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Comparative results of preimplantation genetic screening by array comparative genomic hybridization and new-generation sequencing

机译:阵列对比基因组杂交和新一代测序的预催化遗传筛选对比结果

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Aneuploidies as quantitative chromosome abnormalities are a main cause of failed development of morphologically normal embryos, implantation failures, and early reproductive losses. Preimplantation genetic screening (PGS) allows a preselection of embryos with a normal karyotype, thus increasing the implantation rate and reducing the frequency of early pregnancy loss after IVF. Modern PGS technologies are based on a genome-wide analysis of the embryo. The first pilot study in Russia was performed to assess the possibility of using semiconductor new-generation sequencing (NGS) as a PGS method. NGS data were collected for 38 biopsied embryos and compared with the data from array comparative genomic hybridization (array-CGH). The concordance between the NGS and array-CGH data was 94.8%. Two samples showed the karyotype 47,XXY by array-CGH and a normal karyotype by NGS. The discrepancies may be explained by loss of efficiency of array-CGH amplicon labeling.
机译:作为定量染色体异常的非血脂化是形态学正常的胚胎,植入失败和早期生殖损失失败的主要原因。 预催化遗传筛选(PGS)允许用正常的核型预先选择胚胎,从而增加植入率并降低IVF后早期妊娠损失的频率。 现代PGS技术基于对胚胎的基因组分析。 进行俄罗斯的第一个试验研究以评估使用半导体新一代测序(NGS)作为PGS方法的可能性。 收集38个活检胚胎的NGS数据,并与来自阵列对比基因组杂交(阵列-CGH)的数据进行比较。 NGS和Array-CGH数据之间的一致性为94.8%。 两个样品显示核型47,XXY通过阵列-CGH和NGS的正常核型。 可以通过阵列-CGH扩增子标记的效率丧失来解释差异。

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