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核黄素通过抑制氧化变化和调节砷损伤大鼠模型中 PINK1 介导的途径来恢复生精功能障碍。

Riboflavin recovery of spermatogenic dysfunction via a dual inhibition of oxidative changes and regulation of the PINK1-mediated pathway in arsenic-injured rat model.

机构信息

Young Researchers and Elites Club, Kermanshah Branch, Islamic Azad University, Kermanshah, Iran.

出版信息

Physiol Res. 2021 Aug 31;70(4):591-603. doi: 10.33549/physiolres.934658. Epub 2021 Jun 1.

Abstract

Arsenic trioxide (As2O3) poisoning and associated potential lesions are of a global concern. Inversely, riboflavin (vitamin B2, VB2) as a component of flavoproteins could play a vital role in the spermatogenic enzymatic reactions. Thus, this research aimed to explore potential beneficial roles of VB2 during As2O3-injured-toxicity. Rats were randomly allocated into 4 groups (n=8/group) and challenged as follows (for 30 days continuously): Group 1 received normal saline; Group 2 was treated with 3 mg As2O3/L; Group 3 received 40 mg VB2/L; Group 4 received 3 mg As2O3/L + 40 mg VB2/L. Both As2O3 and VB2 were dissolved in deionized water. Malondialdehyde (MDA), Glutathione Peroxidase (GSH-Px), Superoxide dismutase (SOD), and Catalase (CAT) were assessed for the oxidative profile, while TAS (Total Antioxidative Status) levels were evaluated for the antioxidant system, in both serum and testicular tissue. P<0.05 was considered statistically significant. The results show that As2O3 significantly decreased the body weight, testicular weight and testis volume, semen quality and testicular cell count (p<0.05). Furthermore, MDA content in the testicular tissue of the As2O3 group rats was significantly higher in comparison to the vehicle group (p<0.05). Likewise, TAS and the activities of GSH-Px, CAT and SOD were reduced (p<0.05) when compared to the control. As(2)O(3) induced testicular damage and seminiferous tubular atrophy. Monodansylcadaverine assays mirrored the histopathology observations. Meanwhile, As2O3 upregulated the expression of mitophagy-related genes including PINK1, Parkin, USP8, LC3-I, Fis1 and Mfn2. The p38 gene, responsible to stress stimuli, was also upregulated by As2O3 administration. Meanwhile, exposure to VB2 led to a significant decrease of the expression levels of mitophagy related genes. Our study revealed that VB2 supplementation protected testicular structures against As2O3-induced injury via a dual inhibition of oxidative changes and a regulation of the PINK1-mediated pathway.

摘要

三氧化二砷(As2O3)中毒及其相关潜在损伤是全球性关注的问题。相反,核黄素(维生素 B2,VB2)作为黄素蛋白的组成部分,可能在精子发生的酶反应中发挥重要作用。因此,本研究旨在探索 VB2 在 As2O3 损伤毒性中的潜在有益作用。大鼠随机分为 4 组(n=8/组),并进行如下处理(连续 30 天):第 1 组给予生理盐水;第 2 组给予 3mg As2O3/L;第 3 组给予 40mg VB2/L;第 4 组给予 3mg As2O3/L+40mg VB2/L。As2O3 和 VB2 均溶解在去离子水中。评估血清和睾丸组织中的丙二醛(MDA)、谷胱甘肽过氧化物酶(GSH-Px)、超氧化物歧化酶(SOD)和过氧化氢酶(CAT)以评估氧化谱,同时评估总抗氧化状态(TAS)水平以评估抗氧化系统。P<0.05 被认为具有统计学意义。结果表明,As2O3 显著降低了大鼠的体重、睾丸重量和睾丸体积、精液质量和睾丸细胞计数(p<0.05)。此外,与对照组相比,As2O3 组大鼠睾丸组织中的 MDA 含量显著升高(p<0.05)。同样,与对照组相比,TAS 以及 GSH-Px、CAT 和 SOD 的活性降低(p<0.05)。As(2)O(3)诱导睾丸损伤和生精小管萎缩。单丹磺酰尸胺测定反映了组织病理学观察结果。同时,As2O3 上调了包括 PINK1、Parkin、USP8、LC3-I、Fis1 和 Mfn2 在内的自噬相关基因的表达。p38 基因,负责应激刺激,也被 As2O3 给药上调。同时,VB2 的暴露导致自噬相关基因的表达水平显著降低。我们的研究表明,VB2 补充通过双重抑制氧化变化和调节 PINK1 介导的途径来保护睾丸结构免受 As2O3 诱导的损伤。

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