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首页> 外文期刊>Journal of cellular biochemistry. >Transient Arrest of Germinal Vesicle Breakdown Improved In Vitro Development Potential of Buffalo (Bubalus Bubalis) (Bubalus Bubalis) Oocytes
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Transient Arrest of Germinal Vesicle Breakdown Improved In Vitro Development Potential of Buffalo (Bubalus Bubalis) (Bubalus Bubalis) Oocytes

机译:发芽囊泡崩溃的瞬态停滞改善了水牛的体外发育潜力(Bubalus Bubalis)(Bubalus bubalis)卵母细胞

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摘要

ABSTRACT Germinal vesicle breakdown (GVBD) is the first milestone that an oocyte needs to achieve toward completing the maturation and gaining potential to fertilize. Significantly lower in vitro embryo production rate in buffaloes can be attributed to heterogeneity of GVBD occurrence among oocytes obtained from abattoir derived ovaries. Evidence from our earlier work had suggested that different qualities of buffalo oocytes differ significantly in their timing of GVBD. Besides, these oocytes also differ in terms of volume of Akt phosphorylation, which initiates the process of GVBD. With objective of synchronizing the oocytes for GVBD, immature buffalo oocytes were subjected to a two‐step culture protocol, initially in the presence of GVBD inhibitors and subsequently, in vitro maturation (IVM) with added SC79 (activates Akt). Expression of developmentally important genes was assessed along with embryo development rate and blastocyst health to interpret the consequences. Oocytes subjected to a short GVBD inhibition period of 6?h followed by IVM with SC79 resulted in improved cleavage and blastocyst rates. Resultant blastocysts also possessed higher ICM: TE ratio. Further, GVBD inhibited oocytes displayed a sustained cytoplasmic maturation status in terms of reorganization of cortical granules (CGs), mitochondrial membrane potential, and glutathione levels during the period of inhibition. We conclude that a temporary GVBD arrest of buffalo oocytes and modulation of Akt improves the in vitro embryo development rate as well as quality of resultant embryos. Besides, our meiotic arrest protocol does not affect the cytoplasmic maturation. J. Cell. Biochem. 119: 278–289, 2018. ? 2017 Wiley Periodicals, Inc.
机译:摘要新芽囊泡击穿(GVBD)是卵母细胞需要实现成熟和施肥潜力所需的第一个里程碑。水牛体外胚胎生产率显着降低,可以归因于由AbattoIr衍生的卵巢获得的卵母细胞中GVBD发生的异质性。来自我们早先的工作的证据表明,在他们的GVBD时机时,水牛卵母细胞的不同质量显着差异。此外,这些卵母细胞在Akt磷酸化体积方面也有所不同,这引发了GVBD的过程。目的地,目的是将GVBD的卵母细胞同步,在GVBD抑制剂存在下,并随后在GVBD抑制剂存在下进行两步培养方案,随后进行两步培养方案,加入SC79(激活AKT)的体外成熟(IVM)。评估发育重要基因的表达以及胚胎发育率和胚泡健康来解释后果。卵母细胞对短的GVBD抑制时间为6μm,其次用SC79进行IVM导致改善的切割和胚泡率。合成的胚泡也具有更高的ICM:TE比率。此外,GVBD抑制卵母细胞在抑制期间的皮质颗粒(CGS),线粒体膜电位和谷胱甘肽水平的重组方面显示出持续的细胞质成熟状态。我们得出结论,临时GVBD停滞Buffalo卵母细胞和AKT调节改善了体外胚胎发育率以及所得胚胎的质量。此外,我们的减数分裂剂量不会影响细胞质成熟。 J.Cell。生物学习。 119:278-289,2018 2017年Wiley期刊,Inc。

著录项

  • 来源
    《Journal of cellular biochemistry.》 |2018年第1期|共12页
  • 作者单位

    Animal Biotechnology CentreNational Dairy Research InstituteKarnal Haryana 132001 India;

    Animal Biotechnology CentreNational Dairy Research InstituteKarnal Haryana 132001 India;

    Animal Biotechnology CentreNational Dairy Research InstituteKarnal Haryana 132001 India;

    Animal Biotechnology CentreNational Dairy Research InstituteKarnal Haryana 132001 India;

    Animal Biotechnology CentreNational Dairy Research InstituteKarnal Haryana 132001 India;

    Animal Biotechnology CentreNational Dairy Research InstituteKarnal Haryana 132001 India;

    Animal Biotechnology CentreNational Dairy Research InstituteKarnal Haryana 132001 India;

    Animal Biotechnology CentreNational Dairy Research InstituteKarnal Haryana 132001 India;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

    MEIOTIC ARREST; CYTOPLASMIC MATURATION; Akt ACTIVATOR;

    机译:减数分裂;细胞质成熟;AKT活化剂;

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