Suppr超能文献

颗粒细胞分泌的因子可提高绵羊小腔卵泡卵丘-卵母细胞复合体的发育能力。

Granulosa secreted factors improve the developmental competence of cumulus oocyte complexes from small antral follicles in sheep.

机构信息

Department of Reproductive Biotechnology, Reproductive Biomedicine Research Center, Royan Institute for Biotechnology, ACECR, Isfahan, Iran.

出版信息

PLoS One. 2020 Mar 17;15(3):e0229043. doi: 10.1371/journal.pone.0229043. eCollection 2020.

Abstract

Oocyte in vitro maturation can be improved by mimicking the intra-follicular environment. Oocyte, cumulus cells, granulosa cells, and circulating factors act as meiotic regulators in follicles and maintain oocyte in the meiotic phase until oocyte becomes competent and ready to be ovulated. In a randomized experimental design, an ovine model was used to optimize the standard in vitro maturation media by Granulosa secreted factors. At first, the development capacity of oocyte derived from medium (>4 to 6 mm) and small (2 to ≤4 mm) size follicles was determined. Differential gene expression of granulosa secreted factors and their receptors were compared between the cumulus cells of the two groups. Then, the best time and concentration for arresting oocytes at the germinal vesicle stage by natriuretic peptide type C (CNP) were determined by nuclear staining in both groups. Oocyte quality was further confirmed by calcein uptake and gene expression. The developmental competence of cumulus oocyte complexes derived from small size follicles that were cultured in the presence of CNP in combination with amphiregulin (AREG) and prostaglandin E2 (PGE2) for 24 h was determined. Finally, embryo quality was specified by assessing expressions of NANOG, SOX2, CDX2, OCT4, and TET1. The cumulus oocyte complexes derived from small size follicles had a lower capacity to form blastocyst in comparison with cumulus oocyte complexes derived from medium size follicles. Prostaglandin E receptor 2 and prostaglandin-endoperoxide synthase 2 had significantly lower expression in cumulus cells derived from small size follicles in comparison with cumulus cells derived from medium size follicles. Natriuretic peptide type C increased the percentage of cumulus oocyte complexes arresting at the germinal vesicle stage in both oocytes derived from medium and small follicles. Gap junction communication was also improved in the presence of natriuretic peptide type C. In oocytes derived from small size follicles; best blastocyst rates were achieved by sequential exposure of cumulus oocyte complexes in [TCM+CNP (6 h), then cultured in TCM+AREG+PGE2 (18h)] and [TCM+CNP (6 h), then cultured in conventional IVM supplements+AREG+PGE2 (18h)]. Increased SOX2 expression was observed in [TCM+CNP (6 h), then cultured in TCM+AREG+PGE2 (18h)], while decreased OCT4 expression was observed in [TCM+CNP (6 h), then cultured in conventional IVM supplements+AREG+PGE2 (18h)]. It seems that the natriuretic peptide type C modulates meiotic progression, and oocyte development is probably mediated by amphiregulin and prostaglandin E2. These results may provide an alternative IVM method to optimize in vitro embryo production in sheep and subsequently for humans.

摘要

卵母细胞体外成熟可以通过模拟卵泡内环境来提高。卵母细胞、卵丘细胞、颗粒细胞和循环因子在卵泡中作为减数分裂调节剂发挥作用,并使卵母细胞保持减数分裂阶段,直到卵母细胞成熟并准备排卵。在一项随机实验设计中,使用绵羊模型通过颗粒细胞分泌因子来优化标准的体外成熟培养基。首先,确定来自中(>4 至 6 毫米)和小(2 至≤4 毫米)大小卵泡的卵母细胞的发育能力。比较两组卵丘细胞中颗粒细胞分泌因子及其受体的差异基因表达。然后,通过核染色确定卵母细胞在两种组中通过利钠肽 C(CNP)阻滞在生发泡期的最佳时间和浓度。通过 calcein 摄取和基因表达进一步证实卵母细胞质量。在存在 CNP 的情况下培养 24 小时后,来自小卵泡的卵丘卵母细胞复合物的发育能力,结合表皮生长因子受体(AREG)和前列腺素 E2(PGE2)进行测定。最后,通过评估 NANOG、SOX2、CDX2、OCT4 和 TET1 的表达来指定胚胎质量。与从中卵泡衍生的卵丘卵母细胞复合物相比,从小卵泡衍生的卵丘卵母细胞复合物形成囊胚的能力较低。与从中卵泡衍生的卵丘细胞相比,从小卵泡衍生的卵丘细胞中前列腺素 E 受体 2 和前列腺素内过氧化物合酶 2 的表达明显较低。CNP 增加了来自中卵泡和小卵泡的卵母细胞中处于生发泡期的卵丘卵母细胞复合物的比例。CNP 存在时,缝隙连接通讯也得到改善。在小卵泡来源的卵母细胞中,通过[TCM+CNP(6 小时),然后在 TCM+AREG+PGE2(18 小时)中培养]和[TCM+CNP(6 小时),然后在常规 IVM 补充剂+AREG+PGE2(18 小时)中培养],最佳囊胚率是通过连续暴露卵丘卵母细胞复合物来实现的。在[TCM+CNP(6 小时),然后在 TCM+AREG+PGE2(18 小时)中培养]中观察到 SOX2 表达增加,而在[TCM+CNP(6 小时),然后在常规 IVM 补充剂+AREG+PGE2(18 小时)中培养]中观察到 OCT4 表达降低。似乎利钠肽 C 调节减数分裂进程,卵母细胞发育可能由表皮生长因子和前列腺素 E2 介导。这些结果可能为绵羊和人类优化体外胚胎生产提供替代 IVM 方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a85/7077809/7543a7accbe4/pone.0229043.g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验