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蛹虫草中的主要生物活性成分虫草素可通过 Sirt1/Foxo3a 通路改善糖尿病引起的睾丸损伤。

Cordycepin, a major bioactive component of Cordyceps militaris, ameliorates diabetes-induced testicular damage through the Sirt1/Foxo3a pathway.

机构信息

School of Pharmaceutical Sciences, Nanjing Tech University, Nanjing, China.

Luzhou Pinchuang Technology Co. Ltd., Luzhou, China.

出版信息

Andrologia. 2022 Feb;54(1):e14294. doi: 10.1111/and.14294. Epub 2021 Nov 22.

DOI:10.1111/and.14294
PMID:34811786
Abstract

Diabetes-induced male dysfunction is considered as a worldwide challenge, and testicular damage mainly caused by oxidative stress is its most common manifestation. Cordycepin, a natural antioxidant, has been used in the treatment of diabetic complications. However, the protective action and underlying mechanism of cordycepin on hyperglycaemia-induced testicular damage are unclear. This study aimed to investigate the protective effects and molecular mechanisms of cordycepin against diabetes-induced testicular damage. The type 2 diabetes model was established in C57BL/6 male mice via high-fat diet for 4 weeks and injected intraperitoneally with 50 mg/kg/day streptozotocin for five consecutive days. Then mice were treated with cordycepin (10 and 20 mg/kg, respectively) for 8 weeks. At the end of experiment, biochemical indicators, microstructure of testicular tissue, sperm morphology, TUNEL staining and protein expressions were evaluated. In the present study, cordycepin alleviated the testicular damage, restored disruption of the blood-testis barrier, and improved spermatogenic function via the antiapoptotic and antioxidant capacity. Mechanistically, cordycepin significantly enhanced SIRT1 expression and triggered the activity of Foxo3a, further to induce the expression of its downstream antioxidant enzymes, including Mn-SOD and CAT. These findings indicated that cordycepin could improve hyperglycaemia-induced testicular damage by regulating downstream antioxidant enzymes activity through the SIRT1/Foxo3a signalling pathway.

摘要

糖尿病引起的男性功能障碍被认为是一个全球性的挑战,而主要由氧化应激引起的睾丸损伤是其最常见的表现形式。蛹虫草素作为一种天然抗氧化剂,已被用于治疗糖尿病并发症。然而,蛹虫草素对高血糖引起的睾丸损伤的保护作用及其潜在机制尚不清楚。本研究旨在探讨蛹虫草素对糖尿病引起的睾丸损伤的保护作用及其分子机制。通过 4 周高脂肪饮食和连续 5 天腹腔注射 50mg/kg/d 链脲佐菌素,建立 C57BL/6 雄性小鼠 2 型糖尿病模型。然后,用蛹虫草素(分别为 10 和 20mg/kg)治疗 8 周。实验结束时,评估生化指标、睾丸组织微观结构、精子形态、TUNEL 染色和蛋白表达。在本研究中,蛹虫草素通过抗凋亡和抗氧化能力缓解了睾丸损伤,恢复了血睾屏障的破坏,改善了生精功能。机制上,蛹虫草素显著增强了 SIRT1 的表达,并激活了 Foxo3a 的活性,进一步诱导其下游抗氧化酶,包括 Mn-SOD 和 CAT 的表达。这些发现表明,蛹虫草素可以通过 SIRT1/Foxo3a 信号通路调节下游抗氧化酶的活性,改善高血糖引起的睾丸损伤。

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