Johnson Larry, Thompson Donald L, Varner Dickson D
Department of Veterinary Integrative Biosciences, College of Veterinary Medicine, Texas A&M University, College Station, TX 77843-4458, USA.
Anim Reprod Sci. 2008 Apr;105(1-2):23-51. doi: 10.1016/j.anireprosci.2007.11.029. Epub 2007 Dec 15.
Testicular function is under the control of expression and repression of several genes and gene products, and many of these works through Sertoli cells. The capability of Sertoli cells to regulate spermatogenesis is dependent on Sertoli cell functions and Sertoli cell number. Sertoli cell number has long been thought to be stable in adults with no proliferation of Sertoli cells once adult numbers have been reached. However, adult horses do not have stable Sertoli cell numbers, and new studies indicate that adult Sertoli cells can be made to re-enter mitotic phase under certain experimental conditions. This review discusses roles of Sertoli cells in regulation of spermatogenesis and methods for estimating the number of Sertoli cells, in a testis, that overcome the problems (assumptions) associated with the indented, pear-shaped of Sertoli cell nuclei which make it difficult to estimate the volume of individual nuclei. Using several approaches to overcome the problems associated with any one method, the horse is identified as a species in which Sertoli cell number is not fixed, but it fluctuates with season. In addition to Sertoli cell numbers, the functions of Sertoli cells that are very important in signaling and controlling spermatogenesis are discussed. Recent studies have shown that "post-mitotic terminally differentiated Sertoli cells" from adult animals could, under certain conditions, re-enter the cell division cycle. Can seasonal influences be a natural set of conditions to induce the Sertoli cells of the horse testis to seasonally re-enter the cell division cycle and explain the seasonal differences in Sertoli cell number as summarized in this review? Alternatively, can seasonal differences in Sertoli cell number reflect, in the horse to a greater extent, but in adults of most species, the presence of some mitotic-capable Sertoli cells in adults? In any case, both Sertoli cell number and function are important in regulation of spermatogenesis.
睾丸功能受多种基因及其产物表达与抑制的调控,其中许多是通过支持细胞起作用的。支持细胞调节精子发生的能力取决于支持细胞的功能和数量。长期以来,人们一直认为成年后支持细胞数量稳定,一旦达到成年数量,支持细胞就不会增殖。然而,成年马的支持细胞数量并不稳定,新的研究表明,在某些实验条件下,成年支持细胞可以重新进入有丝分裂期。本文综述了支持细胞在精子发生调控中的作用,以及估计睾丸中支持细胞数量的方法,这些方法克服了与支持细胞核呈凹陷梨形相关的问题(假设),这些问题使得难以估计单个细胞核的体积。通过几种方法来克服与任何一种方法相关的问题,发现马是一种支持细胞数量不固定而是随季节波动的物种。除了支持细胞数量外,还讨论了支持细胞在信号传导和控制精子发生中非常重要的功能。最近的研究表明,成年动物的“有丝分裂后终末分化支持细胞”在某些条件下可以重新进入细胞分裂周期。季节性影响能否是一组自然条件,诱导马睾丸的支持细胞季节性重新进入细胞分裂周期,并解释本文总结的支持细胞数量的季节性差异?或者,支持细胞数量的季节性差异在马身上是否更大程度地反映了大多数物种成年个体中存在一些具有有丝分裂能力的支持细胞?无论如何,支持细胞数量和功能在精子发生调控中都很重要。