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In vitro spermatogenesis by three-dimensional culture of rat testicular cells in collagen gel matrix

机译:胶原凝胶基质中大鼠睾丸细胞三维培养的体外生精

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摘要

In an effort to improve in vitro spermatogenesis by potentiating the interactions between developing germ cells, somatic cells, and the extracellular matrix (ECM), the efficiency of the germ cell-somatic cell coculture in a three-dimensional (3D) collagen gel matrix was examined. Cells isolated from rat seminiferous tubules 18 days after birth were cultured for 22 days in a monolayer without ECM, collagen gel (CG), or collagen + Matrigel (CGM). After culture, the viabilities of the cultured cells in the monolayer, CG, and CGM culture were 42.8%, 70.7% and 76.1%, respectively. Occludin-positive cells in a cyst-like structure were found in the ECM gel matrix together with 3 beta hydroxysteroid dehydrogenase-positive cells, suggesting the presence of functional Sertoli cells and Leydig cells, respectively. Flow cytometric analysis of DNA content revealed a significant increase in the haploid cell population in the CG and CGM compared to the monolayer culture. Transition protein 2 (TP2) and protamine 2-positive cells were found together with a significant increase in TP2 mRNA levels in cells cultured in CG and CGM over those in monolayer culture, suggesting the Occurrence of the postmeiotic differentiation of spermatogenetic cells. Taken together, a 3D in vitro culture system for testicular cells using a collagen gel matrix could enhance viability, meiosis, and post-meiotic differentiation of germ cells to presumptive differentiating spermatids. (C) 2006 Elsevier Ltd. All rights reserved.
机译:为了通过增强发育中的生殖细胞,体细胞和细胞外基质(ECM)之间的相互作用来改善体外精子发生,在三维(3D)胶原凝胶基质中进行生殖细胞-体细胞共培养的效率是检查。出生后18天从大鼠生精小管中分离的细胞在无ECM,胶原蛋白凝胶(CG)或胶原蛋白+基质胶(CGM)的单层中培养22天。培养后,在单层,CG和CGM培养物中培养的细胞的活力分别为42.8%,70.7%和76.1%。在ECM凝胶基质中发现了呈囊样结构的Occludin阳性细胞,以及3个β羟类固醇脱氢酶阳性细胞,这提示分别存在功能性Sertoli细胞和Leydig细胞。 DNA含量的流式细胞仪分析表明,与单层培养相比,CG和CGM中的单倍体细胞数量显着增加。与单层培养相比,在CG和CGM中培养的细胞中发现了过渡蛋白2(TP2)和鱼精蛋白2阳性细胞,并且TP2 mRNA水平显着增加,这表明生精细胞发生减数分裂后分化。综上所述,使用胶原蛋白凝胶基质的睾丸细胞的3D体外培养系统可以增强生殖细胞的活力,减数分裂和减数分裂后分化,从而推测出精子细胞的分化能力。 (C)2006 Elsevier Ltd.保留所有权利。

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