首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Multiplex PCR for 17 Y-Chromosome Specific Short Tandem Repeats (STR) to Enhance the Reliability of Fetal Sex Determination in Maternal Plasma
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Multiplex PCR for 17 Y-Chromosome Specific Short Tandem Repeats (STR) to Enhance the Reliability of Fetal Sex Determination in Maternal Plasma

机译:17 Y染色体特异性短串联重复序列(STR)的多重PCR增强了母体血浆中胎儿性别测定的可靠性

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摘要

The aim of the study was to demonstrate the influence of target gene and amplification product length on the performance of fetal gender determination systems using maternal plasma. A total of 40 pairs of plasma DNA samples from pregnant women and genomic DNA samples from maternal blood, amniotic fluid and paternal blood were isolated for gender determination by amplification of the amelogenin gene and 17 Y-chromosome STR loci, using three different commercial kits. The gender of the fetuses was confirmed by cytogenetic analysis or phenotype at birth. Both the AmpFℓSTR-Identifiler amplification kit and the Mini-STR Amplification kit for amelogenin gene detection were reliable in determining fetal gender (92.0% and 96.0%, respectively), but false negatives were present in both systems. AmpFℓSTR-Yfiler was found to be fully reliable as it amplified Y-STR in all cases of pregnancies with male fetuses and thus was 100% correct in determining fetal gender. The results demonstrated that multiple fluorescent PCR for 17 Y-STR loci was more reliable than AMELY gene testing in fetal sex determination with maternal plasma. We also found that the shorter amplification products could improve the performance of fetal gender determination systems.
机译:该研究的目的是证明靶基因和扩增产物长度对使用母体血浆的胎儿性别测定系统的性能的影响。使用三种不同的商业试剂盒,通过扩增牙釉蛋白基因和17个Y染色体STR基因座,共分离出40对孕妇血浆DNA和母体血液,羊水和母体血液的基因组DNA样品进行性别测定。通过出生时的细胞遗传学分析或表型确认胎儿的性别。用于釉质生成素基因检测的AmpFℓSTR-Identifiler扩增试剂盒和Mini-STR扩增试剂盒在确定胎儿性别方面均可靠(分别为92.0%和96.0%),但两个系统中均存在假阴性。发现AmpFℓSTR-Yfiler可以完全可靠,因为它可以在所有男性胎儿妊娠中扩增Y-STR,因此在确定胎儿性别方面是100%正确的。结果表明,在通过母体血浆确定胎儿性别方面,针对17个Y-STR位点的多重荧光PCR比AMELY基因检测更可靠。我们还发现较短的扩增产物可以改善胎儿性别确定系统的性能。

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