非同步体外成熟卵母细胞作为核移植受体和牛无带克隆盲去核的效率。

Galina P Malenko, Oleg I Stepanov, Andrey V Komissarov, Tatyana A Antipova, Marina V Pinyugina, Michael I Prokofiev
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引用次数: 8

摘要

我们研究了牛卵母细胞体外成熟的动力学,异步成熟的卵母细胞作为核移植产生的胚胎的受体的效率,以及在牛克隆中使用无带牛卵母细胞盲去核的潜力。在开始成熟(hpm)后15 h,卵母细胞从积云细胞和透明带中释放,并通过第一极体挤压(PB1)标准每30 min监测卵母细胞成熟动态。超过41%的牛卵母细胞在16.5 hpm时挤出PB1,被认为是一组快速成熟的卵母细胞。第二组,约占所有卵母细胞的25%,在18.5-20.0 hpm时挤压PB1。对Hoechst 33342染色样品的检查表明,无带牛卵母细胞表面的PB1总是位于母体染色体附近。通过去除PB1和约3%的相邻卵母细胞细胞质,不进行染色质染色,使无带卵母细胞去核。无带牛卵母细胞去核成功率为96.9%。快速成熟卵母细胞重构胚胎的囊胚发育率(47.8%)显著高于18.0 ~ 20.0 hpm成熟卵母细胞重构胚胎的囊胚发育率(33.3%)。总的来说,通过达到中期第二阶段所需的时间,可以区分出两大群牛卵母细胞在体外成熟过程中。由快速成熟的去核卵母细胞重建的牛胚胎发育到囊胚期的速度明显高于由成熟较晚的卵母细胞重建的胚胎。结果表明,盲去核是制备牛无带克隆细胞质的一种简单有效的方法。
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Efficiency of asynchronously in vitro-matured oocytes as recipients for nuclear transfer and of blind enucleation in zona-free bovine cloning.

We studied the dynamics of in vitro maturation of bovine oocytes, the efficiency of asynchronously matured oocytes as recipients for the generation of embryos produced by nuclear transfer, and the potential for using blind enucleation of zona-free bovine oocytes in bovine cloning. At 15 h after the initiation of maturation (hpm), oocytes were freed from both cumulus cells and the zona pellucida, and the dynamics of oocyte maturation were monitored every 30 min through the criterion of extrusion of the first polar body (PB1). More than 41% of bovine oocytes had extruded PB1 by 16.5 hpm, and were designated as representing a group of rapidly maturing oocytes. A second group, comprising about 25% of all oocytes, had extruded PB1 by 18.5-20.0 hpm. Examination of Hoechst 33342-stained samples demonstrated that PB1 on the surfaces of zona-free bovine oocytes were always located near the maternal chromosomes. Zona-free oocytes were enucleated by removing PB1 and about 3% of the adjacent oocyte cytoplasm without chromatin staining. Successful enucleation of zona-free bovine oocytes was achieved in 96.9% of cases. The rate of development to the blastocyst stage was significantly greater in embryos reconstructed from rapidly maturing oocytes (47.8%) than with oocytes maturing at 18.0-20.0 hpm (33.3%). Overall, two large groups of bovine oocytes could be distinguished during in vitro maturation by the time required to reach the second stage of metaphase. Bovine embryos reconstructed from rapidly maturing enucleated oocytes had a significantly greater rate of development to the blastocyst stage than did embryos derived from later-maturing oocytes. We conclude that blind enucleation is a simple and efficient method for preparing cytoplasts in zona-free bovine cloning.

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