抗苗勒氏激素
卵泡发生
卵泡期
排卵
生物
卵泡
卵泡闭锁
激素
转化生长因子
卵母细胞
内科学
促排卵
内分泌学
男科
细胞生物学
胚胎发生
医学
胚胎
作者
Emily Hayes,Vitaly A. Kushnir,Xiaoting Ma,Ashim Kumar Biswas,Hen Prizant,Norbert Gleicher,Aritro Sen
标识
DOI:10.1016/j.mce.2016.05.019
摘要
Anti-Müllerian hormone (AMH) is a member of the transforming growth factor-β superfamily and plays a crucial role in testicular and ovarian functions. In clinical practice, AMH is used as a diagnostic and/or prognostic marker in women in association with ovulation induction and in various pathophysiological conditions. Despite widespread clinical use of AMH, our mechanistic understanding of AMH actions in regulating follicular development is limited. Using a mouse model, we in this study report that in vivo AMH treatment while stalls follicular development and inhibits ovulation, also prevents follicular atresia. We further show that these AMH actions are mediated through induction of two miRNAs, miR-181a and miR-181b, which regulate various aspects of FSH signaling and follicular growth, ultimately affecting downstream gene expression and folliculogenesis. We also report that in this mouse model AMH pre-treatment prior to superovulation improves oocyte yield. These studies, therefore, offer new mechanistic insight into AMH actions in folliculogenesis and point toward potential utilization of AMH as a therapeutic agent.
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