首页> 外文期刊>Fertility and Sterility: Official Journal of the American Fertility Society, Pacific Coast Fertility Society, and the Canadian Fertility and Andrology Society >Development and validation of an accurate quantitative real-time polymerase chain reaction-based assay for human blastocyst comprehensive chromosomal aneuploidy screening
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Development and validation of an accurate quantitative real-time polymerase chain reaction-based assay for human blastocyst comprehensive chromosomal aneuploidy screening

机译:基于精确定量实时聚合酶链反应的人类胚泡全面染色体非整倍性筛选方法的开发和验证

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Objective: To develop and validate a quantitative real-time polymerase chain reaction (qPCR)-based method for blastocyst trophectoderm comprehensive chromosome screening (CCS) of aneuploidy. Design: Prospective, randomized, and blinded. Setting: Academic center for reproductive medicine. Patient(s): Nine cell lines were obtained from a commercial cell line repository, and 71 discarded human blastocysts were obtained from 24 IVF patients that underwent preimplantation genetic screening. Intervention(s): None. Main Outcome Measure(s): Consistency of qPCR diagnosis of aneuploidy compared with either conventional karyotyping of cell lines or microarray-based diagnoses of human blastocysts. Result(s): Samples from nine cell lines with well characterized karyotypes were diagnosed by qPCR with 97.6% (41/42) consistency. After applying a minimum threshold for concurrence, 100% consistency was achieved. Developmentally normal blastocysts designated as aneuploid or arrested blastocysts designated as euploid by single-nucleotide polymorphism microarray analyses were assigned identical 24 chromosome diagnoses by qPCR in 98.6% of cases (70/71). Overall euploidy (n = 37) and aneuploidy (n = 34) were assigned with 100% consistency. Data was obtained for both sample types in 4 hours. Conclusion(s): These data demonstrate the first qPCR technology capable of accurate aneuploidy screening of all 24 chromosomes in 4 hours. This methodology provides an opportunity to evaluate trophectoderm biopsies with subsequent fresh euploid blastocyst transfer. Randomized controlled trials to investigate the clinical efficacy of qPCR-based CCS are currently underway.
机译:目的:建立并验证基于实时定量聚合酶链反应(qPCR)的胚泡滋养外胚层非整倍体综合染色体筛选(CCS)方法。设计:前瞻性,随机性和盲目性。地点:生殖医学学术中心。患者:从商业细胞系储存库中获得了9个细胞系,并从24位进行了植入前基因筛选的IVF患者中获得了71个丢弃的人胚泡。干预措施:无。主要观察指标:与常规细胞核型分析或基于微阵列的人胚泡诊断相比,qPCR对非整倍性的诊断具有一致性。结果:通过qPCR诊断来自9个特征明确的核型的细胞系样品,一致性为97.6%(41/42)。在应用最低同意阈值之后,实现了100%的一致性。通过单核苷酸多态性微阵列分析,发育正常的胚泡被指定为非整倍体或停滞的胚泡被指定为整倍体,通过qPCR在98.6%的病例中被分配为相同的24条染色体诊断(70/71)。总整倍性(n = 37)和非整倍性(n = 34)的一致性为100%。在4小时内获得了两种样品类型的数据。结论:这些数据证明了第一个qPCR技术能够在4小时内准确地对所有24条染色体进行非整倍性筛选。这种方法学为评估滋养外胚层活检以及随后的新鲜整倍体胚泡转移提供了机会。目前正在进行基于qPCR的CCS临床疗效的随机对照试验。

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