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Postnatal testis development in the collared peccary (Tayassu tajacu), with emphasis on spermatogonial stem cells markers and niche

机译:在衣领宫颈(Tayassu Tajacu)中的产后睾丸发育,重点是精牙科干细胞标记物和利基

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摘要

Collared peccaries (Tayassu tajacu) present a unique testis cytoarchitecture, where Leydig cells (LC) are mainly located in cords around the seminiferous tubules (ST) lobes. This peculiar arrangement is very useful to better investigate and understand the role of LC in spermatogonial stem cells (SSCs) biology and niche. Recent studies from our laboratory using adult peccaries have shown that the undifferentiated type A spermatogonia (A(und) or SSCs) are preferentially located in ST regions adjacent to the intertubular compartment without LC. Following these studies, our aims were to investigate the collared peccary postnatal testis development, from birth to adulthood, with emphasis on the establishment of LC cytoarchitecture and the SSCs niche. Our findings demonstrated that the unique LC cytoarchitecture is already present in the neonate peccary's testis, indicating that this arrangement is established during fetal development. Based on the most advanced germ cell type present at each time period evaluated, puberty (the first sperm release in the ST lumen) in this species was reached at around one year of age, being preceded by high levels of estradiol and testosterone and the end of Sertoli cell proliferation. Almost all gonocytes and SSCs expressed Nanos1, Nanos2 and GFRA1. The analysis of SSCs preferential location indicated that the establishment of SSCs niche is coincident with the occurrence of puberty. Taken together, our findings reinforced and extended the importance of the collared peccary as an animal model to investigate testis function in mammals, particularly the aspects related to testis organogenesis and the SSCs biology and niche.
机译:衣领佩奇(Tayassu Tajacu)呈现出独特的睾丸细胞建筑,其中Leydig电池(LC)主要位于半成管(ST)叶片周围的帘线中。这种特殊的安排对于更好地研究并理解LC在精术干细胞(SSCs)生物学和Niche中的作用非常有用。我们实验室使用成人PECCaries的研究已经表明,未分化的类型是精子寄生虫(A(und)或SSCs)优先位于与在没有LC的间形室附近的ST区域中。在这些研究之后,我们的目标是从出生到成年期,强调建立LC CECTA建筑和SSCS利基。我们的研究结果表明,独特的LC CytoArchitecture已经存在于新生儿宫殿的睾丸中,表明这种安排是在胎儿发育过程中建立的。基于在每次评估的每个时间段的最先进的生殖细胞类型,在这个物种中的青春期(ST腔内的第一个精子释放)在左右的一年内达到,前期是高水平的雌二醇和睾酮和末端血清细胞增殖。几乎所有腺细胞和SSCs表达纳米1,纳米2和GFRA1。 SSCS优惠定位的分析表明,SSCS Niche的建立与青春期的发生重合。我们的研究结果加强并扩大了雄性宫颈作为动物模型的重要性,以研究哺乳动物中的睾丸功能,特别是与睾丸组织组织和SSCS生物学和利基相关的方面。

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