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Differentiation of murine male germ cells to spermatozoa in a soft agar culture system

机译:在软琼脂培养系统中将鼠雄性生殖细胞分化为精子

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摘要

Establishment of an in vitro system that allows the development of testicular germ cells to sperm will be valuable for studies of spermatogenesis and future treatments for male infertility. In the present study, we developed in vitro culture conditions using three-dimensional agar culture system (SACS), which has the capacity to induce testicular germ cells to reach the final stages of spermatogenesis, including spermatozoa generation. Seminiferous tubules from testes of 7-day-old mice were enzymatically dissociated, and intratubular cells were cultured in the upper layer of the SACS in RPMI medium supplemented with fetal calf serum (FCS). The lower layer of the SACS contained only RPMI medium supplemented with FCS. Colonies in the upper layer were isolated after 14 and 28 days of culture and were classified according to their size. Immunofluorescence and real-time PCR were used to analyse specific markers expressed in undifferentiated and differentiated spermatogonia (Vasa, Dazl, OCT-4, C-Kit, GFR-α-1, CD9 and α-6-integrin), meiotic cells (LDH, Crem-1 and Boule) and post-meiotic cells (Protamine-1, Acrosin and SP-10). Our results reveal that it is possible to induce mouse testicular pre-meiotic germ cell expansion and induce their differentiation to spermatozoa in SACS. The spermatozoa showed normal morphology and contained acrosomes. Thus, our results demonstrate that SACS could be used as a novel in vitro system for the maturation of pre-meiotic mouse germ cells to post-meiotic stages and morphologically-normal spermatozoa.
机译:建立允许睾丸生殖细胞发育成精子的体外系统,对于精子发生的研究和男性不育的未来治疗将具有重要的价值。在本研究中,我们开发了使用三维琼脂培养系统(SACS)的体外培养条件,该系统具有诱导睾丸生殖细胞达到精子生成最终阶段(包括精子生成)的能力。将来自7日龄小鼠睾丸的曲细精管进行酶解,并在补充胎牛血清(FCS)的RPMI培养基中,在SACS的上层中培养肾小管内细胞。 SACS的下层仅包含补充了FCS的RPMI培养基。培养14和28天后,分离上层菌落,并根据其大小分类。免疫荧光和实时荧光定量PCR用于分析未分化和分化的精原细胞(Vasa,Dazl,OCT-4,C-Kit,GFR-α-1,CD9和α-6-整联蛋白),减数分裂细胞(LDH)中表达的特定标记,Crem-1和Boule)和减数分裂后的细胞(鱼精蛋白1,阿克罗辛和SP-10)。我们的结果表明,有可能在SACS中诱导小鼠睾丸减数分裂前生殖细胞的扩增并诱导其分化为精子。精子形态正常,并含有顶体。因此,我们的结果表明,SACS可以用作新型的体外系统,用于将减数分裂前的小鼠生殖细胞成熟至减数分裂后的阶段和形态正常的精子。

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