Mackinnon Ruth N, Chudoba Ilse
Victorian Cancer Cytogenetics Service, St. Vincent's Hospital Melbourne, Fitzroy, VIC, Australia.
Methods Mol Biol. 2011;730:203-18. doi: 10.1007/978-1-61779-074-4_15.
Multicolour fluorescence in situ hybridisation (M-FISH) and multicolour banding (M-BAND) are advanced chromosome painting techniques combining multiple chromosome- or region-specific paints in one step. M-FISH identifies all chromosomes or chromosome arms at once, whereas M-BAND identifies the different regions of a single chromosome. The use of either or both can improve the accuracy of karyotyping and help identify cryptic chromosome rearrangements. These probes are prepared by pooling multiple chromosome- or chromosome region-specific DNA libraries, each labelled with a unique combination of fluorochromes. Commercial probes are available, avoiding the need for probe preparation. In the protocol described here, a commercial probe is used. Well-spread metaphases are prepared according to standard techniques, followed by alkaline denaturation and application of the denatured probe. After an incubation period, the slides are washed. A fluorescence microscope with filter sets specific to the fluorescent labels is used for analysis, together with specialised image analysis software. The software interprets the combination of fluorochromes to identify each chromosome and produce a false colour image specific for each chromosome or region. The single colour galleries - which show the hybridisation patterns of the individual fluorochromes - are useful to help interpret and confirm the false colour images produced by the software, including ambiguous signals.
多色荧光原位杂交(M-FISH)和多色显带(M-BAND)是先进的染色体涂染技术,可在一步操作中结合多种染色体或区域特异性探针。M-FISH可一次性识别所有染色体或染色体臂,而M-BAND则可识别单条染色体的不同区域。使用其中一种或两种技术均可提高核型分析的准确性,并有助于识别隐匿的染色体重排。这些探针通过汇集多个染色体或染色体区域特异性DNA文库制备而成,每个文库都用独特的荧光染料组合进行标记。有商业化探针可供使用,无需自行制备探针。在此处描述的方案中,使用的是商业化探针。按照标准技术制备分散良好的中期染色体,随后进行碱性变性并应用变性探针。温育一段时间后,对玻片进行洗涤。使用配备有针对荧光标记物的滤光片组的荧光显微镜进行分析,并结合专门的图像分析软件。该软件通过解读荧光染料的组合来识别每条染色体,并生成针对每条染色体或区域的假彩色图像。单色图库(展示各个荧光染料的杂交模式)有助于解释和确认软件生成的假彩色图像,包括模糊信号。