Rebourcet Diane, Darbey Annalucia, Monteiro Ana, Soffientini Ugo, Tsai Yi Ting, Handel Ian, Pitetti Jean-Luc, Nef Serge, Smith Lee B, O'Shaughnessy Peter J
Institute of Biodiversity, Animal Health and Comparative Medicine, University of Glasgow, Glasgow G61 1QH, United Kingdom.
Medical Research Council Centre for Reproductive Health, The Queen's Medical Research Institute, University of Edinburgh, Edinburgh EH16 4TJ, United Kingdom.
Endocrinology. 2017 Sep 1;158(9):2955-2969. doi: 10.1210/en.2017-00196.
Sertoli cells regulate differentiation and development of the testis and are essential for maintaining adult testis function. To model the effects of dysregulating Sertoli cell number during development or aging, we have used acute diphtheria toxin-mediated cell ablation to reduce Sertoli cell population size. Results show that the size of the Sertoli cell population that forms during development determines the number of germ cells and Leydig cells that will be present in the adult testis. Similarly, the number of germ cells and Leydig cells that can be maintained in the adult depends directly on the size of the adult Sertoli cell population. Finally, we have used linear modeling to generate predictive models of testis cell composition during development and in the adult based on the size of the Sertoli cell population. This study shows that at all ages the size of the Sertoli cell population is predictive of resulting testicular cell composition. A reduction in Sertoli cell number/proliferation at any age will therefore lead to a proportional decrease in germ cell and Leydig cell numbers, with likely consequential effects on fertility and health.
支持细胞调节睾丸的分化和发育,对维持成年睾丸功能至关重要。为了模拟发育或衰老过程中支持细胞数量失调的影响,我们使用急性白喉毒素介导的细胞消融来减少支持细胞群体的大小。结果表明,发育过程中形成的支持细胞群体的大小决定了成年睾丸中生殖细胞和间质细胞的数量。同样,成年期能够维持的生殖细胞和间质细胞数量直接取决于成年支持细胞群体的大小。最后,我们使用线性模型,根据支持细胞群体的大小生成发育过程中和成年期睾丸细胞组成的预测模型。这项研究表明,在所有年龄段,支持细胞群体的大小都能预测最终的睾丸细胞组成。因此,任何年龄的支持细胞数量/增殖减少都将导致生殖细胞和间质细胞数量成比例减少,可能对生育能力和健康产生相应影响。