一种高效扩增精原干细胞标记物的体外培养系统

Z. Narimanpour, M. Nazm Bojnordi, H. Ghasemi
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引用次数: 1

摘要

简介:精原干细胞(SSCs)的增殖可以治疗不育男性。在这里,我们设计了一种基于在支持细胞存在下培养的有效方法,以在培养后两周内提高某些特定精原干细胞基因的表达水平。材料和方法:从2-6天大的新生小鼠睾丸中提取细胞,并在含有FBS的DMEM培养基中培养。通过相差显微镜和Image J软件对培养的SSCs在培养的第4、7和14天的定植进行计数。甲基噻唑基四氮唑(MTT)试验用于评估培养的SSC在培养的第3、7和14天的生存能力。在培养后两周内,通过实时聚合酶链式反应(PCR)检测特定精原细胞标志物Stra8、DAZL和Piwill2的表达水平和改变模式。结果:培养细胞的菌落数和菌落直径均明显增加。MTT结果证明睾丸细胞在培养期间具有较高的活力。ALP染色结果在精原细胞集落中检测到阳性反应。实时PCR数据显示,在睾丸间质细胞存在的情况下培养SSCs,扩增了特定精原干细胞基因的水平和改变模式,有利于SSCs繁殖的富集。结论:提供一个与睾丸生态位相似的培养环境可以提高生存能力,形成SSCs集落,并调节精原干细胞基因的水平和改变模式。
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An Efficient In Vitro Culture System To Amplify Spermatogonia Stem Cell Markers
Introduction: Proliferation of spermatogonial stem cells (SSCs) can be a treatment for infertile men. Here, we design an efficient method based on culturing in the presence of Sertoli cells to improve the expression level of some specific spermatogonia stem cell genes during two weeks post culture. Materials and Methods: Cells were derived from neonatal (2-6 days old) mice testes and were cultured in DMEM medium with FBS. The colonization of cultured SSCs in days 4, 7, and 14 of culture was counted via phase-contrast microscope and Image J software. Methyl thiazolyl tetrazolium (MTT) test was performed to evaluate the viability of cultured SSCs in days 3, 7, and 14 of culture. The expression level and the alteration pattern of specific spermatogonial markers, i.e., Stra8, DAZL, and Piwill2 was examined via real-time polymerase chain reaction (PCR) during two weeks post culture. Results: The number and the diameters of colonies showed a significant increase in cultured cells. MTT results proved the higher viability of testicular cells during the culture period. The results of ALP staining detected a positive reaction in spermatogonia colonies. Real-time PCR data showed that culturing SSCs in the presence of interstitial cells of the testis, amplified the level and alteration pattern of specific spermatogonia stem cells genes beneficial in the enrichment of SSCs propagation. Conclusion: Providing a similar culture environment to testicular niche increases viability, forms SSCs colonies, and regulates the level and alteration pattern of spermatogonia stem cell genes.
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