首页> 外文期刊>Chromosome research: An international journal on the molecular, supramolecular and evolutionary aspects of chromosome biology >Evaluation of 24-color multifluor-fluorescence in-situ hybridization (M-FISH) karyotyping by comparison with reverse chromosome painting of the human breast cancer cell line T-47D.
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Evaluation of 24-color multifluor-fluorescence in-situ hybridization (M-FISH) karyotyping by comparison with reverse chromosome painting of the human breast cancer cell line T-47D.

机译:通过与人乳腺癌细胞系T-47D的反向染色体涂色比较,评估24色多荧光荧光原位杂交(M-FISH)核型分析。

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摘要

Multifluor-fluorescence in-situ hybridization (M-FISH) chromosome paints for all the chromosomes in the human complement labeled with different combinations of fluorochromes is a recent technological development enabling assignment of chromosomal material to rearranged chromosomes. Little data is available on the accuracy and limitations of the approach to the analysis of complex karyotypes, which are characteristic of many malignant diseases. Here we compare M-FISH analysis of the breast-cancer-derived cell line T-47D with a previous analysis by reverse chromosome painting analysis of flow-sorted chromosomes from the same material. This demonstrated a high degree of concordance. It also illustrated the limitations of M-FISH analysis, including difficulties identifying small regions of chromosomal material and intrachromosomal rearrangements. Confirmation of selected aberrations using less-complex mixtures of painting probes and further definition of abnormalities using single copy markers may be required. The detailed karyotype description possible by M-FISH analysis contrasts with the definition in the original G-banding analysis. This and the level of concordance with reverse FISH painting supports the utility of the approach in the definition of complex karyotypes.
机译:用于人类补体中所有染色体的多荧光-荧光原位杂交(M-FISH)染色体涂料都标记有不同的荧光染料组合,这是一项最新的技术开发,能够将染色体材料分配给重排的染色体。关于复杂核型分析方法的准确性和局限性的数据很少,这是许多恶性疾病的特征。在这里,我们比较了乳腺癌衍生细胞系T-47D的M-FISH分析与通过相同材料对流分类的染色体进行反向染色体涂图分析进行的先前分析。这显示出高度的一致性。它还说明了M-FISH分析的局限性,包括难以识别染色体材料的小区域和染色体内重排。可能需要使用不太复杂的绘画探针混合物来确认所选像差,并使用单拷贝标记物进一步定义异常。通过M-FISH分析可能得到的详细核型描述与原始G带分析中的定义形成对照。这与反向FISH绘画的一致性水平支持该方法在定义复杂核型中的实用性。

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