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受精液中还原型谷胱甘肽对体外成熟 C57BL/6 小鼠卵母细胞受精能力的影响。

The influence of reduced glutathione in fertilization medium on the fertility of in vitro-matured C57BL/6 mouse oocytes.

机构信息

Development of Biology-Oriented Science and Technology, Kinki University, Wakayama, Japan.

出版信息

Theriogenology. 2013 Sep 15;80(5):421-6. doi: 10.1016/j.theriogenology.2013.07.002. Epub 2013 Aug 2.

Abstract

It is well known that IVM oocytes show a decreased potential for fertility and development compared with in vivo-matured oocytes. In this study, we added reduced glutathione (GSH) to the fertilization medium during IVF to investigate its effect on the fertility and early embryo development of IVM oocytes. The fertilization rate for IVM oocytes and fresh sperm increased with the addition of GSH (0, 1.0, and 2.0 mM: 51%, 76%, and 70%). Moreover, the addition of GSH to the fertilization medium also improved the developmental potential compared with the control sample (0 mM). In addition, we performed IVF using IVM oocytes and frozen/thawed sperm that had been cryopreserved in a mouse bank. Results indicated a marked increase in the fertilization rate when 1.0 mM GSH was added to the fertilization medium compared with when no GSM was used (0.0 mM GSH: 2% (3/195); 1.0 mM GSH: 33% (156/468)). Furthermore, the fertilization rate improved dramatically via zona drilling using laser equipment (52%: 267/516), whereas normal offspring were obtainsed after transferring embryos created via IVF using IVM oocytes and frozen/thawed sperm. This is the first report in which offspring have been obtained via IVF using IVM oocytes and frozen/thawed sperm.

摘要

众所周知,与体内成熟的卵母细胞相比,IVM 卵母细胞的生育和发育潜力降低。在这项研究中,我们在 IVF 期间向受精培养基中添加还原型谷胱甘肽 (GSH),以研究其对 IVM 卵母细胞的生育力和早期胚胎发育的影响。随着 GSH 的添加(0、1.0 和 2.0 mM),IVM 卵母细胞和新鲜精子的受精率增加(51%、76%和 70%)。此外,与对照样本相比,添加 GSH 还提高了发育潜能(0 mM)。此外,我们使用冷冻保存于小鼠库中的 IVM 卵母细胞和冷冻/解冻精子进行 IVF。结果表明,与不使用 GSH 相比,当将 1.0 mM GSH 添加到受精培养基中时,受精率显著增加(0.0 mM GSH:2%(3/195);1.0 mM GSH:33%(156/468))。此外,通过使用激光设备进行透明带钻孔,受精率显着提高(52%:267/516),而通过 IVF 使用 IVM 卵母细胞和冷冻/解冻精子获得胚胎后,成功获得了正常后代。这是首次使用 IVM 卵母细胞和冷冻/解冻精子通过 IVF 获得后代的报道。

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