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全面的胚胎植入前遗传学检测用于平衡插入易位携带者。

Comprehensive preimplantation genetic testing for balanced insertional translocation carriers.

机构信息

Shanghai Ji Ai Genetics & IVF Institute, Obstetrics and Gynecology Hospital, Fudan University, Shanghai, Shanghai, China.

Key Laboratory of Female Reproductive Endocrine Related Diseases, Obstetrics and Gynecology Hospital, Fudan University, Shanghai, Shanghai, China.

出版信息

J Med Genet. 2024 Jul 19;61(8):794-802. doi: 10.1136/jmg-2024-109851.

Abstract

BACKGROUND

Balanced insertional translocations (BITs) can increase the risk of infertility, recurrent miscarriages or neonatal birth defects due to chromosomal imbalances in gametes. However, studies on preimplantation genetic testing (PGT) for patients carrying BITs are inadequate.

METHODS

A preimplantation genetic genotyping and haplotype analysis approach was developed and implemented in this study. Genome-wide SNP genotyping was performed, followed by core family-based haplotype analysis. The balanced insertion segments in euploid embryos were inferred from the haplotypes inherited from the carrier parent.

RESULTS

A total of 10 BIT carrier couples were enrolled in our study. 15 in vitro fertilisation cycles were conducted, resulting in 73 blastocysts biopsied and subjected to PGT analysis. Among these, 20 blastocysts displayed rearrangement-related imbalances, 13 exhibited de novo aneuploidies, 15 presented a complex anomaly involving both imbalances and additional aneuploidies, while 25 were euploid. Within the euploid embryos, 12 were balanced carrier embryos and 13 were non-carrier embryos. To date, eight non-carrier and one carrier embryos have been transferred, resulting in seven clinical pregnancies. All pregnancies were recommended to perform prenatal diagnosis, our date revealed complete concordance between fetal genetic testing results and PGT results. Presently, five infants have been born from these pregnancies, and two pregnancies are still ongoing.

CONCLUSION

The proposed method facilitates comprehensive chromosome screening and the concurrent identification of balanced insertions or normal karyotypes in embryos. This study offers an effective and universally applicable strategy for BIT carriers to achieve a healthy pregnancy and prevent the transmission of BITs to their offspring.

摘要

背景

由于配子中染色体不平衡,平衡插入易位(BITs)可增加不孕、反复流产或新生儿出生缺陷的风险。然而,对于携带 BITs 的患者进行胚胎植入前遗传学检测(PGT)的研究还不够充分。

方法

本研究开发并实施了一种胚胎植入前遗传基因分型和单倍型分析方法。进行全基因组 SNP 基因分型,然后进行核心家族单倍型分析。从携带者父母遗传的单倍型推断出整倍体胚胎中的平衡插入片段。

结果

共有 10 对 BIT 携带者夫妇入组本研究。进行了 15 个体外受精周期,共获得 73 个囊胚活检并进行 PGT 分析。其中,20 个囊胚显示与重排相关的不平衡,13 个显示新发生的非整倍体,15 个显示同时存在不平衡和额外非整倍体的复杂异常,而 25 个为整倍体。在整倍体胚胎中,12 个为平衡携带者胚胎,13 个为非携带者胚胎。迄今为止,已移植了 8 个非携带者和 1 个携带者胚胎,共获得 7 例临床妊娠。所有妊娠均建议进行产前诊断,我们的数据显示胎儿遗传检测结果与 PGT 结果完全一致。目前,这些妊娠中有 5 名婴儿已经出生,还有 2 名妊娠仍在继续。

结论

所提出的方法促进了胚胎的全面染色体筛查和平衡插入或正常核型的同时鉴定。本研究为 BIT 携带者提供了一种有效且普遍适用的策略,以实现健康妊娠并防止 BIT 向其后代传播。

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