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用于非整倍体植入前基因检测的测序技术的变化。

Changes in sequencing technology used for preimplantation genetic testing for aneuploidy.

作者信息

Oltramare Vivianne Elizabeth, McDermott Catherine, Dunn Paul Joseph

机构信息

Faculty of Health Sciences & Medicine, Bond University, 14 University Drive, Robina QLD 4226, Gold Coast, Australia.

出版信息

J Assist Reprod Genet. 2025 Jul 11. doi: 10.1007/s10815-025-03576-5.

Abstract

The continued development of assisted reproductive technologies has aimed to improve pregnancy outcomes through screening methods for the identification of embryos with monogenic disorders, chromosomal aneuploidy or structural abnormalities. There is an increased risk of chromosomal abnormalities for patients with advanced maternal age, recurrent implantation failure and recurrent pregnancy loss. To address this, preimplantation genetic testing for aneuploidy has evolved through several methods since the 1990s, when it first began through fluorescence in situ hybridisation. The limitations of these early methods were overcome with the progression in technology that enabled the screening of all 23 chromosome pairs. These methods included microarray methods and next-generation sequencing platforms. Currently, these are used for PGT-A; however, for IVF clinics to carry out PGT-A utilising these methods, samples are sent to external laboratories capable of carrying out these methods. More recently, nanopore sequencing has emerged, which may overcome these limitations and be carried out within IVF clinics to facilitate faster patient results. This review focuses on the evolution of PGT-A methods through next-generation sequencing and the current status of these methods.

摘要

辅助生殖技术的持续发展旨在通过筛查方法来改善妊娠结局,这些筛查方法用于识别患有单基因疾病、染色体非整倍体或结构异常的胚胎。高龄产妇、反复种植失败和反复流产的患者发生染色体异常的风险增加。为了解决这一问题,自20世纪90年代首次通过荧光原位杂交开展植入前非整倍体基因检测以来,该技术已通过多种方法不断发展。随着技术的进步,能够对所有23对染色体进行筛查,克服了这些早期方法的局限性。这些方法包括微阵列方法和新一代测序平台。目前,这些方法用于植入前非整倍体基因检测(PGT-A);然而,对于体外受精(IVF)诊所来说,要利用这些方法进行PGT-A检测,样本需送到能够开展这些检测的外部实验室。最近,纳米孔测序技术出现了,它可能克服这些局限性,并能在IVF诊所内进行,以便更快地为患者提供检测结果。本综述重点介绍了通过新一代测序技术实现的PGT-A方法的发展历程以及这些方法的现状。

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