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母体外周血胎儿游离 DNA 用于无创产前诊断的研究进展。

Advances in the research of fetal DNA in maternal plasma for noninvasive prenatal diagnostics.

机构信息

Geneton Inc., Bratislava, Slovakia.

出版信息

Med Sci Monit. 2010 Apr;16(4):RA85-91.

Abstract

Molecular analysis of fetal DNA present in the maternal circulation allows noninvasive, early, and precise determination of fetal genetic status in prenatal diagnostics. The most common clinical applications, i.e. prenatal gender determination and fetal RhD genotyping, are possible already in the first trimester using specialized protocols for DNA isolation from plasma and subsequent real-time PCR detection. Recent advances in molecular techniques enable other applications of fetal DNA purified from maternal plasma samples. Chromosomal abnormalities (e.g. trisomy 21) can be diagnosed by digital PCR, which offers higher accuracy in quantifying DNA sequences than standard real-time PCR. Digital PCR, but also MALDI-TOF, are suitable for detecting point mutations, widening the spectrum of applications to monogenic diseases. The ongoing lowering of costs for massively parallel sequencing might lead to replacement of most of the other currently used approaches. Adopting specialized protocols for the purification of fragmented circulating fetal DNA and improving the bioinformatic analysis of raw data can bring us closer to sequencing the fetal genome as the ultimate goal of prenatal DNA diagnostics, with wide-ranging medical applications. The discussion and solution of ethical issues beyond early fetal gender or paternity determination is hanging just behind the rapid technical progress of noninvasive prenatal DNA diagnostics.

摘要

胎儿 DNA 存在于母体血液中,对其进行分子分析可在产前诊断中实现非侵入性、早期、精准的胎儿遗传状态判定。最常见的临床应用,如产前性别鉴定和胎儿 RhD 基因型鉴定,已经可以在第一孕期通过专门的血浆 DNA 分离方案和随后的实时 PCR 检测来实现。分子技术的最新进展使从母体血浆样本中纯化的胎儿 DNA 有了其他应用。通过数字 PCR 可以诊断染色体异常(如 21 三体),该技术在定量 DNA 序列方面比标准实时 PCR 更准确。数字 PCR,以及 MALDI-TOF,都适用于检测点突变,从而将应用范围扩展到单基因疾病。大规模平行测序成本的持续降低可能会导致大多数其他目前使用的方法被取代。采用专门的方案来纯化碎片化的循环胎儿 DNA,并改进原始数据的生物信息分析,可以使我们更接近以测序胎儿基因组为产前 DNA 诊断的最终目标,从而带来广泛的医学应用。在非侵入性产前 DNA 诊断的快速技术进步背后,还存在着超越早期胎儿性别或亲子关系鉴定的伦理问题的讨论和解决方案。

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