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Isolation, proliferation, and induction of Bama mini-pig spermatogonial stem cells in vitro

机译:巴马小型猪精原干细胞的体外分离,增殖和诱导

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Spermatogonial stem cells (SSCs), the unique seed cells of testes, can undergo meiosis and form spermatozoa, thus transmitting genetic information to offspring. Research concerning these cells explores the mechanism underlying spermatogenesis, making possible the induction of their differentiation into spermatozoa in vitro. SSCs have therefore attracted much interest among scientists. Although the proliferation of such cells in vitro has been demonstrated, we are unaware of any long-term laboratory culture of porcine SSCs. The objective of this study was to isolate, characterize, culture, and induce the differentiation of Bama mini-pig SSCs. SSCs were isolated using differential plating and cultured for over 100 days on an STO feeder cell layer without serum. Cell clusters appeared after three passages and continuously formed during subsequent cultivation. Staining showed that these clusters were positive for UCHL1 and CDH1, could be bound by Dolichos biflorus agglutinin, and that some cells expressed OCT4. Ultrastructure observations revealed SSCs in testis tissue to be round in shape, while those cultured in vitro were flat and bound together. Our attempts at inducing differentiation showed that SSCs cultured in vitro could undergo meiosis. In this study, we describe an effective culture system for Bama mini-pig SSCs capable of producing enough cells to establish a platform for further SSC research, such as genetic manipulation or exploration of the mechanism underlying spermatogenesis.
机译:精原干细胞(SSC)是睾丸独特的种子细胞,可以经历减数分裂并形成精子,从而将遗传信息传递给后代。有关这些细胞的研究探索了精子发生的机制,使其在体外诱导分化为精子成为可能。因此,SSC引起了科学家的极大兴趣。尽管已经证明了此类细胞在体外的增殖,但我们不了解猪SSC的任何长期实验室培养。这项研究的目的是分离,表征,培养和诱导巴马小型猪SSC的分化。使用差异平板分离SSC,并在无血清的STO饲养细胞层上培养100天以上。细胞簇在三代后出现并在随后的培养过程中连续形成。染色表明,这些簇对UCHL1和CDH1呈阳性,可以被双花杜鹃凝集素结合,并且某些细胞表达OCT4。超微结构观察表明,睾丸组织中的SSC呈圆形,而体外培养的SSC则扁平并结合在一起。我们诱导分化的尝试表明,体外培养的SSC可能发生减数分裂。在这项研究中,我们描述了一种有效的Bama小型猪SSC培养系统,该系统能够产生足够的细胞,从而为进一步的SSC研究(例如基因操作或探索精子发生的机制)建立平台。

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