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首页> 外文期刊>Zygote >The effect of pre-maturation culture using phosphodiesterase type 3 inhibitor and insulin, transferrin and selenium on nuclear and cytoplasmic maturation of bovine oocytes
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The effect of pre-maturation culture using phosphodiesterase type 3 inhibitor and insulin, transferrin and selenium on nuclear and cytoplasmic maturation of bovine oocytes

机译:使用磷酸二酯酶3型抑制剂和胰岛素,转铁蛋白和硒进行的成熟前培养对牛卵母细胞核和细胞质成熟的影响

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摘要

This study aims to evaluate if a pre-maturation culture (PMC) using cilostamide as a meiotic inhibitor in combination with insulin, transferrin and selenium (ITS) for 8 or 24 h increases in vitro embryo production. To evaluate the effects of PMC on embryo development, cleavage rate, blastocyst rate, embryo size and total cell number were determined. When cilostamide (20 M) was used in PMC for 8 or 24 h, 98% of oocytes were maintained in germinal vesicles. Although the majority of oocytes resumed meiosis after meiotic arrest, the cleavage and blastocyst rates were lower than the control (P < 0.05). When the cilostamide concentration was lowered (10 M) and oocytes were arrested for 8 h, embryo development was improved (P < 0.05) and was similar (P > 0.05) to the control. The deleterious effect of 20 M cilostamide treatment for 24 h on a PMC was confirmed by lower cumulus cell viability, determined by trypan blue staining, in that group compared with the other groups. A lower concentration (10 M) and shorter exposure time (8 h) minimized that effect but did not improve embryo production. More studies should be performed to determine the best concentration and the arresting period to increase oocyte competence and embryo development.
机译:这项研究旨在评估使用西洛他酰胺作为减数分裂抑制剂与胰岛素,转铁蛋白和硒(ITS)组合8小时或24小时的成熟前培养(PMC)是否会增加体外胚胎的产生。为了评估PMC对胚胎发育的影响,确定了卵裂率,胚泡率,胚胎大小和总细胞数。当西洛酰胺(20 M)在PMC中使用8或24 h时,生发囊泡中保留了98%的卵母细胞。尽管大多数卵母细胞在减数分裂停滞后恢复了减数分裂,但卵裂和囊胚发生率均低于对照组(P <0.05)。当西洛酰胺浓度降低(10 M)并且卵母细胞停滞8 h时,胚胎发育得到改善(P <0.05)并且与对照组相似(P> 0.05)。该组与其他组相比,通过锥虫蓝染色确定的更低的积丘细胞活力,证实了20 M西洛酰胺治疗24 h对PMC的有害作用。较低的浓度(10 M)和较短的暴露时间(8 h)使该作用最小化,但并没有改善胚胎的产生。应该进行更多的研究以确定最佳浓度和停滞期,以增加卵母细胞的能力和胚胎发育。

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