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首页> 外文期刊>Clinical Chemistry: Journal of the American Association for Clinical Chemists >Feasibility Study of Semiconductor Sequencing for Noninvasive Prenatal Detection of Fetal Aneuploidy
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Feasibility Study of Semiconductor Sequencing for Noninvasive Prenatal Detection of Fetal Aneuploidy

机译:半导体测序技术用于胎儿非整倍性无创产前检测的可行性研究

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BACKGROUND: Noninvasive prenatal detection of common fetal aneuploidies with cell-free DNA from maternal plasma has been achieved with high-throughput next-generation sequencing platforms. Turnaround times for previously tested platforms are still unsatisfactory for clinical applications, however, because of the time spent on sequencing. The development of semiconductor sequencing technology has provided a way to shorten overall run times. We studied the feasibility of using semiconductor sequencing technology for the noninvasive detection of fetal aneuploidy.METHODS: Maternal plasma DNA from 13 pregnant women, corresponding to 4 euploid, 6 trisomy 21 (T21), 2 trisomy 18 (T18), and 1 trisomy 13 (T13) pregnancies, were sequenced on the Ion Torrent Personal Genome Machine sequencer platform with 318 chips. The data were analyzed with the T statistic method after correcting for GC bias, and the T value was calculated as an indicator of fetal aneuploidy.RESULTS: We obtained a mean of 3 524 401 high-quality reads per sample, with an efficiency rate of 77.9%. All of the T21, T13, and T18 fetuses could be clearly distinguished from euploid fetuses, and the time spent on library preparation and sequencing was 24 h.CONCLUSIONS: Semiconductor sequencing represents a suitable technology for the noninvasive prenatal detection of fetal aneuploidy. With this platform, sequencing times can be substantially reduced; however, a further larger-scale study is needed to determine the imprecision of noninvasive fetal aneuploidy detection with this system.
机译:背景:高通量下一代测序平台已经实现了从母体血浆中提取无细胞DNA的胎儿非整倍体的无创产前检测。但是,由于需要花费大量时间进行测序,因此先前测试平台的周转时间对于临床应用而言仍然不尽人意。半导体测序技术的发展提供了一种缩短总体运行时间的方法。我们研究了使用半导体测序技术无创检测胎儿非整倍体的可行性。方法:13名孕妇的孕妇血浆DNA,分别对应4个整倍体,6个三体性21(T21),2个三体性18(T18)和1个三体性13。 (T13)妊娠在Ion Torrent个人基因组机测序仪平台上进行了318芯片测序。校正GC偏倚后,用T统计方法分析数据,计算T值作为胎儿非整倍性指标。结果:我们获得了每个样品平均3,524,401个高质量读数,效率为77.9%。所有T21,T13和T18胎儿都可以与整倍体胎儿区分开,并且在文库制备和测序上花费的时间为24小时。结论:半导体测序是一种适合于非侵入性产前检测胎儿非整倍性的技术。使用该平台,可以大大减少测序时间。但是,需要进一步的大规模研究来确定使用该系统进行非侵入性胎儿非整倍性检测的不准确性。

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