Chen Yao, Yang Weina, Shi Xu, Zhang Chenlu, Song Ge, Huang Donghui
Institute of Reproduction Health Research (Institute of Family Planning Research), Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
NHC Key Laboratory of Male Reproduction and Genetics, Family Planning Research Institute of Guangdong Province, Guangzhou, China.
Front Cell Dev Biol. 2020 Sep 30;8:575706. doi: 10.3389/fcell.2020.575706. eCollection 2020.
Mammalian ovaries consist of follicles as basic functional units. Each follicle comprised an innermost oocyte and several surrounding flattened granulosa cells. Unlike males, according to the initial size of the primordial follicle pool and the rate of its activation and depletion, a female's reproductive life has been determined early in life. Primordial follicles, once activated, will get into an irreversible process of development. Most follicles undergo atretic degeneration, and only a few of them could mature and ovulate. Although there are a lot of researches contributing to exploring the activation of primordial follicles, little is known about its underlying mechanisms. Thus, in this review, we collected the latest papers and summarized the signaling pathways as well as some factors involved in the activation of primordial follicles, hoping to lead to a more profound understanding of the cellular and molecular mechanisms of primordial follicle activation.
哺乳动物的卵巢由卵泡作为基本功能单位组成。每个卵泡都包含一个最内层的卵母细胞和几个周围扁平的颗粒细胞。与雄性不同,根据原始卵泡库的初始大小及其激活和消耗的速率,雌性的生殖寿命在生命早期就已确定。原始卵泡一旦被激活,就会进入一个不可逆的发育过程。大多数卵泡会经历闭锁退化,只有少数卵泡能够成熟并排卵。尽管有许多研究致力于探索原始卵泡的激活,但对其潜在机制知之甚少。因此,在本综述中,我们收集了最新的论文,并总结了参与原始卵泡激活的信号通路以及一些因素,希望能更深入地了解原始卵泡激活的细胞和分子机制。