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首页> 外文期刊>Cytotechnology >Dimethyl sulfoxide inhibits spontaneous oocyte fragmentation and delays inactivation of maturation promoting factor (MPF) during the prolonged culture of ovulated murine oocytes in vitro
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Dimethyl sulfoxide inhibits spontaneous oocyte fragmentation and delays inactivation of maturation promoting factor (MPF) during the prolonged culture of ovulated murine oocytes in vitro

机译:二甲基亚砜抑制卵母细胞在体外长时间培养过程中的自发卵母细胞分裂并延迟成熟促进因子(MPF)的失活

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In this study, the effects of dimethyl sulfoxide (DMSO) on the spontaneous aging of ovulated murine oocyte were evaluated in vitro. When ovulated oocytes were cultured continuously in vitro without fertilization stimulation, they underwent several phenotypic changes, including non-activation, activation, fragmentation, and lysis. To investigate the effects of DMSO on these changes, I cultured ovulated oocytes with various concentrations of DMSO and evaluated the phenotypic changes for up to 3 days. After 3 days of culture, the frequency of oocyte fragmentation was significantly lower in oocytes treated with 2 and 4% DMSO (7 and 5%, respectively) than in control oocytes (80%). All control oocytes were activated or fragmented after 3 days of culture in vitro. However, more than 80% of the oocytes cultured with 4% DMSO for 3 days contained spindles and condensed chromosomes, although they displayed abnormal spindle structures. Next Cdk1 activity in DMSO-treated oocytes was examined. The results showed that DMSO treatment prevented the reduction in Cdk1 activity during prolonged culture. Moreover, DMSO inhibited the degradation of cyclin B. These results suggest that DMSO inhibits spontaneous oocyte fragmentation and maintains Cdk1 activity in ovulated murine oocytes during prolonged culture in vitro, possibly by inhibiting cyclin B degradation.
机译:在这项研究中,在体外评估了二甲亚砜(DMSO)对排卵鼠卵母细胞自然衰老的影响。当不经受精刺激体外连续培养排卵卵母细胞时,它们经历了一些表型改变,包括非激活,激活,断裂和裂解。为了研究DMSO对这些变化的影响,我用不同浓度的DMSO培养了排卵卵母细胞,并评估了长达3天的表型变化。培养3天后,用2%和4%DMSO(分别为7%和5%)处理的卵母细胞中卵母细胞破碎的频率显着低于对照卵母细胞(80%)。体外培养3天后,所有对照卵母细胞均被激活或破碎。但是,尽管80%的卵母细胞显示异常的纺锤体结构,但超过80%的卵母细胞用4%DMSO培养3天仍含有纺锤体和浓缩的染色体。接下来检查了在DMSO处理的卵母细胞中Cdk1的活性。结果表明,DMSO处理可防止长时间培养过程中Cdk1活性的降低。此外,DMSO抑制细胞周期蛋白B的降解。这些结果表明,DMSO可能通过抑制细胞周期蛋白B的降解来抑制自发卵母细胞片段化并在排卵的鼠卵母细胞中维持Cdk1活性。

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  • 来源
    《Cytotechnology 》 |2011年第3期| p.279-284| 共6页
  • 作者

    Taesaeng Choi;

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