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首页> 外文期刊>Theriogenology >Developmental stage of the oocyte during antral follicle growth and cumulus investment determines in vitro embryo development of sow oocytes
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Developmental stage of the oocyte during antral follicle growth and cumulus investment determines in vitro embryo development of sow oocytes

机译:卵母细胞在卵泡生长和卵丘投资期间的发育阶段决定了母猪卵母细胞的体外胚胎发育

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The aim of the study was to determine the contribution of cumulus cells on the developmental competence of porcine oocytes during follicle growth. Oocytes from large (5-8mm) and small (2-3mm) follicles were cultured with or without follicle stimulating hormone (FSH), subsequently examined for nuclear stage and spindle morphology, or fertilized and cultured for embryo development, or analyzed for glutathione content. Additionally, the significance of cumulus investment, corona radiata cells, cumulus cell number and origin of cumulus cells for oocyte maturation were investigated. Small follicle oocytes cultured without FSH exhibited the highest incidence of spindle aberrations. Oocytes cultured without FSH exhibited reduced sperm penetration and blastocyst rates, and a higher proportion monospermic oocytes developed to the blastocyst stage when derived from large follicles. The glutathione content in oocytes increased during follicle growth and oocyte maturation, but no direct correlation between oocyte glutathione content and oocyte developmental capacity was observed. Oocytes with a bigger cumulus investment exhibited better embryo development. Oocytes with a single corona radiata cell layer (CROs) exhibited similar progression through meiosis to oocytes with more cumulus cell layers, but showed reduced embryo development. More blastocysts were observed when CROs were cultured with disconnected cumulus cells during IVM, but no blastocyst increase was observed when CROs were cocultured with a higher number of cumulus cells or with cumulus cells from large follicles. We conclude that increased developmental capacity of oocytes during follicle growth is intrinsic and whether cumulus cells originate from large or small follicles, their contribution to oocyte maturation remains unchanged. Further, cumulus investment can be used as a variable to predict oocyte developmental capacity.
机译:该研究的目的是确定卵泡在卵泡生长过程中对卵母细胞发育能力的贡献。在有或没有卵泡刺激素(FSH)的情况下培养大卵泡(5-8mm)和小卵泡(2-3mm)的卵母细胞,随后检查其核阶段和纺锤体形态,或受精并培养胚胎发育,或分析其谷胱甘肽含量。此外,还研究了卵丘成熟,卵丘投资,电晕放射细胞,卵丘细胞数目和卵丘细胞起源的重要性。没有FSH的小卵泡卵母细胞表现出最高的纺锤形畸变发生率。在没有FSH的情况下培养的卵母细胞表现出精子穿透率和胚泡率降低,并且当衍生自大卵泡时,发育到胚泡期的单精子卵母细胞比例更高。在卵泡生长和卵母细胞成熟过程中,卵母细胞中的谷胱甘肽含量增加,但未观察到卵母细胞中谷胱甘肽含量与卵母细胞发育能力之间的直接关系。卵丘投资更大的卵母细胞表现出更好的胚胎发育。具有单层电晕辐射细胞层(CRO)的卵母细胞通过减数分裂表现出与具有更多卵丘细胞层的卵母细胞相似的进程,但显示出胚胎发育减少。在IVM期间,将CRO与未连接的卵丘细胞一起培养时,观察到更多的胚泡,但是当CRO与更高数量的卵丘细胞或与来自大卵泡的卵丘细胞共培养时,未观察到胚泡增加。我们得出结论,卵泡生长过程中卵母细胞的发育能力是内在的,无论卵丘细胞来自大卵泡还是小卵泡,卵母细胞对卵母细胞成熟的贡献均保持不变。此外,积聚投资可以用作预测卵母细胞发育能力的变量。

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