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A fast and reliable protocol for activation of porcine oocytes

机译:一种快速可靠的激活猪卵母细胞的方案

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摘要

Oocyte activation is physiologically triggered by the sperm during fertilization, however, production of porcine embryos by somatic cell nuclear transfer (SCNT), intracytoplasmic sperm injection (ICSI) or parthenogenetic activation (PA) requires artificial oocyte activation. Although effective protocols for artificial oocyte activation have been developed, current protocols require long exposures to non-specific inhibitors, which do not mimic the physiological process and may have detrimental consequences for embryo development. This study attempted to mimic the physiological activation events induced by fertilization, through the manipulation of Ca2+ and Zn2+ levels, and protein kinase C (PKC) as well as cyclin dependent kinase 1 (CDK1) activities, with the aim of developing an improved protocol for activation of porcine oocytes. In the first experiment, matured oocytes were exposed to ionomycin (Ion) for 5 min, and then treated with a specific CDKI inhibitor (RO-3306) and/or PKC activator (OAG) for different time intervals. The highest rate of pronuclear (PN) formation (58.8%) was obtained when oocytes were treated with PKCa + CDK1i for 4 h. Second, PN formation and embryo development were evaluated in oocytes exposed for different times to a Zn2+ chelator (TPEN) following Ion treatment. This revealed that 15 min was the minimal exposure time to TPEN required to maximise oocyte activation and embryo development. Next, we observed that treatment with PKCa + CDK1i for 4 h after TPEN for 15 min decreased embryo development compared to TPEN alone. Lastly, we compared the efficiency of the Ion (5 min) plus TPEN (15 min) protocol (IT-20) with a control protocol used in our laboratory (CT-245) for production of PA, SCNT and ICSI embryos. In PA embryos, IT-20 resulted in higher cleavage (72% vs 49.2%) and blastocyst from cleaved embryos (65.5% vs 46.2%) compared to CT-245. In ICSI embryos, higher PN rates were obtained with the IT-20 protocol compared with CT-245 and the non-activated (N-A) group. Moreover, the two protocols were equally efficient for activation of SCNT embryos. Based on these findings, we propose that IT-20 is a fast and effective protocol for activation of porcine oocytes. (C) 2018 Elsevier Inc. All rights reserved.
机译:卵母细胞活化是通过施肥的精子生理学触发,然而,通过体细胞核传递(SCNT)的猪胚胎产生,氏菌上质精子注射(ICSI)或单向性活化(PA)需要人工卵母细胞活化。尽管已经开发出了用于人工卵母细胞活化的有效方案,但是当前方案需要长期暴露于非特异性抑制剂,这不会模仿生理过程,并且可能对胚胎发育产生不利后果。该研究试图通过操纵Ca2 +和Zn2 +水平和蛋白激酶C(PKC)以及细胞周期蛋白依赖性激酶1(CDK1)活性来模拟受精诱导的生理活化事件,目的是开发改进的方案激活猪卵母细胞。在第一个实验中,将成熟的卵母细胞暴露于离子霉素(离子)5分钟,然后用特定的CDKI抑制剂(RO-3306)和/或PKC活化剂(OAG)处理不同的时间间隔。当用PKCA + CDK1I处理卵母细胞4小时,获得核核核(58.8%)的最高核(PN)形成(58.8%)。其次,在离子处理后,在暴露于Zn2 +螯合剂(TPEN)的不同时间暴露的卵母细胞中评估PN形成和胚胎发育。这表明15分钟是最大化卵母细胞活化和胚胎发育所需的TPEN的最小暴露时间。接下来,我们观察到在TPEN持续15分钟后用PKCA + CDK1i处理4小时,与单独的TPEN相比,胚胎发育减少了15分钟。最后,我们将离子(5分钟)加TPEN(15分钟)协议(IT-20)的效率与我们的实验室(CT-245)中使用的控制协议进行了比较,用于生产PA,SCNT和ICSI胚胎。在PA胚胎中,与CT-245相比,IT-20从切割的胚胎(65.5%vs 46.2%)中产生更高的裂解(72%vs 49.2%)和胚泡。在ICSI胚胎中,与IT-20协议与CT-245和未激活(N-A)组相比,使用IT-20方案获得较高的PN速率。此外,两种方案同样有效地激活SCNT胚胎。基于这些发现,我们提出IT-20是激活猪卵母细胞的快速有效的方案。 (c)2018年Elsevier Inc.保留所有权利。

著录项

  • 来源
    《Theriogenology》 |2019年第2019期|共8页
  • 作者单位

    McGill Univ Dept Anim Sci 21111 Lakeshore Rd Room MS1-089 Ste Anne De Bellevue PQ H9X 3V9 Canada;

    McGill Univ Dept Anim Sci 21111 Lakeshore Rd Room MS1-089 Ste Anne De Bellevue PQ H9X 3V9 Canada;

    Fed Univ Santa Maria UFSM Lab Biotechnol &

    Anim Reprod BioRep Santa Maria RS Brazil;

    McGill Univ Dept Anim Sci 21111 Lakeshore Rd Room MS1-089 Ste Anne De Bellevue PQ H9X 3V9 Canada;

    McGill Univ Dept Anim Sci 21111 Lakeshore Rd Room MS1-089 Ste Anne De Bellevue PQ H9X 3V9 Canada;

    McGill Univ Dept Anim Sci 21111 Lakeshore Rd Room MS1-089 Ste Anne De Bellevue PQ H9X 3V9 Canada;

    McGill Univ Dept Anim Sci 21111 Lakeshore Rd Room MS1-089 Ste Anne De Bellevue PQ H9X 3V9 Canada;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 动物学;
  • 关键词

    Embryo development; Oocyte activation; TPEN; ICSI; SCNT;

    机译:胚胎发育;卵母细胞激活;TPEN;ICSI;SCNT;

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