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Evaluation of targeted next-generation sequencing-based preimplantation genetic diagnosis of monogenic disease

机译:基于靶向下一代测序的基于过程的内生成疾病的遗传诊断评价

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Objective: To investigate the applicability of next-generation sequencing (NGS) to preimplantation genetic diagnosis (PGD); to evaluate semiconductor-based NGS for genetic analysis of human embryos. Design: Blinded. Setting: Academic center for reproductive medicine. Patient(s): Six couples at risk of transmitting single-gene disorders to their offspring. Intervention(s): None. Main Outcome Measure(s): Embryonic genotype consistency of NGS with two independent conventional methods of PGD. Result(s): NGS provided 100% equivalent PGD diagnoses of compound point mutations and small deletions and insertions compared with both reference laboratory- and internally developed quantitative polymerase chain reaction (qPCR)-based analyses. Furthermore, NGS single-gene disorder screening could be performed in parallel with qPCR-based comprehensive chromosome screening. Conclusion(s): NGS can provide blastocyst PGD results with a high level of consistency with established methodologies. This study and its design could serve as a model for further development of this important and emerging technology.
机译:目的:探讨下一代测序(NGS)对遗传遗传诊断(PGD)的适用性;评估基于半导体的NGS,用于对人胚胎的遗传分析。设计:盲目。环境:生殖医学学术中心。患者:六对夫妇有冒着单谷物疾病的风险转移到它们的后代。干预:无。主要结果措施:具有两种独立的PGD的NGS的胚胎基因型一致性。结果:与参考实验室和内部显影的定量聚合酶链反应(基于QPCR)分析,提供100%等效的化合物突变和小缺失和插入的缺失和插入。此外,NGS单基因病症筛选可以与基于QPCR的综合染色体筛选并联进行。结论:NGS可以提供​​胚泡PGD的结果,具有高水平的份量与已建立的方法。该研究及其设计可以作为进一步发展这一重要和新兴技术的模型。

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