首页> 外文期刊>The Journal of molecular diagnostics: JMD >Restriction enzyme-mediated enhanced detection of circulating cell-free fetal DNA in maternal plasma.
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Restriction enzyme-mediated enhanced detection of circulating cell-free fetal DNA in maternal plasma.

机译:限制酶介导的母亲血浆中循环性无细胞胎儿DNA的增强检测。

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摘要

A universal method confirming the presence of circulating cell-free fetal (ccff) DNA in maternal plasma is important in the field of noninvasive prenatal diagnostics. Restriction endonuclease digestion of one allele of a single-nucleotide polymorphism (SNP) was used to allow detection of paternal alleles in maternal plasma DNA. Multiplexed genotyping of 92 panethnic high-frequency SNPs predicted >0.99 probability of detecting at least four informative loci per sample. Child-maternal paired DNA samples were used to confirm detection of 2% child's heterozygous DNA in a background of maternal DNA homozygous for the digestible allele. By restriction endonuclease digestion of DNA in a PCR cocktail before thermal cycling, 10 genomic copies of a paternal SNP allele were detectable in a background of 990 maternal SNP alleles. A comparison of 154 pregnant and nonpregnant female plasma DNA samples demonstrated enhanced detection of nondigestible SNP alleles in maternal plasma. Receiver operating characteristic curve analysis showed an optimal detection threshold of four nondigestible SNP alleles in plasma for the confirmation of ccff DNA and 98% sensitivity and 96% specificity at a 95% confidence level. Our study demonstrates the ability of this technique to confirm the presence of paternal alleles from ccff DNA in maternal plasma.
机译:确认母体血浆中存在循环无细胞胎儿(ccff)DNA的通用方法在非侵入性产前诊断领域很重要。单核苷酸多态性(SNP)的一个等位基因的限制性核酸内切酶消化可用于检测母体血浆DNA中的父本等位基因。 92个泛壮型SNP的多态性基因分型预测,每个样品至少检测出四个信息位点的概率大于0.99。儿童-母亲配对的DNA样品用于确认在可消化等位基因的母亲DNA纯合子背景中检测到2%的儿童杂合DNA。通过在热循环前在PCR混合物中限制核酸内切酶消化DNA,可以在990个母体SNP等位基因的背景中检测到10个基因组拷贝的母体SNP等位基因。 154个怀孕和未怀孕女性血浆DNA样品的比较表明,增强了对孕妇血浆中不可消化SNP等位基因的检测。接收器工作特性曲线分析显示,血浆中四个不可消化的SNP等位基因的最佳检测阈值可用于ccff DNA的确认,在95%的置信水平下可确保98%的敏感性和96%的特异性。我们的研究证明了这项技术能够从母亲血浆中的ccff DNA确认父亲等位基因的能力。

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