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体外卵母细胞生长:卵母细胞-颗粒细胞相互作用研究的潜在模型

Oocyte growth in vitro: potential model for studies of oocyte-granulosa cell interactions.

作者信息

Hirao Yuji

机构信息

Tohoku Agricultural Research Center National Agriculture and Food Research Organization (NARO) 4 Akahira, Shimo-kuriyagawa 020-0198 Morioka Iwate Japan.

出版信息

Reprod Med Biol. 2011 Jun 19;11(1):1-9. doi: 10.1007/s12522-011-0096-3. eCollection 2012 Jan.

Abstract

Various factors such as gonadotrophins, growth factors, and steroid hormones play important roles in the regulation of oocyte/follicular growth in mammalian ovaries. In addition to these factors, there is a bidirectional interaction between oocytes and granulosa cells that is essential for achieving optimal oocyte developmental competence. Oocytes play a key role in this interaction by secreting paracrine factors that alter the activities of neighboring cumulus cells, such as the expression of a specific amino acid transporter, cholesterol biosynthesis, and levels of glycolysis in the cumulus cells. Among the known oocyte-derived factors, growth differentiation factor 9 (GDF9) is the dominant factor mediating the regulation by oocytes leading to cumulus expansion and granulosa cell proliferation. GDF9 frequently interacts with other oocyte-derived factors in a synergistic manner. It seems reasonable to speculate that oocytes growing in vitro require interactions similar to those in vivo. Some of the oocyte-mediated regulations have been confirmed in vitro, providing evidence of the usefulness of culture systems as a strong tool for such studies. This review discusses in vitro culture of growing oocytes in terms of oocyte-granulosa cell interactions.

摘要

促性腺激素、生长因子和类固醇激素等多种因素在哺乳动物卵巢中卵母细胞/卵泡生长的调节中发挥着重要作用。除了这些因素外,卵母细胞与颗粒细胞之间存在双向相互作用,这对于实现最佳的卵母细胞发育能力至关重要。卵母细胞通过分泌旁分泌因子来改变邻近卵丘细胞的活性,从而在这种相互作用中发挥关键作用,这些旁分泌因子包括特定氨基酸转运体的表达、胆固醇生物合成以及卵丘细胞中的糖酵解水平。在已知的卵母细胞衍生因子中,生长分化因子9(GDF9)是介导卵母细胞调节从而导致卵丘扩展和颗粒细胞增殖的主要因子。GDF9经常与其他卵母细胞衍生因子以协同方式相互作用。推测体外生长的卵母细胞需要类似于体内的相互作用似乎是合理的。一些卵母细胞介导的调节已在体外得到证实,这为培养系统作为此类研究的有力工具的实用性提供了证据。本文综述从卵母细胞-颗粒细胞相互作用的角度探讨了生长中卵母细胞的体外培养。

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