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IVM 技术促进了早期窦前卵泡包绕卵母细胞的耦合生殖组织工程,其受到人绒毛膜促性腺激素和卵巢表面上皮细胞共培养的诱导影响。

IVM Advances for Early Antral Follicle-Enclosed Oocytes Coupling Reproductive Tissue Engineering to Inductive Influences of Human Chorionic Gonadotropin and Ovarian Surface Epithelium Coculture.

机构信息

Department of Bioscience and Technology for Food, Agriculture and Environment, University of Teramo, 64100 Teramo, Italy.

Institute of Biomaterials, Department of Materials Science and Engineering, Friedrich-Alexander University of Erlangen-Nuremberg, 91054 Erlangen, Germany.

出版信息

Int J Mol Sci. 2023 Apr 1;24(7):6626. doi: 10.3390/ijms24076626.

Abstract

In vitro maturation (IVM) is not a routine assisted reproductive technology (ART) for oocytes collected from early antral (EA) follicles, a large source of potentially available gametes. Despite substantial improvements in IVM in the past decade, the outcomes remain low for EA-derived oocytes due to their reduced developmental competences. To optimize IVM for ovine EA-derived oocytes, a three-dimensional (3D) scaffold-mediated follicle-enclosed oocytes (FEO) system was compared with a validated cumulus-oocyte complex (COC) protocol. Gonadotropin stimulation (eCG and/or hCG) and/or somatic cell coculture (ovarian vs. extraovarian-cell source) were supplied to both systems. The maturation rate and parthenogenetic activation were significantly improved by combining hCG stimulation with ovarian surface epithelium (OSE) cells coculture exclusively on the FEO system. Based on the data, the paracrine factors released specifically from OSE enhanced the hCG-triggering of oocyte maturation mechanisms by acting through the mural compartment (positive effect on FEO and not on COC) by stimulating the EGFR signaling. Overall, the FEO system performed on a developed reproductive scaffold proved feasible and reliable in promoting a synergic cytoplasmatic and nuclear maturation, offering a novel cultural strategy to widen the availability of mature gametes for ART.

摘要

体外成熟(IVM)并不是从早期腔前卵泡(EA)中采集卵母细胞的常规辅助生殖技术(ART),因为这些卵泡是潜在的可用配子的重要来源。尽管在过去十年中 IVM 有了实质性的改进,但由于 EA 来源的卵母细胞发育能力降低,其结果仍然很低。为了优化绵羊 EA 来源卵母细胞的 IVM,比较了三维(3D)支架介导的卵泡封闭卵母细胞(FEO)系统与经过验证的卵丘-卵母细胞复合物(COC)方案。两种系统均提供了促性腺激素刺激(eCG 和/或 hCG)和/或体细胞共培养(卵巢与卵巢外细胞源)。仅在 FEO 系统上结合 hCG 刺激和卵巢表面上皮(OSE)细胞共培养,可显著提高成熟率和孤雌激活率。基于这些数据,OSE 释放的旁分泌因子通过刺激 EGFR 信号转导,通过壁层部分(对 FEO 有积极影响,对 COC 没有影响)作用,增强了 hCG 触发卵母细胞成熟机制。总之,在已开发的生殖支架上进行的 FEO 系统在促进协同细胞质和核成熟方面是可行和可靠的,为扩大 ART 中成熟配子的可用性提供了一种新的培养策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac27/10095509/c9a2815fa648/ijms-24-06626-g001.jpg

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