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首页> 外文期刊>Theriogenology >Melatonin improves development, mitochondrial function and promotes the meiotic resumption of sheep oocytes from in vitro grown secondary follicles
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Melatonin improves development, mitochondrial function and promotes the meiotic resumption of sheep oocytes from in vitro grown secondary follicles

机译:褪黑激素可提高发育,线粒体功能,促进来自体外种植的二级卵泡的减数分裂恢复绵羊卵母细胞

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摘要

The aim of this study was to evaluate follicular survival and development of ovine isolated secondary follicles cultured in medium containing fixed or sequential concentrations of melatonin and further oocyte maturation. Isolated secondary follicles were cultured for 18 days in alpha-MEM+ alone (control) or with different concentrations of melatonin (100, 500 or 1000 pg/mL) or sequential concentrations of melatonin (Mel Seq: Day 6 = 100: Day 12 = 500; Day 18 = 1000 pg/mL). The percentages of morphologically normal follicles and antral cavity formation increased significantly in 1000 pg/mL melatonin compared to the other treatments. After 18 days, 1000 pg/mL melatonin (Mel 100) showed a greater (P < 0.05) follicular diameter than alpha-MEM+, 100 and 500 pg/mL melatonin. In addition, the concentration of 500 pg/mL melatonin showed a higher (P < 0.05) percentage of fully grown oocytes than alpha-MEM+, Mel 100 and Mel Seq treatments. After oocyte maturation, the levels of ROS were lower (P < 0.05) in 1000 pg/mL melatonin (Mel 1000) than in other treatments. Both Mel 1000 and Mel Seq treatments showed significantly higher levels of mitochondrial activity than other treatments. There were no significant differences between 500 and 1000 pg/mL melatonin regarding meiotic stages. In conclusion, the concentration of 1000 pg/mL melatonin maintains survival, promotes follicular development and increases the levels of active mitochondria after in vitro culture of sheep secondary follicles. Moreover, this concentration promotes the meiotic competence of oocytes and decreases the production of ROS during oocyte maturation. (C) 2019 Elsevier Inc. All rights reserved.
机译:本研究的目的是评估在含有固定或连续浓度的褪黑素和进一步的卵母细胞成熟的培养基中培养的卵巢孤立的二级卵泡的卵泡存活和发育。单独(对照)或用不同浓度的褪黑激素(100,500或1000pg / ml)或澄清浓度(MEL SEQ:第6 = 100:第12天:第12天:第12天= 100:第12天= 100:第12天= 100:第12天= 500:第12天= 100:第12天= 500:第12天= 100:第12天= 500 ;第18天= 1000 pg / ml)。与其他处理相比,形态学普通卵泡和嗜睡腔形成的百分比显着增加了1000pg / ml褪黑素。 18天后,1000pg / ml褪黑激素(MEL 100)显示比α-MEM +,100和500pg / mL褪黑素更大(P <0.05)卵泡直径。此外,500pg / ml褪黑激素的浓度显示出比α-MEM +,MEL 100和MEL SEQ治疗的完全生长的卵母细胞的较高(P <0.05)百分比。在卵母细胞成熟后,RO的水平低于1000pg / ml褪黑素(MEL 1000),比其他处理较低(P <0.05)。 MEL 1000和MEL SEQ治疗均显着较高的线粒体活性水平高于其他治疗。关于减数分裂阶段的500至1000 pg / ml褪黑激素在500至1000 pg / ml之间没有显着差异。总之,1000pg / ml褪黑素的浓度保持存活,促进卵泡发育,增加绵羊二次卵泡体外培养后活性线粒体的水平。此外,这种浓度促进了卵母细胞的减数分裂力,并降低了卵母细胞成熟期间RO的产生。 (c)2019 Elsevier Inc.保留所有权利。

著录项

  • 来源
    《Theriogenology》 |2020年第1期|共7页
  • 作者单位

    Fed Univ Sao Francisco Valley Nucleus Biotechnol Appl Ovarian Follicle Dev BR-56300990 Petrolina PE Brazil;

    Fed Univ Sao Francisco Valley Nucleus Biotechnol Appl Ovarian Follicle Dev BR-56300990 Petrolina PE Brazil;

    Fed Univ Sao Francisco Valley Nucleus Biotechnol Appl Ovarian Follicle Dev BR-56300990 Petrolina PE Brazil;

    Fed Univ Sao Francisco Valley Nucleus Biotechnol Appl Ovarian Follicle Dev BR-56300990 Petrolina PE Brazil;

    Fed Univ Sao Francisco Valley Nucleus Biotechnol Appl Ovarian Follicle Dev BR-56300990 Petrolina PE Brazil;

    Fed Univ Sao Francisco Valley Nucleus Biotechnol Appl Ovarian Follicle Dev BR-56300990 Petrolina PE Brazil;

    Fed Univ Sao Francisco Valley Nucleus Biotechnol Appl Ovarian Follicle Dev BR-56300990 Petrolina PE Brazil;

    Fed Univ Sao Francisco Valley Nucleus Biotechnol Appl Ovarian Follicle Dev BR-56300990 Petrolina PE Brazil;

    Fed Univ Sao Francisco Valley Nucleus Biotechnol Appl Ovarian Follicle Dev BR-56300990 Petrolina PE Brazil;

    Univ Estadual Ceara Hlth Ctr Sci BR-60714903 Fortaleza Ceara Brazil;

    Fed Univ Sao Francisco Valley Nucleus Biotechnol Appl Ovarian Follicle Dev BR-56300990 Petrolina PE Brazil;

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

    Ovine; Mitochondrial function; Meiosis; Pineal hormone; ROS;

    机译:绵羊;线粒体功能;减数分裂;松果激素;ROS;

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