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首页> 外文期刊>Journal of Medical Genetics >Rapid detection of chromosome aneuploidies by quantitative fluorescence PCR: first application on 247 chorionic villus samples.
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Rapid detection of chromosome aneuploidies by quantitative fluorescence PCR: first application on 247 chorionic villus samples.

机译:通过定量荧光PCR快速检测染色体非整倍性:首次应用于247个绒毛膜绒毛样品。

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We report the results of the first major study of applying quantitative fluorescence polymerase chain reaction (QF-PCR) assays for the detection of major chromosome numerical disorders. The QF-PCR tests were performed on a total of 247 chorionic villus samples, which were analysed blind, without any knowledge of the results obtained using conventional cytogenetic analysis. The aims of this investigation were to evaluate the detection power and accuracy of this approach by testing a large number of fetal samples and to assess the diagnostic value of each of the chromosome specific small tandem repeat (STR) markers used. In addition, we introduced three more markers specific for chromosomes 13, 18, and X to allow an accurate analysis of samples homozygous for a particular STR. Fluorescent labelled primers were used to amplify 12 STRs specific for chromosomes 21, 18, 13, X, and the amylogenin-like DNA sequence AMXY, expressed on the X and Y chromosomes. In this blind study of 247 fetal samples, 222 were correctly diagnosed by QF-PCR as normal for each of the five chromosomes investigated; 20 were diagnosed by QF-PCR as trisomic for chromosomes 21, 18, or 13, in agreement with the cytogenetic tests. Only one false negative result was observed, probably owing to the mishandling of the sample, which had been transferred through three laboratories before being analysed by QF-PCR. The 247 samples also included four cases of mosaicism or translocation; one case of mosaic trisomy 21 was detected by QF-PCR and the other cases were not identified by QF-PCR. The results of this investigation provide clear evidence that the QF-PCR assays are powerful adjuncts to conventional cytogenetic techniques and can be applied for the rapid and accurate prenatal diagnosis of the most frequent aneuploidies.
机译:我们报告了应用定量荧光聚合酶链反应(QF-PCR)分析检测主要染色体数字障碍的第一项主要研究的结果。对总共247个绒毛膜绒毛样品进行了QF-PCR测试,对它们进行了盲法分析,而对使用常规细胞遗传学分析获得的结果一无所知。这项研究的目的是通过测试大量的胎儿样本来评估该方法的检测能力和准确性,并评估所使用的每种染色体特异性小串联重复序列(STR)标记物的诊断价值。此外,我们引入了另外三个针对13号,18号和X号染色体的特异性标记,以允许对特定STR纯合子的样品进行准确分析。荧光标记的引物用于扩增对21、18、13,X染色体和X和Y染色体上表达的淀粉原蛋白样DNA序列AMXY特异的12条STR。在这项对247个胎儿样本的盲目研究中,通过QF-PCR正确地将222个胎儿诊断为所调查的5条染色体中的每条染色体。通过QF-PCR诊断为染色体21、18或13是三体性的,与细胞遗传学检测结果一致。仅观察到一个假阴性结果,可能是由于样品处理不当所致,该样品在通过QF-PCR分析之前已通过三个实验室转移。 247个样本还包括4个镶嵌或易位案例;一例通过QF-PCR检测到21号三体性嵌合体,另一例未通过QF-PCR鉴定。这项研究的结果提供了明确的证据,证明QF-PCR分析是常规细胞遗传学技术的有力补充,可用于快速,准确地对最常见的非整倍性进行产前诊断。

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