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In vitro Spermatogenesis – Optimal Culture Conditions for Testicular Cell Survival Germ Cell Differentiation and Steroidogenesis in Rats

机译:体外精子发生–大鼠睾丸细胞存活生殖细胞分化和类固醇形成的最佳培养条件

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摘要

Although three-dimensional testicular cell cultures have been demonstrated to mimic the organization of the testis in vivo and support spermatogenesis, the optimal culture conditions and requirements remain unknown. Therefore, utilizing an established three-dimensional cell culture system that promotes differentiation of pre-meiotic murine male germ cells as far as elongated spermatids, the present study was designed to test the influence of different culture media on germ cell differentiation, Leydig cell functionality, and overall cell survival. Single-cell suspensions prepared from 7-day-old rat testes and containing all the different types of testicular cells were cultured for as long as 31 days, with or without stimulation by gonadotropins. Leydig cell functionality was assessed on the basis of testosterone production and the expression of steroidogenic genes. Gonadotropins promoted overall cell survival regardless of the culture medium employed. Of the various media examined, the most pronounced expression of Star and Tspo, genes related to steroidogenesis, as well as the greatest production of testosterone was attained with Dulbecco’s modified eagle medium + glutamine. Although direct promotion of germ cell maturation by the cell culture medium could not be observed, morphological evaluation in combination with immunohistochemical staining revealed unfavorable organization of tubules formed de novo in the three-dimensional culture, allowing differentiation to the stage of pachytene spermatocytes. Further differentiation could not be observed, probably due to migration of germ cells out of the cell colonies and the consequent lack of support from Sertoli cells. In conclusion, the observations reported here show that in three-dimensional cultures, containing all types of rat testicular cells, the nature of the medium per se exerts a direct influence on the functionality of the rat Leydig cells, but not on germ cell differentiation, due to the lack of proper organization of the Sertoli cells.
机译:尽管已证明三维睾丸细胞培养物可模拟体内睾丸的组织并支持精子发生,但最佳培养条件和要求仍然未知。因此,本研究利用成熟的三维细胞培养系统促进减数分裂前小鼠雄性生殖细胞向细长精子细胞的分化,旨在测试不同培养基对生殖细胞分化,Leydig细胞功能的影响,和整体细胞存活率。在有或没有受到促性腺激素刺激的情况下,将由7天大的大鼠睾丸制成的包含所有不同类型睾丸细胞的单细胞悬液培养长达31天。根据睾丸激素的产生和类固醇生成基因的表达来评估Leydig细胞的功能。无论使用哪种培养基,促性腺激素都能促进总体细胞存活。在各种培养基中,使用Dulbecco改良的Eagle培养基+谷氨酰胺,可获得最明显的Star和Tspo表达,与类固醇生成相关的基因以及最大的睾丸激素产量。尽管不能观察到通过细胞培养基直接促进生殖细胞成熟,但是形态学评估与免疫组织化学染色相结合显示在三维培养物中从头形成的小管的不利组织,从而允许其分化为粗大精细胞的阶段。无法观察到进一步的分化,这可能是由于生殖细胞从细胞集落中迁移出来,以及随之而来的Sertoli细胞缺乏支持。总之,这里报道的观察结果表明,在包含所有类型大鼠睾丸细胞的三维培养物中,培养基本身的性质直接影响大鼠Leydig细胞的功能,但不影响生殖细胞的分化,由于缺乏支持细胞的适当组织。

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