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Optimization of ovum pick-up-<i>in vitro</i> fertilization and <i>in vitro</i> growth of immature oocytes in ruminants

体外 男科 体外受精 化学 人类受精 体外成熟 生物 分子生物学 细胞生物学 卵母细胞 医学 解剖 胚胎 生物化学
作者
Kenichiro Sakaguchi
出处
期刊:Journal of Reproduction and Development [Japanese Society of Animal Reproduction]
卷期号:71 (1): 1-9 被引量:1
标识
DOI:10.1262/jrd.2024-091
摘要

Due to the strong demand for embryo production from young and genotyped superior animals using ovum-pick up (OPU) combined with in vitro fertilization (IVF), the number of in vitro-produced embryos has exceeded that of in vivo-derived embryos globally since 2016. One of the merits of OPU-IVF is that the administration of follicle-stimulating hormone (FSH) is not essential, while FSH treatment prior to OPU promotes oocyte developmental competence. Thus, investigations are needed to optimize OPU-IVF protocols with and without FSH. In addition, OPU enables oocyte collection from antral follicles in living animals. However, there are numerous immature oocytes in follicles at earlier stages, which are potentially destined to degenerate in ovaries. The technology used to foster acquisition of maturational and developmental competences in these immature oocytes is called in vitro growth (IVG). IVG is expected to contribute to assisted reproductive technologies for livestock, humans, and endangered species. However, no offspring from preantral follicles has been reported using IVG in animals other than in mice. Furthermore, IVG can be used to investigate factors affecting the fertility and developmental competence of oocytes by reconstituting follicle growth at each stage in vitro, which cannot be evaluated in vivo. Here, the technological progress of the optimization of immature bovine oocyte utilization is reviewed alongside findings from a variety of other ruminants.

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