从猪卵巢组织中分离雌性种系干细胞并向卵母细胞样细胞分化

Huy Nguyen, Bui Le Quynh Nhu, Nguyen Huynh Phuong Uyen, V. Nguyen, H. Bui
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引用次数: 5

摘要

从历史上看,人们普遍认为雌性哺乳动物的卵巢含有有限数量的卵母细胞,随着时间的推移会减少,没有补充的可能。然而,最近的研究表明,雌性生殖系干细胞(FGSCs)可以补充成人的卵母细胞池。本研究的目的是从猪卵巢中分离FGSCs并将其分化为卵母细胞样细胞(OLCs)。成功地从猪卵巢组织中分离出FGSCs,并在添加生长因子(EGF、FGF、GDNF等)和补剂(N21)的DMEM/F-12培养基中体外培养。这些细胞具有球形形态并表达特定的种系特征(Vasa, Stella, Oct4, c-kit)。通过评估FGSCs体外分化的不同条件,在三维(3D)细胞培养下,分离的FGSCs与MEF细胞共培养被证明是最佳的。FGSCs可以成功分化为OLCs,直径约70µm,周围有大量体细胞。重要的是,OLCs含有大核,约25-30µm,具有丝状染色质,与卵母细胞形态相似,并表达与卵母细胞相同水平的卵母细胞特异性标记物(Gdf9, Zp2, SCP3等)。总之,我们成功地从猪卵巢组织中分离出FGSCs,并将其分化为卵母细胞样细胞。这将为研究一种新的替代卵母细胞来源提供一个有价值的模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Isolation of female germline stem cells from porcine ovarian tissue and differentiation into oocyte-like cells
Historically, it had been widely accepted that the female mammalian ovary contained a limited number of oocytes that would reduce over time, without the possibility of replenishment. However, recent studies have suggested that female germline stem cells (FGSCs) could replenish the oocyte-pool in adults. The aim of this study was to isolate FGSCs from porcine ovaries and differentiate them into oocyte-like cells (OLCs). The FGSCs were successfully isolated from porcine ovarian tissue and cultured in vitro, in DMEM/F-12 medium supplemented with growth factors (EGF, FGF, GDNF, etc.) and a supplement (N21). These cells possessed spherical morphology and expressed specific germline characteristics (Vasa, Stella, Oct4, c-kit). By evaluating different conditions for in vitro differentiation of FGSCs, co-culturing the isolated FGSCs with MEF cells, under three-dimensional (3D) cell cultures, were shown to be optimal. FGSCs could successfully be differentiated into OLCs and reached about 70 µm in diameter, with a large number of surrounding somatic cells. Importantly, OLCs contained large nuclei, about 25–30 µm, with filamentous chromatin, similar to oocyte morphology, and expressed oocyte-specific markers (Gdf9, Zp2, SCP3, etc.) at the same level as oocytes. In conclusion, we successfully isolated FGSCs from porcine ovarian tissue and differentiated them into oocyte-like cells. This will provide a valuable model for studying a new, alternative source of oocytes.
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