different multicolor fluorescence in situ hybridization (FISH) technologies now allows the cohybridization of multiple DNA-probes of different colors. These developments have paved the way for FISH-based automated karyotyping or the simultaneous analysis of multiple defined regions within the genome. Using appropriate instrumentation and image processing, the analysis can be performed two-dimensionally on metaphase spreads or three-dimensionallyin intact interphase nuclei. Here we summarize some of the most recent developments and discuss the application of painting probes in different scenarios.
机译:多年来,整个染色体绘画探针已成为许多临床和研究分子细胞遗传学应用程序中的主要工具。近年来,绘画探针已被越来越多的其他区域特异性探针所补充,这些探针可对着丝粒,亚端粒或基因组内的其他区域进行特异性染色。人类基因组计划极大地促进了新探针集的发展,从中出现了基因组内任何区域的特征明确的探针。此外,不同的多色荧光原位杂交(FISH)技术的发展现在可以将多种不同颜色的DNA探针共杂交。这些发展为基于FISH的自动核型分析或同时分析基因组内多个定义区域铺平了道路。使用适当的仪器和图像处理,可以对中期扩散进行二维分析,也可以对完整的相间核进行三维分析。在这里,我们总结了一些最新的发展,并讨论了绘画探针在不同情况下的应用。

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