用差异粘附法从小鼠和人卵巢中分离雌性生殖系干细胞。

Q3 Biochemistry, Genetics and Molecular Biology International Journal of Cell Biology Pub Date : 2022-09-07 eCollection Date: 2022-01-01 DOI:10.1155/2022/5224659
Maryam Saber, Pouya Tavakol, Fereshteh Esfandiari
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引用次数: 3

摘要

精原干细胞(SSC)与雌性生殖系干细胞(fGSCs)是2004年在哺乳动物卵巢中发现的。尽管fGSC在哺乳动物出生后卵巢中的存在仍存在争议,但fGSC的发现鼓励研究人员更好地了解这些细胞的各个方面。然而,它们的存在并没有被该领域的所有科学家所接受,因为通过荧光活化细胞分选(FACS)分离fGSCs的方法还没有可重复性。在这项研究中,我们使用差异粘附方法从小鼠和人卵巢中分离和富集fGSCs,并随后在体外培养它们。fGSCs能够在体外增殖,并在蛋白水平上表达生殖细胞特异性标志物Vasa、Dazl、Blimp1、Fragilis、Stella和Oct4。此外,小鼠和人的fGSCs分别在培养中培养了4个多月和1个月。小鼠和人的fGSCs在这段时间内都保持了生殖细胞特异性标记物的表达。体外培养的fGSCs自发产生表达卵母细胞相关标记物的卵母细胞样细胞(OLCs)。我们的研究结果表明,随着时间的推移,差异粘附允许可重复分离的fGSCs能够在体外增殖。这种来源的fGSCs可以作为研究女性生殖细胞发育和功能机制的合适材料。
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Isolation of Female Germline Stem Cells from Mouse and Human Ovaries by Differential Adhesion.

Spermatogonial stem cell (SSC) counterparts known as female germline stem cells (fGSCs) were found in the mammalian ovary in 2004. Although the existence of fGSCs in the mammalian postnatal ovary is still under controversy, fGSC discovery encourages investigators to better understand the various aspects of these cells. However, their existence is not accepted by all scientists in the field because isolation of fGSCs by fluorescent activated cell sorting (FACS) has not been reproducible. In this study, we used differential adhesion to isolate and enrich fGSCs from mouse and human ovaries and subsequently cultured them in vitro. fGSCs were able to proliferate in vitro and expressed germ cell-specific markers Vasa, Dazl, Blimp1, Fragilis, Stella, and Oct4, at the protein level. Moreover, mouse and human fGSCs were, respectively, cultured for more than four months and one month in culture. Both mouse and human fGSCs maintained the expression of germ cell-specific markers over these times. In vitro cultured fGSCs spontaneously produced oocyte-like cells (OLCs) which expressed oocyte-relevant markers. Our results demonstrated that differential adhesion allows reproducible isolation of fGSCs that are able to proliferate in vitro over time. This source of fGSCs can serve as a suitable material for studying mechanisms underlying female germ cell development and function.

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来源期刊
International Journal of Cell Biology
International Journal of Cell Biology Biochemistry, Genetics and Molecular Biology-Cell Biology
CiteScore
3.30
自引率
0.00%
发文量
4
审稿时长
20 weeks
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