首页> 外文期刊>Journal of assisted reproduction and genetics >Low oxygen inhibits but complex high-glucose medium facilitates in vitro maturation of squirrel monkey oocyte-granulosa cell complexes.
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Low oxygen inhibits but complex high-glucose medium facilitates in vitro maturation of squirrel monkey oocyte-granulosa cell complexes.

机译:低氧抑制但复杂的高葡萄糖培养基促进了松鼠猴卵母细胞-颗粒细胞复合物的体外成熟。

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PURPOSE: The objectives of these in vitro maturation studies in primate cumulus-oocyte complexes (COCs) were to evaluate the effect of a reduced-oxygen environment and to compare medium with a high-glucose concentration to medium with pyruvate but no glucose. METHODS: COCs were retrieved from squirrel monkeys stimulated with 1 mg of follicle-stimulating hormone (FSH) for 4-6 days. Experiment 1 examined maturation after 48 hr in 5% O2/5% CO2/90% N2 compared with 5% CO2/air. The medium was CMRL-1066 containing moderate glucose (5.5 mM) supplemented with 1 mM glutamine, 0.33 mM pyruvate, 0.075 IU/ml human FSH, 5 IU/ml human chorionic gonadotropin, 75 U penicillin G/ml, and 20% fetal bovine serum. Experiment 2 in 5% CO2/air, compared P-1 medium (pyruvate and lactate but no glucose) to Waymouth's medium (27.5 mM glucose), both with identical supplements. RESULTS: Only 3 (8%) of 37 COCs matured in 5% O2, while 39 (49%) of 80 matured in ambient O2. Fourteen (22%) of 64 complexes matured in P-1 medium, compared to 47 (49%) of 96 meiosis II oocytes in Waymouth's medium (P < 0.05). CONCLUSIONS: These are the first primate studies showing detrimental effects of reduced-oxygen culture on in vitro maturation. Additionally, maturation was enhanced with complex high-glucose medium suggesting that the predominant metabolism is aerobic glycolysis.
机译:目的:在灵长类动物卵-卵母细胞复合物(COCs)中进行这些体外成熟研究的目的是评估氧还原环境的影响,并将高葡萄糖浓度的培养基与丙酮酸但不含葡萄糖的培养基进行比较。方法:从1mg卵泡刺激素(FSH)刺激4-6天的松鼠猴中提取COC。实验1检查了在5%O2 / 5%CO2 / 90%N2中与5%CO2 /空气相比48小时后的成熟度。培养基为CMRL-1066,含有中等葡萄糖(5.5 mM),其中补充了1 mM谷氨酰胺,0.33 mM丙酮酸,0.075 IU / ml人FSH,5 IU / ml人绒毛膜促性腺激素,75 U青霉素G / ml和20%胎牛血清。实验2在5%CO2 /空气中,将P-1培养基(丙酮酸和乳酸,但不含葡萄糖)与Waymouth培养基(27.5 mM葡萄糖)进行了比较,两者均具有相同的补充剂。结果:37个COC中只有3个(8%)在5%O2中成熟,而80个中的39个(49%)在环境O2中成熟。 64种复合物中有14种(22%)在P-1培养基中成熟,而Waymouth培养基中96种减数分裂II卵母细胞中有47种(49%)成熟(P <0.05)。结论:这些是最早的灵长类动物研究,显示了氧还原培养对体外成熟的有害影响。此外,复杂的高葡萄糖培养基可增强成熟度,表明主要的代谢是有氧糖酵解。

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