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首页> 外文期刊>Journal of reproduction and fertility >The effects of epidermal growth factor and insulin-like growth factor I on the metabolic activity, nuclear maturation and subsequent development of cattle oocytes in vitro
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The effects of epidermal growth factor and insulin-like growth factor I on the metabolic activity, nuclear maturation and subsequent development of cattle oocytes in vitro

机译:表皮生长因子和胰岛素样生长因子I对牛卵母细胞体外代谢活性,核成熟及后续发育的影响

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摘要

The effects of epidermal growth factor (EGF) and insulin-like growth factor I (IGF-I) on the maturation and subsequent development of cattle oocytes in vitro were evaluated in three experiments. Cumulus–oocyte complexes (COC) were collected from cattle ovaries and matured for 20–24 h in control medium or in medium containing 50 ng EGF ml?1, 100 ng IGF-I ml?1, EGF + IGF-I, or 10% (v/v) fetal calf serum plus 0.1 i.u. human menopausal gonadotrophin ml?1 (hMG). In Expt 1, treatment with EGF + IGF-I stimulated cumulus expansion, the metabolism of pyruvate and glutamine, and nuclear maturation. In Expt 2, only the metabolic measurements from oocytes that reached metaphase II were considered, and EGF + IGF-I stimulated pyruvate metabolism to the same extent as serum + hMG. In Expt 3, the oocytes were fertilized after maturation culture, and the resultant embryos cultured for up to 8 days. The cleavage was greater in the EGF and EGF + IGF-I groups than in the controls but less than in the serum + hMG group. Moreover, the number of blastocyst cells at 7 days after insemination and the proportion of cleaved embryos that developed to the blastocyst stage by day 8 was greater in the serum + hMG group than in the control group indicating that maturation treatment can affect early embryonic development. In conclusion, EGF + IGF-I can stimulate cumulus expansion, oxidative metabolism, nuclear maturation and cleavage after fertilization of bovine oocytes in vitro. The relative effects of the treatments on oocyte pyruvate metabolism in Expts 1 and 2 generally paralleled their effects on cleavage and subsequent development in Expt 3, suggesting that mitochondrial function is related to developmental potential. Further investigation is required to determine which component(s) of serum or gonadotrophin treatment is responsible for the effects on subsequent embryonic development.
机译:在三个实验中评估了表皮生长因子(EGF)和胰岛素样生长因子I(IGF-1)对牛卵母细胞体外成熟和随后发育的影响。从牛卵巢中收集卵丘-卵母细胞复合物(COC),并在对照培养基或含50 ng EGF ml-1、100 ng IGF-1 ml-1,EGF + IGF-I或10的培养基中成熟20-24小时%(v / v)胎牛血清加0.1 iu人绝经期促性腺激素ml?1(hMG)。在实验1中,用EGF + IGF-I处理可刺激卵丘扩张,丙​​酮酸和谷氨酰胺的代谢以及核成熟。在Expt 2中,仅考虑了到达中期II的卵母细胞的代谢测量,并且EGF + IGF-1刺激丙酮酸代谢的程度与血清+ hMG相同。在实验3中,卵母细胞在成熟培养后受精,并且将所得的胚胎培养长达8天。在EGF和EGF + IGF-I组中,裂解比在对照中更大,但是比在血清+ hMG组中少。此外,血清+ hMG组的受精后7天的胚泡细胞数量和到第8天发育到胚泡阶段的分裂胚胎的比例比对照组要大,这表明成熟处理可以影响早期胚胎的发育。总之,EGF + IGF-I可以刺激牛卵母细胞在体外受精后的卵丘扩张,氧化代谢,核成熟和卵裂。治疗对Expts 1和2中卵母细胞丙酮酸代谢的相对影响通常与它们对Expt 3中卵裂和随后发育的影响平行,表明线粒体功能与发育潜力有关。需要进一步研究以确定血清或促性腺激素治疗的哪些成分对随后的胚胎发育产生影响。

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