A long-acting recombinant FSH supports high-quality mouse follicle development and oocyte maturation in vitro by coordinating somatic and germ cell transcriptomes

生物 卵泡发生 卵母细胞 转录组 生殖细胞 卵泡 体细胞 细胞生物学 促卵泡激素 男科 重组DNA 体外成熟 促性腺激素 体外 内科学 卵巢 胚胎发生 胚胎 内分泌学 激素 基因表达 遗传学 促黄体激素 基因 医学
作者
Shaoyuan Liu,Yanchu Li,Xinyi Tian,Yong Zhou,Kang-Ping Guo,Heng‐Yu Fan,Xingwei Liang,Xiang‐Hong Ou,Qian‐Qian Sha
出处
期刊:Molecular human reproduction [Oxford University Press]
卷期号:29 (6) 被引量:3
标识
DOI:10.1093/molehr/gaad013
摘要

Abstract Strategies to maximize individual fertility chances are constant requirements of ART. In vitro folliculogenesis may represent a valid option to create a large source of immature ovarian follicles in ART. Efforts are being made to set up mammalian follicle culture protocols with suitable FSH stimuli. In this study, a new type of recombinant FSH (KN015) with a prolonged half-life is proposed as an alternative to canonical FSH. KN015 supports the in vitro development of mouse follicles from primary to preovulatory stage with higher efficiency than canonical FSH and enhanced post-fertilization development rates of the ovulated oocytes. The use of KN015 also allows us to compare the dynamic transcriptome changes in oocytes and granulosa cells at different stages, in vivo and in vitro. In particular, KN015 facilitates mRNA accumulation in growing mouse oocytes and prevents spontaneous luteinization of granulosa cells in vitro. Novel analyses of transcriptome changes in this study reveal that the in vivo oocytes were more efficient than in vitro oocytes in terms of maternal mRNA clearing during meiotic maturation. KN015 promotes the degradation of maternal mRNA during in vitro oocyte maturation, improves cytoplasmic maturation and, therefore, enhances embryonic developmental potential. These findings establish new transcriptome data for oocyte and granulosa cells at the key stages of follicle development, and should help to widen the use of KN015 as a valid and commercially available hormonal support enabling optimized in vitro development of follicles and oocytes.
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