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Antioxidant treatment during manipulation procedures prevents mitochondrial and DNA damage and enhances nuclear reprogramming of bovine somatic cell nuclear transfer embryos

机译:操作过程中的抗氧化剂处理可防止线粒体和DNA损伤,并增强牛体细胞核移植胚胎的核重编程

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摘要

We tried to prevent the mitochondrial and DNA damage caused by mechanical stress-associated reactive oxygen species (ROS), and to improve the reprogramming of bovine somatic cell nuclear transfer (SCNT) embryos by antioxidant treatment during the manipulation procedures of SCNT. Bovine recipient oocytes and reconstituted oocytes were treated with antioxidants during manipulation procedures. The H2O2 level, mitochondrial morphology, membrane potential and apoptosis at the one-cell stage, and in vitro development and DNA methylation status of blastocysts were evaluated. Antioxidant treatment during manipulation procedures reduced the H2O2 level of SCNT embryos. Antioxidant-treated SCNT embryos normally formed mitochondrial clumps, similar to IVF embryos, and showed higher mitochondrial membrane potential versus the SCNT control (P<0.05). Apoptosis and DNA fragmentation were reduced by antioxidant treatment. The development rate to the blastocyst stage was higher (P<0.05) in the antioxidant treatment groups (30.5 +/- 2.5 to 30.6 +/- 1.6%) versus the control (23.0 +/- 1.9%). The DNA methylation status of blastocysts in the antioxidant treatment groups was lower (P<0.05) than that of the control and similar to that of IVF embryos. These results indicate that antioxidant treatment during manipulation procedures can prevent cellular damage that may be caused by mechanical stress-associated ROS, and improve nuclear reprogramming.
机译:我们试图防止由机械应力相关的活性氧(ROS)引起的线粒体和DNA损伤,并在SCNT的操作过程中通过抗氧化剂处理来改善牛体细胞核移植(SCNT)胚胎的重编程。在操作过程中用抗氧化剂处理牛受体卵母细胞和重组卵母细胞。评价了H2O2水平,单细胞阶段的线粒体形态,膜电位和细胞凋亡,以及囊胚的体外发育和DNA甲基化状态。操作过程中的抗氧化剂处理降低了SCNT胚胎的H2O2水平。抗氧化剂处理过的SCNT胚胎通常形成线粒体团块,类似于IVF胚胎,并且显示出比SCNT对照更高的线粒体膜电位(P <0.05)。抗氧化剂处理可减少细胞凋亡和DNA片段化。抗氧化剂治疗组(30.5 +/- 2.5至30.6 +/- 1.6%)的胚泡阶段发育率高于对照组(23.0 +/- 1.9%)(P <0.05)。抗氧化剂处理组胚泡的DNA甲基化状态低于对照组(P <0.05),与IVF胚胎相似。这些结果表明,在操作过程中进行抗氧化剂处理可以防止由机械应力相关的ROS引起的细胞损伤,并改善核重编程。

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