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导致老化卵母细胞对氧化损伤易感性增加的分子机制。

Molecular Mechanisms Responsible for Increased Vulnerability of the Ageing Oocyte to Oxidative Damage.

机构信息

Priority Research Centre for Reproductive Science, School of Environmental and Life Sciences, University of Newcastle, Callaghan, NSW, Australia.

School of Biological Sciences, University of Auckland, Auckland, New Zealand.

出版信息

Oxid Med Cell Longev. 2017;2017:4015874. doi: 10.1155/2017/4015874. Epub 2017 Oct 18.

Abstract

In their midthirties, women experience a decline in fertility, coupled to a pronounced increase in the risk of aneuploidy, miscarriage, and birth defects. Although the aetiology of such pathologies are complex, a causative relationship between the age-related decline in oocyte quality and oxidative stress (OS) is now well established. What remains less certain are the molecular mechanisms governing the increased vulnerability of the aged oocyte to oxidative damage. In this review, we explore the reduced capacity of the ageing oocyte to mitigate macromolecular damage arising from oxidative insults and highlight the dramatic consequences for oocyte quality and female fertility. Indeed, while oocytes are typically endowed with a comprehensive suite of molecular mechanisms to moderate oxidative damage and thus ensure the fidelity of the germline, there is increasing recognition that the efficacy of such protective mechanisms undergoes an age-related decline. For instance, impaired reactive oxygen species metabolism, decreased DNA repair, reduced sensitivity of the spindle assembly checkpoint, and decreased capacity for protein repair and degradation collectively render the aged oocyte acutely vulnerable to OS and limits their capacity to recover from exposure to such insults. We also highlight the inadequacies of our current armoury of assisted reproductive technologies to combat age-related female infertility, emphasising the need for further research into mechanisms underpinning the functional deterioration of the ageing oocyte.

摘要

女性在三十多岁时,生育能力下降,同时非整倍体、流产和出生缺陷的风险显著增加。尽管这些病理的病因复杂,但卵母细胞质量随年龄下降与氧化应激(OS)之间的因果关系现在已经得到充分证实。目前还不太确定的是,控制老年卵母细胞对氧化损伤易感性增加的分子机制。在这篇综述中,我们探讨了衰老卵母细胞减轻氧化应激引起的大分子损伤的能力下降,并强调了这对卵母细胞质量和女性生育能力的巨大影响。事实上,虽然卵母细胞通常具有一系列综合的分子机制来调节氧化损伤,从而确保生殖系的保真度,但人们越来越认识到,这种保护机制的功效会随着年龄的增长而下降。例如,活性氧代谢受损、DNA 修复能力下降、纺锤体组装检查点的敏感性降低以及蛋白质修复和降解能力下降,这些都使衰老的卵母细胞极易受到 OS 的影响,并限制了它们从暴露于这种损伤中恢复的能力。我们还强调了当前辅助生殖技术在对抗与年龄相关的女性不孕方面的不足,强调需要进一步研究支持衰老卵母细胞功能恶化的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae31/5664291/c7ebb7505344/OMCL2017-4015874.001.jpg

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