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缺氧与生殖健康:缺氧与卵巢功能:卵泡发育、排卵、卵母细胞成熟。

HYPOXIA AND REPRODUCTIVE HEALTH: Hypoxia and ovarian function: follicle development, ovulation, oocyte maturation.

机构信息

Robinson Research Institute, Adelaide Medical School, The University of Adelaide, Adelaide, South Australia, Australia.

Australian Research Council Centre of Excellence for Nanoscale BioPhotonics, The University of Adelaide, Adelaide, South Australia, Australia.

出版信息

Reproduction. 2021 Jan;161(1):F33-F40. doi: 10.1530/REP-20-0509.

Abstract

The ovarian follicle provides the oocyte with the ideal environment for growth and development in preparation for ovulation and fertilisation. The follicle undergoes many structural changes as it grows, including changes in vasculature, cell proliferation and differentiation and the formation of a fluid-filled antrum. These changes collectively create a low oxygen environment within the follicle. Thus, the oocyte itself develops in a potentially hypoxic environment. The survival of hypoxic tissues is controlled by hypoxia-inducible factors (HIFs) that are activated in a low oxygen state. The understanding of HIF pathways is growing across all fields of biology, and its role in ovarian development is steadily gaining clarity. One of the genes upregulated by HIF is a vascular endothelial growth factor, the main inducer of angiogenesis which is required for follicle development and corpus formation. Ovulation is also intrinsically linked to HIF activity through the ovulatory luteinising hormone surge increasing HIF expression. The role for HIF in oocyte maturation is less understood, as efforts to replicate the low oxygen environment of the in vivo follicle are not achievable by culturing in low oxygen alone. There is potential for other factors present in vivo, but lost in vitro, to be involved in oxygen regulation. One factor of interest is haemoglobin, the oxygen-binding protein, which brings the exciting possibility of sensitive oxygen regulation, consequently affecting HIF-regulated gene expression. A thorough understanding of oxygen regulation within the follicle would provide vital applications for the field of assisted reproductive technologies, in particular in vitro oocyte maturation.

摘要

卵泡为卵母细胞的生长和发育提供了理想的环境,为排卵和受精做准备。卵泡在生长过程中经历了许多结构变化,包括血管生成、细胞增殖和分化以及充满液体的腔的形成。这些变化共同在卵泡内创造了低氧环境。因此,卵母细胞本身就在潜在的低氧环境中发育。缺氧组织的存活受缺氧诱导因子(HIFs)的控制,这些因子在低氧状态下被激活。HIF 途径的研究在生物学的各个领域都在不断深入,其在卵巢发育中的作用也越来越清晰。HIF 上调的一个基因是血管内皮生长因子,它是血管生成的主要诱导剂,对于卵泡发育和黄体形成是必需的。排卵也通过促黄体生成素激增内在地与 HIF 活性相关联,增加 HIF 表达。HIF 在卵母细胞成熟中的作用还不太清楚,因为单独在低氧条件下培养无法复制体内卵泡的低氧环境。体内可能存在其他因素,但在体外丢失,这些因素可能参与氧调节。一个有趣的因素是血红蛋白,即氧结合蛋白,这带来了敏感的氧调节的可能性,从而影响 HIF 调节的基因表达。对卵泡内氧调节的深入了解将为辅助生殖技术领域提供重要的应用,特别是在体外卵母细胞成熟方面。

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