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卵巢衰老:卵母细胞和卵泡中线粒体的作用。

Ovarian ageing: the role of mitochondria in oocytes and follicles.

机构信息

Laboratoire de Biologie de la Reproduction, Centre Hospitalier Universitaire d'Angers, 49933 Angers Cedex 9, France

PREMMi/Pôle de Recherche et d'Enseignement en Médecine Mitochondriale, Institut MITOVASC, CNRS 6214, INSERM U1083, Université d'Angers, Angers, France.

出版信息

Hum Reprod Update. 2016 Nov;22(6):725-743. doi: 10.1093/humupd/dmw028. Epub 2016 Aug 25.

Abstract

BACKGROUND

There is a great inter-individual variability of ovarian ageing, and almost 20% of patients consulting for infertility show signs of premature ovarian ageing. This feature, taken together with delayed childbearing in modern society, leads to the emergence of age-related ovarian dysfunction concomitantly with the desire for pregnancy. Assisted reproductive technology is frequently inefficacious in cases of ovarian ageing, thus raising the economic, medical and societal costs of the procedures.

OBJECTIVE AND RATIONAL

Ovarian ageing is characterized by quantitative and qualitative alteration of the ovarian oocyte reserve. Mitochondria play a central role in follicular atresia and could be the main target of the ooplasmic factors determining oocyte quality adversely affected by ageing. Indeed, the oocyte is the richest cell of the body in mitochondria and depends largely on these organelles to acquire competence for fertilization and early embryonic development. Moreover, the oocyte ensures the uniparental transmission and stability of the mitochondrial genome across the generations. This review focuses on the role played by mitochondria in ovarian ageing and on the possible consequences over the generations.

SEARCH METHODS

PubMed was used to search the MEDLINE database for peer-reviewed original articles and reviews concerning mitochondria and ovarian ageing, in animal and human species. Searches were performed using keywords belonging to three groups: 'mitochondria' or 'mitochondrial DNA'; 'ovarian reserve', 'oocyte', 'ovary' or 'cumulus cells'; and 'ageing' or 'ovarian ageing'. These keywords were combined with other search phrases relevant to the topic. References from these articles were used to obtain additional articles.

OUTCOMES

There is a close relationship, in mammalian models and humans, between mitochondria and the decline of oocyte quality with ageing. Qualitatively, ageing-related mitochondrial (mt) DNA instability, which leads to the accumulation of mtDNA mutations in the oocyte, plays a key role in the deterioration of oocyte quality in terms of competence and of the risk of transmitting mitochondrial abnormalities to the offspring. In contrast, some mtDNA haplogroups are protective against the decline of ovarian reserve. Quantitatively, mitochondrial biogenesis is crucial during oogenesis for constituting a mitochondrial pool sufficiently large to allow normal early embryonic development and to avoid the untimely activation of mitochondrial biogenesis. Ovarian ageing also seriously affects the dynamic nature of mitochondrial biogenesis in the surrounding granulosa cells that may provide interesting alternative biomarkers of oocyte quality.

WIDER IMPLICATIONS

A fuller understanding of the involvement of mitochondria in cases of infertility linked to ovarian ageing would contribute to a better management of the disorder in the future.

摘要

背景

卵巢衰老存在个体间的巨大差异,近 20%的不孕患者表现出卵巢早衰的迹象。这一特征加上现代社会中生育年龄的推迟,导致与妊娠愿望同时出现与年龄相关的卵巢功能障碍。辅助生殖技术在卵巢衰老的情况下常常无效,从而增加了这些程序的经济、医疗和社会成本。

目的和理由

卵巢衰老的特征是卵巢卵母细胞储备的数量和质量发生改变。线粒体在卵泡闭锁中起着核心作用,并且可能是决定卵母细胞质量的卵质因素的主要靶标,这些因素会对卵母细胞质量产生不利影响,使其容易衰老。事实上,卵母细胞是体内线粒体最丰富的细胞,并且在很大程度上依赖这些细胞器来获得受精和早期胚胎发育的能力。此外,卵母细胞确保了线粒体基因组在世代间的单亲遗传和稳定性。本综述重点关注线粒体在卵巢衰老中的作用以及对后代可能产生的影响。

检索方法

使用 PubMed 搜索了 MEDLINE 数据库中有关动物和人类的线粒体和卵巢衰老的同行评审原始文章和综述。使用属于三个组的关键词进行了搜索:“线粒体”或“线粒体 DNA”;“卵巢储备”、“卵母细胞”、“卵巢”或“卵丘细胞”;以及“衰老”或“卵巢衰老”。这些关键词与其他与主题相关的搜索短语相结合。从这些文章的参考文献中获得了其他文章。

结果

在哺乳动物模型和人类中,线粒体与卵母细胞质量随年龄下降之间存在密切关系。从质量上看,与衰老相关的线粒体 (mt) DNA 不稳定性导致卵母细胞中线粒体 DNA 突变的积累,在卵母细胞的功能和向后代传递线粒体异常的风险方面,对卵母细胞质量的恶化起着关键作用。相比之下,一些 mtDNA 单倍群具有保护作用,可以防止卵巢储备的下降。从数量上看,线粒体生物发生对于卵母细胞发生期间构成足够大的线粒体池至关重要,这足以允许正常的早期胚胎发育,并避免线粒体生物发生的过早激活。卵巢衰老还严重影响周围颗粒细胞中线粒体生物发生的动态变化,这可能为卵母细胞质量提供有趣的替代生物标志物。

更广泛的影响

更好地了解线粒体在与卵巢衰老相关的不孕中的作用,将有助于未来更好地管理这种疾病。

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