Animal Science and Technology College, Beijing University of Agriculture, Beijing, 102206, China.
Department of Agricultural, Food and Nutritional Science, University of Alberta, Edmonton, AB, T6G 2P5, Canada.
Mol Nutr Food Res. 2024 Nov;68(22):e2400522. doi: 10.1002/mnfr.202400522. Epub 2024 Nov 3.
Aging in males can lead to declines in testosterone production, essential for maintaining male reproductive health.
To investigate the effects of dietary supplementation with alpha-linolenic acid (ALA) on testosterone production in aged breeder roosters and understand the underlying molecular mechanisms involved. An in vivo model is established to investigate the effects of dietary ALA supplementation on testosterone production in aged breeder roosters, and the Leydig cell culture is used to identify the potential molecular mechanism. Dietary supplementation with ALA increases in plasma testosterone. Congruently, ALA supplementation enhances the expression of testosterone biosynthesis-related enzymes. ALA supplementation exerts anti-apoptotic effects in testicular mitochondria, as evidenced by a lower expression of pro-apoptotic factors and a higher expression of the anti-apoptotic factor B-cell lymphoma 2 (Bcl-2). Moreover, In Leydig cells, ALA supplementation promotes mitochondrial biogenesis genes. The proposed mechanism is that ALA activates the sirtuin1 (SIRT1) pathway and is supported by higher SIRT1 transcript and protein in Leydig cells. Furthermore, blocking SIRT1 with siRNA reverses ALA's effects on testosterone biosynthesis and mitochondrial function-related genes.
These findings indicate that dietary supplementation with ALA can improve testosterone production in aged breeder roosters, possibly by modulation of mitochondrial function via activating the SIRT1 pathway.
男性衰老会导致睾丸酮生成减少,而睾丸酮对维持男性生殖健康至关重要。
为了研究α-亚麻酸(ALA)饮食补充对老龄种公鸡睾丸酮生成的影响,并了解相关的潜在分子机制,我们建立了一个体内模型来研究 ALA 饮食补充对老龄种公鸡睾丸酮生成的影响,并使用 Leydig 细胞培养来鉴定潜在的分子机制。饮食补充 ALA 可增加血浆睾丸酮水平。与此一致的是,ALA 补充增强了与睾丸酮生物合成相关的酶的表达。ALA 补充对睾丸线粒体具有抗凋亡作用,表现为促凋亡因子的表达降低和抗凋亡因子 B 细胞淋巴瘤 2(Bcl-2)的表达升高。此外,在 Leydig 细胞中,ALA 补充促进了线粒体生物发生基因的表达。提出的机制是 ALA 激活了沉默信息调节因子 1(SIRT1)途径,这一机制得到了 Leydig 细胞中 SIRT1 转录本和蛋白水平升高的支持。此外,用 siRNA 阻断 SIRT1 会逆转 ALA 对睾丸酮生物合成和与线粒体功能相关基因的作用。
这些发现表明,饮食补充 ALA 可以改善老龄种公鸡的睾丸酮生成,这可能是通过激活 SIRT1 途径来调节线粒体功能。