Centre for Research into Circulating Fetal Nucleic Acids, Li Ka Shing Institute of Health Sciences, and.
Department of Chemical Pathology, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong SAR, China; email:
Annu Rev Med. 2016;67:419-32. doi: 10.1146/annurev-med-091014-115715. Epub 2015 Oct 15.
Noninvasive prenatal testing (NIPT) is accomplished by analysis of circulating cell-free fetal nucleic acids in maternal plasma. The advent of massively parallel sequencing (MPS) has enabled NIPT of chromosomal aneuploidies with unprecedented robustness, and these tests are now widely available for clinical use. Moreover, MPS-based NIPT of subchromosomal deletions/duplications and single-gene disorders has also been achieved, and the number of applications is growing. In addition to specific fetal genetic disorders, the whole fetal genome, transcriptome, and methylome have been revealed by deep sequencing of maternal plasma. The analysis of the fetal transcriptome and methylome may yield valuable information on fetal and maternal health. With continued improvement in sequencing technology and reduction in sequencing costs, the analysis of cell-free nucleic acids would play an increasingly important role in prenatal screening, diagnosis, monitoring, and risk stratification of fetal as well as maternal conditions.
无创产前检测 (NIPT) 通过分析母体外周血中的循环游离胎儿核酸来实现。高通量测序 (MPS) 的出现使染色体非整倍体的无创检测具有前所未有的稳健性,这些检测现在已广泛用于临床。此外,基于 MPS 的亚染色体缺失/重复和单基因疾病的无创检测也已实现,应用数量不断增加。除了特定的胎儿遗传疾病外,通过对母体外周血进行深度测序,还揭示了整个胎儿基因组、转录组和甲基组。对胎儿转录组和甲基组的分析可能为胎儿和母体健康提供有价值的信息。随着测序技术的不断改进和测序成本的降低,游离核酸的分析将在产前筛查、诊断、监测以及胎儿和母体状况的风险分层中发挥越来越重要的作用。