非整倍体
减数分裂
卵母细胞
高龄产妇
生物
染色体分离
生育率
男科
遗传学
医学
胚胎
怀孕
人口
染色体
胎儿
基因
环境卫生
作者
Weiwei Huang,Xinyuan Li,Hongbo Yang,Hefeng Huang
标识
DOI:10.1016/j.arr.2024.102292
摘要
Age-related aneuploidy in human oocytes is a major factor contributing to decreased fertility and adverse reproductive outcomes. As females age, their oocytes are more prone to meiotic chromosome segregation errors, leading primarily to aneuploidy. Elevated aneuploidy rates have also been observed in oocytes from very young, prepubertal conceptions. A key barrier to developing effective treatments for age-related oocyte aneuploidy is our incomplete understanding of the molecular mechanisms involved. The challenge is becoming increasingly critical as more people choose to delay childbearing, a trend that has significant societal implications. In this review, we summarize current knowledge regarding the process of oocyte meiosis and folliculogenesis, highlighting the relationship between age and chromosomal aberrations in oocytes and embryos, and integrate proposed mechanisms of age-related meiotic disturbances across structural, protein, and genomic levels. Our goal is to spur new research directions and therapeutic avenues.
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