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姜黄和维生素 C 通过调节大鼠模型中 GRP-78/17β-HSD 途径减轻醋酸铅诱导的睾丸萎缩。

Turmeric and vitamin C mitigate testicular atrophy induced by lead diacetate via regulation of GRP-78/17β-HSD pathways in rat's model.

机构信息

Department of Pharmacology and Toxicology, Pharmacy College, King Saud University, Riyadh, Saudi Arabia.

出版信息

Andrologia. 2021 Sep;53(8):e14120. doi: 10.1111/and.14120. Epub 2021 May 24.

DOI:10.1111/and.14120
PMID:34028854
Abstract

Occupational and ecological contacts to lead persist as a universal concern. Lead alters most of the physiological processes via enhancing oxidative stress. Thus, this study was purposed to assess the influence of turmeric (TMRC) and/or vitamin C (VIT-C) on Lead diacetate (Lead diAC)-induced testicular atrophy with an emphasis on oxidative stress, inflammation, BAX/STAR and GRP-78/17β-HSD signalling. Rats were injected with Lead diAC and then treated with TMRC and/or VIT-C orally for 1 week. Lead diAC decreased serum testosterone and testicular glutathione levels. It also decreased superoxide dismutase activity. On the contrary, levels of malondialdehyde, tumour necrosis factor-α, IL-1β and caspase-3 were increased. mRNA levels and protein expressions of GRP-78 and BAX were upregulated, while the expression of both steroidogenic acute regulatory protein and 17β-HSD were downregulated. DNA fragmentation was increased as well. These changes were further confirmed by histopathological findings. Supplementation with TMRC and/or VIT-C ameliorated all of the above parameters. In Conclusion: TMRC or VIT-C specially in combination group prevents Lead diAC testicular damage via reduction of oxidative injury as well as inflammation, downregulation of GRP-78/BAX and upregulation of 17β-HSD and STAR expression as well as improvement in the histological architecture of the testis.

摘要

职业和生态接触仍是普遍关注的问题。铅通过增强氧化应激来改变大多数生理过程。因此,本研究旨在评估姜黄(TMRC)和/或维生素 C(VIT-C)对醋酸铅(Lead diAC)诱导的睾丸萎缩的影响,重点关注氧化应激、炎症、BAX/STAR 和 GRP-78/17β-HSD 信号。大鼠注射 Lead diAC 后,口服 TMRC 和/或 VIT-C 治疗 1 周。Lead diAC 降低了血清睾酮和睾丸谷胱甘肽水平。它还降低了超氧化物歧化酶的活性。相反,丙二醛、肿瘤坏死因子-α、IL-1β 和半胱天冬酶-3 的水平增加。GRP-78 和 BAX 的 mRNA 水平和蛋白表达上调,而类固醇生成急性调节蛋白和 17β-HSD 的表达下调。DNA 片段化也增加了。这些变化通过组织病理学发现得到进一步证实。TMRC 和/或 VIT-C 的补充改善了上述所有参数。总之:TMRC 或 VIT-C,特别是联合组,通过减少氧化损伤以及炎症、下调 GRP-78/BAX 和上调 17β-HSD 和 STAR 表达以及改善睾丸的组织学结构来预防 Lead diAC 睾丸损伤。

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