CUMULUS CELL GENES AS POTENTIAL BIOMARKERS OF OOCYTE AND EMBRYO DEVELOPMENTAL COMPETENCE.

E A Shepel, Т Yu Voznesenskaya, T V Blashkiv, R I Yanchii
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引用次数: 6

Abstract

Bogomoletz Institute of Physiology NASU, Ukraine, Kiev. The selection of embryos with high implantation potential is the most important task in assisted reproductive technology. Today, this selection is based on subjective morphological criteria such as growth rate, early cleavage, the degree of fragmentation, blastocyst formation. However, the morphological assessment alone does not accurately predict oocyte/early stage embryo competence. Thus, the development of an objective, accurate, fast and affordable tests to determine oocyte quality and embryo viability could increase the chance of a successful pregnancy and reduce the number of embryos to transfer. The advent of new technologies, the so-called OMIKS, has allowed to identify novel biomarkers that can be used in cycle of in vitro fertilization (IVF) for oocyte and / or embryo selection. During folliculogenesis oocyte plays a dominant role in regulation of cumulus (CC) and granulosa cell (GC) functions, and it is consequently believed that functions of GC and CC indirectly reflect oocyte’s competence. Cell functions and active cell processes are regulated through gene expression therefore, gene expression analysis in GC and/or CC could provide a non-invasive method for identification of the most competent oocytes and embryos. In cumulus cells, genes have been identified that characterize the oocyte ability to undergo meiotic maturation, successful fertilization and early embryonic development. Among them cyclooxygenase 2, gremlin 1 and hyaluronan synthase-2, which play an important roles during oocyte development, ovulation and fertilization. This article reviews the recent data regarding these genes as potential biomarkers for selection of oocytes and embryos in the IVF program.

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卵丘细胞基因作为卵母细胞和胚胎发育能力的潜在生物标志物。
Bogomoletz生理学研究所,乌克兰,基辅。选择具有高着床潜力的胚胎是辅助生殖技术的重要课题。今天,这种选择是基于主观形态学标准,如生长速度,早期卵裂,破碎程度,囊胚形成。然而,单独的形态学评估并不能准确地预测卵母细胞/早期胚胎的能力。因此,开发一种客观、准确、快速和负担得起的检测方法来确定卵母细胞质量和胚胎活力,可以增加成功怀孕的机会,减少胚胎移植的数量。新技术的出现,即所谓的OMIKS,已经允许识别新的生物标志物,可用于体外受精(IVF)周期的卵母细胞和/或胚胎选择。在卵泡形成过程中,卵母细胞对卵丘细胞(cumulus cell, CC)和颗粒细胞(granulosa cell, GC)的功能起主导作用,因此认为GC和颗粒细胞的功能间接反映了卵母细胞的能力。细胞功能和活跃的细胞过程是通过基因表达调控的,因此,GC和/或CC的基因表达分析可以为鉴定最有能力的卵母细胞和胚胎提供一种无创方法。在积云细胞中,已经确定了表征卵母细胞经历减数分裂成熟、成功受精和早期胚胎发育的能力的基因。其中环氧化酶2、格莱姆林酶1和透明质酸合成酶2在卵母细胞发育、排卵和受精过程中起重要作用。本文综述了这些基因作为体外受精中卵母细胞和胚胎选择的潜在生物标志物的最新数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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