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通过间接连锁分析对X连锁疾病进行植入前基因诊断。

Preimplantation genetic diagnosis of X-linked diseases examined by indirect linkage analysis.

作者信息

Borgulova I, Putzova M, Soldatova I, Krautova L, Pecnova L, Mika J, Kren R, Potuznikova P, Stejskal D

出版信息

Bratisl Lek Listy. 2015;116(9):542-6. doi: 10.4149/bll_2015_103.

Abstract

BACKGROUND

Many centers of assisted reproduction in the Czech Republic offer preimplantation genetic diagnosis with fluorescent in situ hybridization (FISH) to couples requiring preimplantation genetic diagnosis (PGD) of X-linked diseases. However, this process results in discarding all male embryos and is not able to distinguish a carrier or healthy female embryo in X-linked recessive disorders.

OBJECTIVES

The main aim of this study was to summarize a six-year period of PGD of X-linked monogenic diseases using indirect linkage analysis.

METHODS AND RESULTS

We wanted to accentuate the advantage indirect analysis of PGD using multiple displacement amplification (MDA) followed by short tandem repeat (STR) analysis. We present forty-six PGD cycles, including pre-case haplotyping (PGH) panel, for fifteen X-linked diseases. Embryo transfer was made thirty-eight times and gravidity was confirmed in thirteen female probands with a success rate of pregnancy calculated at 42 %.

CONCLUSIONS

PGD procedure using MDA amplification followed by STR analysis provides help in identifying genetic defects within embryos prior to implantation. The reliability of the method was also supported by high pregnancy rate compared to other publications, which commonly achieved a 30-35 % success rate (Tab. 2, Fig. 1, Ref. 33).

摘要

背景

捷克共和国的许多辅助生殖中心为需要对X连锁疾病进行植入前基因诊断(PGD)的夫妇提供荧光原位杂交(FISH)植入前基因诊断。然而,这个过程会导致丢弃所有男性胚胎,并且在X连锁隐性疾病中无法区分携带致病基因的女性胚胎或健康女性胚胎。

目的

本研究的主要目的是总结使用间接连锁分析对X连锁单基因疾病进行PGD的六年情况。

方法与结果

我们想强调使用多重置换扩增(MDA)随后进行短串联重复序列(STR)分析对PGD进行间接分析的优势。我们展示了针对15种X连锁疾病的46个PGD周期,包括病例前单倍型分析(PGH)组。进行了38次胚胎移植,13名女性先证者确认怀孕,计算得出的妊娠成功率为42%。

结论

使用MDA扩增随后进行STR分析的PGD程序有助于在胚胎植入前识别基因缺陷。与其他通常成功率为30%-35%的出版物相比,该方法较高的妊娠率也支持了其可靠性(表2,图1,参考文献33)。

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