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首页> 外文期刊>American Journal of Translational Research >Cistanoside of Cistanche Herba ameliorates hypoxia-induced male reproductive damage via suppression of oxidative stress
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Cistanoside of Cistanche Herba ameliorates hypoxia-induced male reproductive damage via suppression of oxidative stress

机译:Cistanche Herba的山氨酰基通过抑制氧化应激改善缺氧诱导的雄性生殖损伤

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摘要

Increasing evidence shows that hypoxia is a cause of male infertility, and hypoxia may be related to oxidative stress (OS). Cistanoside (Cis) is a phenylethanoid glycoside compound that can be extracted from Cistanches Herba and possesses various biological functions. This study aimed to investigate the protective effects of Cis on reproductive damage induced by hypoxia and explore the specific underlying mechanisms. Cell and animal hypoxia experimental models were constructed, and the protective effects of different subtypes of Cis on the male reproductive system were assessed both in vitro and in vivo . The results indicated that hypoxia significantly reduced the viability of GC-1 cells through cell cycle arrest and apoptosis activation, which were associated with increased OS. Moreover, Cis showed strong antioxidative effects both in vitro and in vivo , significantly restoring antioxidant enzyme activities and downregulating reactive oxygen species (ROS) levels while increasing cell viability and decreasing apoptosis. Importantly, the Cis subtypes (Cis-A, Cis-B, Cis-C and Cis-H) studied herein all showed certain antioxidant effects, among which the effects of Cis-B were the most significant. This study demonstrates that Cis markedly attenuates the harmful effects of hypoxia-induced OS by affecting antioxidant enzyme activities in testes and GC-1 cells.
机译:越来越多的证据表明,缺氧是男性不孕症的原因,缺氧可能与氧化应激(OS)有关。甲氰胺(顺式)是一种苯乙醇苷化合物,可以从岩树草本植物中提取并具有各种生物学功能。本研究旨在探讨CIS对缺氧诱导的生殖损伤的保护作用,探讨具体的潜在机制。构建了细胞和动物缺氧实验模型,在体外和体内评估了CIS对雄性生殖系统不同亚型的保护作用。结果表明,缺氧显着降低了GC-1细胞通过细胞周期骤停和凋亡激活的活力,这与增加的OS相关。此外,CIS在体外和体内显示出强烈的抗氧化作用,显着恢复抗氧化酶活性和下调反应性氧物质(ROS)水平,同时增加细胞活力并降低细胞凋亡。重要的是,本文研究的顺式亚型(CIS-A,CIS-B,CIS-C和CIS-C和CIS-C)表现出一定的抗氧化作用,其中CIS-B的影响是最重要的。该研究表明,CI通过影响睾丸和GC-1细胞中的抗氧化酶活性显着衰减缺氧诱导的OS的有害影响。

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