Abnormal changes in mitochondria, lipid droplets, ATP and glutathione content, and Ca2+ release after electro-activation contribute to poor developmental competence of porcine oocyte during in vitro ageing

卵母细胞 线粒体 老化 谷胱甘肽 脂滴 超微结构 碎片(计算) 细胞质 男科 细胞生物学 化学 生物 生物化学 解剖 医学 遗传学 胚胎 生态学
作者
Ze-Dong Hao,Shen Liu,Yi Wu,Pengcheng Wan,Maosheng Cui,Heng Chen,Shenming Zeng
出处
期刊:Reproduction, Fertility and Development [CSIRO Publishing]
卷期号:21 (2): 323-323 被引量:44
标识
DOI:10.1071/rd08157
摘要

The present study aims to investigate major changes in porcine oocytes during ageing in vitro. After the oocytes were cultured for 44, 56, 68 and 80 h, changes to porcine oocytes in ultrastructure, mitochondrial distribution, glutathione (GSH) and ATP content, Ca2+ release patterns and developmental competence after electro-activation were observed. Mitochondria were evenly distributed in oocytes at 44 h, aggregated in clusters or in peripheral cytoplasm at 68 h and dimly dispersed throughout ooplasm at 80 h. Mitochondrial shape during ageing was also observed by transmission electron microscopy (TEM) at the same time intervals. Most mitochondria were spherical at 44 h, and became elongated when the culture time was extended to 68 h and 80 h. Moreover, mitochondrial clustering became increasingly loose from 56 h. Lipid droplets in oocytes appeared prominent and electron-dense at 44 h, but electron density was lost at 56 h. Lipid droplets were solidified as of 68 h. There was an age-dependent decrease in ATP content per oocyte. Glutathione content per oocyte decreased significantly and remained lower after 56 h. Amplitudes of [Ca2+] rise decreased dramatically following 56 h, and the time required for [Ca2+] to plateau became shorter after electro-activation with prolonged culture time. Cleavage and blastocyst rates of aged oocytes progressively decreased, while the fragmentation rate gradually increased after electro-activation. It is concluded that abnormal changes in mitochondria, lipid droplets, Ca2+ release after electro-activation, and ATP and GSH content in oocytes during ageing may result in poor developmental competence of parthenotes.
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