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The Role of Mitochondria from Mature Oocyte to Viable Blastocyst

机译:线粒体从成熟卵母细胞到活胚囊的作用

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摘要

The oocyte requires a vast supply of energy after fertilization to support critical events such as spindle formation, chromatid separation, and cell division. Until blastocyst implantation, the developing zygote is dependent on the existing pool of mitochondria. That pool size within each cell decreases with each cell division. Mitochondria obtained from oocytes of women of advanced reproductive age harbor DNA deletions and nucleotide variations that impair function. The combination of lower number and increased frequency of mutations and deletions may result in inadequate mitochondrial activity necessary for continued embryo development and cause pregnancy failure. Previous reports suggested that mitochondrial activity within oocytes may be supplemented by donor cytoplasmic transfer at the time of intracytoplasmic sperm injection (ICSI). Those reports showed success; however, safety concerns arose due to the potential of two distinct populations of mitochondrial genomes in the offspring. Mitochondrial augmentation of oocytes is now reconsidered in light of our current understanding of mitochondrial function and the publication of a number of animal studies. With a better understanding of the role of this organelle in oocytes immediately after fertilization, blastocyst and offspring, mitochondrial augmentation may be reconsidered as a method to improve oocyte quality.
机译:受精后卵母细胞需要大量能量来支持关键事件,例如纺锤体形成,染色单体分离和细胞分裂。在胚泡植入之前,发育中的合子依赖于现有的线粒体库。每个单元中的池大小随每个单元划分而减小。从晚期生殖年龄妇女的卵母细胞中获得的线粒体具有DNA缺失和核苷酸变异,从而削弱了功能。数量较少和突变和缺失频率增加的组合可能导致持续胚胎发育所需的线粒体活性不足,并导致妊娠失败。先前的报道表明,卵母细胞内线粒体的活性可以通过胞浆内精子注射(ICSI)时的供体胞质转移来补充。这些报告显示出成功;然而,由于后代中有两个不同的线粒体基因组种群,因此引起了安全隐患。根据我们目前对线粒体功能的了解以及许多动物研究的发表,现在重新考虑了卵母细胞的线粒体增强。在更好地了解受精,胚泡和后代后立即将此细胞器在卵母细胞中的作用后,可以考虑将线粒体增强作为改善卵母细胞质量的方法。

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