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卵泡液氧化还原作用与卵巢卵泡生长

Follicular Fluid redox involvement for ovarian follicle growth.

作者信息

Freitas Cláudia, Neto Ana Catarina, Matos Liliana, Silva Elisabete, Ribeiro Ângela, Silva-Carvalho João Luís, Almeida Henrique

机构信息

Reproductive Medicine, Obstetrics and Gynaecology, Hospital Dr. Nélio Mendonça, SESARAM, Funchal, Portugal.

Departamento de Ginecologia e Obstetrícia, Faculdade de Medicina, Universidade do Porto, Porto, Portugal.

出版信息

J Ovarian Res. 2017 Jul 12;10(1):44. doi: 10.1186/s13048-017-0342-3.

Abstract

As the human ovarian follicle enlarges in the course of a regular cycle or following controlled ovarian stimulation, the changes in its structure reveal the oocyte environment composed of cumulus oophorus cells and the follicular fluid (FF).In contrast to the dynamic nature of cells, the fluid compartment appears as a reservoir rich in biomolecules. In some aspects, it is similar to the plasma, but it also exhibits differences that likely relate to its specific localization around the oocyte. The chemical composition indicates that the follicular fluid is able to detect and buffer excessive amounts of reactive oxygen species, employing a variety of antioxidants, some of them components of the intracellular milieu.An important part is played by albumin through specific cysteine residues. But the fluid contains other molecules whose cysteine residues may be involved in sensing and buffering the local oxidative conditions. How these molecules are recruited and regulated to intervene such process is unknown but it is a critical issue in reproduction.In fact, important proteins in the FF, that regulate follicle growth and oocyte quality, exhibit cysteine residues at specific points, whose untoward oxidation would result in functional loss. Therefore, preservation of controlled oxidative conditions in the FF is a requirement for the fine-tuned oocyte maturation process. In contrast, its disturbance enhances the susceptibility to the establishment of reproductive disorders that would require the intervention of reproductive medicine technology.

摘要

在正常月经周期或控制性卵巢刺激过程中,随着人类卵巢卵泡的增大,其结构变化揭示了由卵丘细胞和卵泡液(FF)组成的卵母细胞环境。与细胞的动态性质不同,卵泡液成分表现为富含生物分子的储存库。在某些方面,它类似于血浆,但也表现出一些可能与其在卵母细胞周围的特定定位有关的差异。其化学成分表明,卵泡液能够利用多种抗氧化剂检测和缓冲过量的活性氧,其中一些是细胞内环境的成分。白蛋白通过特定的半胱氨酸残基发挥重要作用。但卵泡液还含有其他分子,其半胱氨酸残基可能参与感知和缓冲局部氧化条件。这些分子如何被募集和调节以干预这一过程尚不清楚,但这是生殖领域的一个关键问题。事实上,卵泡液中调节卵泡生长和卵母细胞质量的重要蛋白质在特定位置存在半胱氨酸残基,其异常氧化会导致功能丧失。因此,维持卵泡液中可控的氧化条件是卵母细胞精细成熟过程的必要条件。相反,其紊乱会增加发生生殖障碍的易感性,而这可能需要生殖医学技术的干预。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb0c/5508613/c56a057e6c53/13048_2017_342_Fig1_HTML.jpg

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