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开发和验证一种基于准确定量实时聚合酶链反应的人类胚胎全面染色体非整倍体筛查方法。

Development and validation of an accurate quantitative real-time polymerase chain reaction-based assay for human blastocyst comprehensive chromosomal aneuploidy screening.

机构信息

Reproductive Medicine Associates of New Jersey, Morristown, New Jersey, USA.

出版信息

Fertil Steril. 2012 Apr;97(4):819-24. doi: 10.1016/j.fertnstert.2012.01.115. Epub 2012 Feb 18.

Abstract

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.

摘要

目的

开发和验证一种基于实时定量聚合酶链反应(qPCR)的方法,用于对胚胎滋养层进行全面的染色体非整倍体筛查(CCS)。

设计

前瞻性、随机、盲法。

地点

生殖医学学术中心。

患者

从商业细胞系库中获得了 9 个细胞系,从 24 名接受胚胎植入前遗传学筛查的 IVF 患者中获得了 71 个废弃的人类囊胚。

干预

无。

主要观察指标

qPCR 诊断非整倍体的一致性,与细胞系的常规核型分析或人类囊胚的基于微阵列的诊断相比。

结果

具有明确核型的 9 个细胞系的样本通过 qPCR 诊断的一致性为 97.6%(41/42)。应用最小一致性阈值后,达到了 100%的一致性。通过单核苷酸多态性微阵列分析被诊断为非整倍体的发育正常的囊胚或被诊断为整倍体的停滞囊胚,通过 qPCR 在 98.6%的情况下(70/71)被分配了相同的 24 条染色体诊断。总体整倍体(n=37)和非整倍体(n=34)的分配具有 100%的一致性。两种样本类型均在 4 小时内获得数据。

结论

这些数据首次证明了一种能够在 4 小时内准确筛查所有 24 条染色体的 qPCR 技术。该方法为随后的新鲜整倍体囊胚转移提供了评估滋养层活检的机会。目前正在进行基于 qPCR 的 CCS 的临床疗效的随机对照试验。

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