Sertoli cell numbers and spermatogenic efficiency are increased in inducible nitric oxide synthase mutant mice

S. A. Auharek, G. F. Avelar, N. L. M Lara, R. M. Sharpe, L. R. França
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引用次数: 33

Abstract

Nitric oxide (NO) is produced via oxidation of l-arginine by nitric oxide synthases (NOSs), and is known as inducible (iNOS), neuronal, endothelial or testis-specific. Suggesting important functions for NOS in the normal rat and mouse testis, iNOS is reported to be constitutively expressed in Leydig cells (LC), Sertoli cells (SC) and germ cells. In our study, we sought to provide further insights into the roles of iNOS in the adult mouse testis using iNOS-/- mice. Perfusion-fixed testes from wild type (WT) and iNOS-/- mice were used for histological and stereological evaluations. Some of the mice had been injected with 3H-thymidine to label proliferating cells and to determine the duration of spermatogenesis that was unaffected in iNOS-/- mice. Both LC nuclear volume and individual cell size were significantly decreased in iNOS-/- mice, but the total number of LC per testis was increased (p < 0.05) by approximately 16%. The number of SC per testis was strikingly increased (approximately twofold) in iNOS-/- mice, and testis weight and DSP per gram of testis (spermatogenic efficiency) were similarly increased. The anogenital distance was also significantly increased in iNOS-/- mice, and this key endpoint suggests that the augmentation observed for the SC number may be related to increased foetal T-exposure during the masculinization programming window. Compared with WT testes, the numbers of spermatocytes and spermatids and SC per tubule cross sections were significantly increased in iNOS-/- mice. Except for stages V–VI and VII–VIII, iNOS-/- mice exhibited approximately 3.5-fold fewer apoptotic germ cells than in WT mice. Taken together, our results provide new evidence that iNOS plays an important role in numerical and functional regulation of key somatic cells in the testis, which in turn impacts on germ cells and their survival and thus on daily sperm production.

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诱导型一氧化氮合酶突变小鼠的支持细胞数量和生精效率增加
一氧化氮(NO)是由一氧化氮合酶(nos)氧化l-精氨酸产生的,被称为诱导型(iNOS),神经元型,内皮型或睾丸特异性。NOS在正常大鼠和小鼠睾丸中具有重要功能,据报道,iNOS在Leydig细胞(LC)、Sertoli细胞(SC)和生殖细胞中组成性表达。在我们的研究中,我们试图通过iNOS-/-小鼠进一步了解iNOS在成年小鼠睾丸中的作用。野生型(WT)和iNOS-/-小鼠的灌注固定睾丸用于组织学和体视学评估。一些小鼠注射了3h -胸腺嘧啶来标记增殖细胞,并确定精子发生的持续时间,iNOS-/-小鼠不受影响。iNOS-/-小鼠的LC核体积和单个细胞大小均显著降低,但每睾丸LC总数增加了约16% (p < 0.05)。iNOS-/-小鼠每个睾丸的SC数量显著增加(约两倍),睾丸重量和每克睾丸的DSP(生精效率)也同样增加。iNOS-/-小鼠的肛门生殖器距离也显著增加,这一关键终点表明,SC数量的增加可能与雄性化编程窗口期间胎儿t暴露增加有关。与WT相比,iNOS-/-小鼠精母细胞、精母细胞数量和小管截面SC均显著增加。除V-VI期和VII-VIII期外,iNOS-/-小鼠的凋亡生殖细胞比WT小鼠少约3.5倍。综上所述,我们的研究结果提供了新的证据,表明iNOS在睾丸关键体细胞的数量和功能调节中发挥重要作用,进而影响生殖细胞及其存活,从而影响日常精子的产生。
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6-12 weeks
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