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The Mammalian Blood-Testis Barrier: Its Biology and Regulation

机译:哺乳动物的血液-睾丸屏障:其生物学和调控

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摘要

Spermatogenesis is the cellular process by which spermatogonia develop into mature spermatids within seminiferous tubules, the functional unit of the mammalian testis, under the structural and nutritional support of Sertoli cells and the precise regulation of endocrine factors. As germ cells develop, they traverse the seminiferous epithelium, a process that involves restructuring of Sertoli-germ cell junctions, as well as Sertoli-Sertoli cell junctions at the blood-testis barrier. The blood-testis barrier, one of the tightest tissue barriers in the mammalian body, divides the seminiferous epithelium into 2 compartments, basal and adluminal. The blood-testis barrier is different from most other tissue barriers in that it is not only comprised of tight junctions. Instead, tight junctions coexist and cofunction with ectoplasmic specializations, desmosomes, and gap junctions to create a unique microenvironment for the completion of meiosis and the subsequent development of spermatids into spermatozoa via spermiogenesis. Studies from the past decade or so have identified the key structural, scaffolding, and signaling proteins of the blood-testis barrier. More recent studies have defined the regulatory mechanisms that underlie blood-testis barrier function. We review here the biology and regulation of the mammalian blood-testis barrier and highlight research areas that should be expanded in future studies.
机译:精子发生是在睾丸支持细胞的结构和营养支持以及内分泌因子的精确调控下,精原细胞在生精小管,哺乳动物睾丸的功能单位内发展成成熟精子的细胞过程。随着生殖细胞的发育,它们会穿过生精上皮,这一过程涉及血睾丸屏障处的Sertoli-Sertoli细胞连接以及Sertoli-Sertoli细胞连接的重组。血液-睾丸屏障是哺乳动物体内最紧密的组织屏障之一,将生精上皮分为基底和肾上腺两个区室。血液-睾丸屏障与大多数其他组织屏障的不同之处在于,它不仅由紧密的连接组成。取而代之的是,紧密的连接与胞质特化,桥粒和间隙连接共存并共同起作用,从而创造了一个独特的微环境,以完成减数分裂并随后通过精子发生将精子发展为精子。过去十年左右的研究已经确定了血液-睾丸屏障的关键结构,支架和信号蛋白。最近的研究已经定义了血液-睾丸屏障功能基础的调节机制。我们在这里回顾了哺乳动物血液-睾丸屏障的生物学和调控,并强调了应在未来研究中扩展的研究领域。

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