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小鼠雌性生殖系干细胞的分离和富集。

Isolation and enrichment of mouse female germ line stem cells.

机构信息

Department of Anatomy, School of Medicine, Tehran University of Medical Sciences, Tehran, Iran ; Cellular and Molecular Research Center, Shahrekord University of Medical Sciences, Shahrekord, Iran.

Department of Anatomy, School of Medicine, Tehran University of Medical Sciences, Tehran, Iran.

出版信息

Cell J. 2015 Winter;16(4):406-15. doi: 10.22074/cellj.2015.487. Epub 2015 Jan 13.

Abstract

OBJECTIVE

The existence of female germ-line stem cells (FGSCs) has been the subject of a wide range of recent studies. Successful isolation and culture of FGSCs could facilitate studies on regenerative medicine and infertility treatments in the near future. Our aim in the present study was evaluation of the most commonly used techniques in enrichment of FGSCs and in establishment of the best procedure.

MATERIALS AND METHODS

In this experimental study, after digesting neonate ovary from C57Bl/6 mice, we performed 2 different isolation experiments: magnetic activated cell sorting (MACS) and pre-plating. MACS was applied using two different antibodies against mouse vasa homolog (MVH) and stage-specific embryonic antigen-1 (SSEA1) markers. After the cells were passaged and proliferated in vitro, colony-forming cells were characterized using reverse transcription-polymerase chain reaction (RT-PCR) (for analysis of expression of Oct4, Nanog, C-kit, Fragilis, Mvh, Dazl, Scp3 and Zp3), alkaline phosphatase (AP) activity test and immunocytochemistry.

RESULTS

Data showed that colonies can be seen more frequently in pre-plating technique than that in MACS. Using the SSEA1 antibody with MACS, 1.98 ± 0.49% (Mean ± SDV) positive cells were yield as compared to the total cells sorted. The colonies formed after pre-plating expressed pluripotency and germ stem cell markers (Oct4, Nanog, C-kit, Fragilis, Mvh and Dazl) whereas did not express Zp3 and Scp3 at the mRNA level. Immunocytochemistry in these colonies further confirmed the presence of OCT4 and MVH proteins, and AP activity measured by AP-kit showed positive reaction.

CONCLUSION

We established a simple and an efficient pre-plating technique to culture and to enrich FGSCs from neonatal mouse ovaries.

摘要

目的

女性生殖细胞干细胞(FGSCs)的存在是最近大量研究的主题。FGSCs 的成功分离和培养将有助于未来再生医学和不孕治疗的研究。我们本研究的目的是评估富集 FGSCs 和建立最佳程序中最常用的技术。

材料和方法

在这项实验研究中,我们消化了 C57Bl/6 幼鼠的卵巢后,进行了 2 种不同的分离实验:磁激活细胞分选(MACS)和预铺板。MACS 应用了针对小鼠 vasa 同源物(MVH)和阶段特异性胚胎抗原-1(SSEA1)标记物的 2 种不同抗体。在细胞体外传代和增殖后,使用逆转录-聚合酶链反应(RT-PCR)(分析 Oct4、Nanog、C-kit、Fragilis、Mvh、Dazl、Scp3 和 Zp3 的表达)、碱性磷酸酶(AP)活性测试和免疫细胞化学对集落形成细胞进行了特征分析。

结果

数据显示,预铺板技术比 MACS 技术更能频繁地观察到集落。使用 MACS 中的 SSEA1 抗体,与分选的总细胞相比,获得了 1.98±0.49%(Mean±SDV)的阳性细胞。预铺板后形成的集落表达多能性和生殖干细胞标记物(Oct4、Nanog、C-kit、Fragilis、Mvh 和 Dazl),但在 mRNA 水平上不表达 Zp3 和 Scp3。这些集落中的免疫细胞化学进一步证实了 OCT4 和 MVH 蛋白的存在,AP 试剂盒测量的 AP 活性显示阳性反应。

结论

我们建立了一种简单有效的预铺板技术,从新生小鼠卵巢中培养和富集 FGSCs。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9bf8/4297479/8a57d5af63af/Cell-J-16-406-g01.jpg

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