首页> 外文期刊>Journal of assisted reproduction and genetics >Familial haplotyping and embryo analysis for Preimplantation Genetic Diagnosis (PGD) using DNA microarrays: A proof of principle study
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Familial haplotyping and embryo analysis for Preimplantation Genetic Diagnosis (PGD) using DNA microarrays: A proof of principle study

机译:使用DNA芯片进行植入前遗传诊断(PGD)的家族单倍型和胚胎分析:原理研究的证明

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Purpose: Development of PGD assays for molecular disorders is based on analysis of a familial mutation together with linked polymorphic STR markers; a process which is lengthy and requires the identification of multiple informative markers prior to PGD analysis. On the other hand, whole genome amplification (WGA), in conjunction with microarray platforms, allows the use of a universal assay for the analysis of a very large number of SNP markers at once. The aim of this study was to test high throughput pre-PGD familial haplotyping for in-case blastomere analysis in order to eliminate time-consuming pre-case preparations for each family. Methods: A PGD cycle was performed for a couple with paternal Charcot Marie Tooth 1A (CMT1A) using a classic multiplex nested PCR approach. Mutant embryos from the case were blindly reanalyzed, as single or multi-cell biopsies, using a multiple displacement amplification-based WGA protocol and microarray SNP analysis. In parallel, relevant genomic DNA samples from the family were also analyzed by SNP microarray. Results: After applying a 'unique informative allele' selection algorithm to the data, this array-based assay reconfirmed the initial diagnosis in all samples. Conclusions: We describe a PGD method that is both accurate and feasible during the time-frame required for embryo transfer. This strategy greatly reduces the time for pre-case haplotype preparation.
机译:目的:基于分子突变和连锁多态性STR标记的分析,开发用于分子疾病的PGD分析方法。这是一个漫长的过程,需要在PGD分析之前识别多个信息性标记。另一方面,全基因组扩增(WGA)与微阵列平台相结合,可以使用通用分析一次分析大量SNP标记。这项研究的目的是测试高通量的PGD家族前单倍型分析,以进行个案卵裂球分析,以消除每个家庭耗时的病例前准备。方法:使用经典的多重嵌套PCR方法,对一对与父本Charcot Marie Tooth 1A(CMT1A)进行PGD循环。使用基于多位移扩增的WGA方案和微阵列SNP分析,盲法重新分析该病例的突变胚胎,作为单细胞还是多细胞活检。同时,还通过SNP微阵列分析了该家族的相关基因组DNA样品。结果:在对数据应用“独特的信息性等位基因”选择算法后,这种基于阵列的测定法再次确认了所有样品的初始诊断。结论:我们描述了一种PGD方法,该方法在胚胎移植所需的时间范围内既准确又可行。这种策略大大减少了事前单倍型准备的时间。

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