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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Analysis of DES-induced micronuclei in binucleated rat fibroblasts: comparison between FISH with a rat satellite I probe and immunocytochemical staining with CREST serum.
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Analysis of DES-induced micronuclei in binucleated rat fibroblasts: comparison between FISH with a rat satellite I probe and immunocytochemical staining with CREST serum.

机译:分析DES诱导的双核大鼠成纤维细胞中的微核:用大鼠Satellite I探针进行FISH与CREST血清免疫细胞化学染色之间的比较。

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The usefulness of fluorescence in situ hybridization (FISH) with rat satellite I DNA was compared with immunocytochemical staining with CREST serum for the analysis of the content of micronuclei from primary rat fibroblasts. We analyzed micronuclei induced in vitro by the aneugenic compound diethylstilbestrol (DES) or the clastogenic compound mitomycin C (MMC). Since a centromeric probe was not available for the rat, we isolated rat satellite I DNA by PCR with primers designed on the basis of the known rat satellite I DNA sequence. The PCR products obtained as well as the cloned PCR products showed hybridization to the centromeric regions of a large number of chromosomes, but not of chromosome 1, 19, 20, X and Y. Clone 18-5 was further analyzed and was shown to contain at least 4 repeats of the rat satellite I family. This probe, which hybridizes in the centromeric region of 34 of the 42 chromosomes, was used throughout the study as a probe for the FISH analysis of the micronuclei. For the immunocytochemical staining, the commonly used commercial anti-centromeric antibodies could not be used because of the weakness of the fluorescent signals given. Consequently, CREST serum of a single patient was used, which showed bright and distinct signals on the kinetochores of each chromosome. After treatment of the cells with the aneugen DES an increase in centromere (FISH) and kinetochore (CREST) positive micronuclei was found, whereas after treatment with the clastogen MMC, the percentage of centromere-positive micronuclei was similar to that observed in controls. Analysis of a large number of DES-induced micronuclei showed that the immunocytochemical method is equally as or slightly less sensitive for the detection of chromosomes in micronuclei and we therefore recommend FISH with probe 18-5 for the detection of chromosome loss in rat cells.
机译:将大鼠原核I DNA的荧光原位杂交(FISH)的有效性与CREST血清的免疫细胞化学染色相比较,以分析原代大鼠成纤维细胞中微核的含量。我们分析了由气生性化合物己烯雌酚(DES)或致裂性化合物丝裂霉素C(MMC)体外诱导的微核。由于对大鼠没有着丝粒探针,因此我们使用了基于已知大鼠卫星I DNA序列设计的引物通过PCR分离了大鼠卫星I DNA。获得的PCR产物以及克隆的PCR产物均显示出与大量染色体着丝粒区域的杂交,但未与1号,19号,20号,X和Y染色体的着丝粒区域杂交。进一步分析了克隆18-5,发现其中含有至少重复了鼠I类的4个重复序列。该探针在42条染色体中34条的着丝粒区域中杂交,在整个研究过程中都用作FISH分析微核的探针。对于免疫细胞化学染色,由于给出的荧光信号弱,不能使用常用的市售抗着丝粒抗体。因此,使用了一名患者的CREST血清,该血清在每个染色体的动粒体上均显示出明亮而独特的信号。用中性DES处理细胞后,发现着丝粒(FISH)和动粒体(CREST)阳性微核增加,而使用克拉斯托金MMC处理后,着丝粒阳性微核的百分比与对照中观察到的相似。对大量DES诱导的微核的分析表明,免疫细胞化学方法对检测微核中的染色体的敏感性相同或稍低,因此,我们建议使用FISH和探针18-5检测大鼠细胞中的染色体缺失。

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