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胚胎培养液分泌组的非侵入性分析方法的最新进展

Current Advancements in Noninvasive Profiling of the Embryo Culture Media Secretome.

机构信息

MAP Sciences Ltd., The iLab, Stannard Way, Priory Business Park, Bedford MK44 3RZ, UK.

Virginia Center for Reproductive Medicine, Reston, VA 20190, USA.

出版信息

Int J Mol Sci. 2021 Mar 3;22(5):2513. doi: 10.3390/ijms22052513.

Abstract

There have been over 8 million babies born through in vitro fertilization (IVF) and this number continues to grow. There is a global trend to perform elective single embryo transfers, avoiding risks associated with multiple pregnancies. It is therefore important to understand where current research of noninvasive testing for embryos stands, and what are the most promising techniques currently used. Furthermore, it is important to identify the potential to translate research and development into clinically applicable methods that ultimately improve live birth and reduce time to pregnancy. The current focus in the field of human reproductive medicine is to develop a more rapid, quantitative, and noninvasive test. Some of the most promising fields of research for noninvasive assays comprise cell-free DNA analysis, microscopy techniques coupled with artificial intelligence (AI) and omics analysis of the spent blastocyst media. High-throughput proteomics and metabolomics technologies are valuable tools for noninvasive embryo analysis. The biggest advantages of such technology are that it can differentiate between the embryos that appear morphologically identical and has the potential to identify the ploidy status noninvasively prior to transfer in a fresh cycle or before vitrification for a later frozen embryo transfer.

摘要

已经有超过 800 万婴儿通过体外受精(IVF)出生,而且这个数字还在不断增长。目前全球的趋势是进行选择性的单胚胎移植,以避免多胎妊娠带来的风险。因此,了解胚胎的非侵入性检测的当前研究进展以及目前使用的最有前途的技术非常重要。此外,重要的是要确定将研究和开发转化为临床适用方法的潜力,这些方法最终可以提高活产率并缩短妊娠时间。目前,人类生殖医学领域的重点是开发一种更快速、定量和非侵入性的测试。非侵入性检测最有前途的研究领域之一包括游离 DNA 分析、显微镜技术与人工智能(AI)相结合以及胚胎培养液的组学分析。高通量蛋白质组学和代谢组学技术是用于非侵入性胚胎分析的有价值的工具。这种技术的最大优势在于,它可以区分形态上相同的胚胎,并且有可能在新鲜周期转移之前或在玻璃化冷冻之前识别胚胎的倍性状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61d9/7959312/ec57714437c6/ijms-22-02513-g001.jpg

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