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白藜芦醇促进了利血平或γ射线处理的大鼠肝肾功能 AMPK/SIRT1/PGC-1α 线粒体通路。

Piceatannol promotes hepatic and renal AMPK/SIRT1/PGC-1α mitochondrial pathway in rats exposed to reserpine or gamma-radiation.

机构信息

Radiation Biology Department, National Center for Radiation Research and Technology, Egyptian Atomic Energy Authority, Cairo, Egypt.

Drug Radiation Research Department, National Center for Radiation Research and Technology, Egyptian Atomic Energy Authority, Cairo, Egypt.

出版信息

Int J Immunopathol Pharmacol. 2021 Jan-Dec;35:20587384211016194. doi: 10.1177/20587384211016194.

Abstract

Human exposure to radio-therapeutic doses of gamma rays can produce late effects, which negatively affect cancer patients' quality of life, work prospects, and general health. This study was performed to explore the role of Piceatannol (PIC) in the process of "mitochondrial biogenesis" signaling pathway as possible management of disturbances induced in stressed animal model(s) either by gamma-irradiation (IR) or administration of reserpine (RES); as a mitochondrial complex-I inhibitor. PIC (10 mg/kg BW/day; orally) were given to rats for 7 days, after exposure to an acute dose of γ-radiation (6 Gy), or after a single reserpine injection (1 g/kg BW; sc). Compared to reserpine or γ-radiation, PIC has attenuated hepatic and renal mitochondrial oxidative stress denoted by the significant reduction in the content of lipid peroxides and NO with significant induction of SOD, CAT, GSH-PX, and GR activities. PIC has also significantly alleviated the increase of the inflammatory markers, TNF-α and IL-6 and apoptotic markers, cytochrome c, and caspase-3. The decrease of oxidative stress, inflammation, and apoptotic responses were linked to a significant amelioration in mitochondrial biogenesis demonstrated by the increased expression and proteins' tissue contents of SIRT1/p38-AMPK, PGC-1α signaling pathway. The results are substantiated by the significant amelioration in mitochondrial function verified by the higher levels of ATP content, and complex I activity, besides the improvement of hepatic and renal functions. Additionally, histopathological examinations of hepatic and renal tissues showed that PIC has modulated tissue architecture after reserpine or gamma-radiation-induced tissue damage. Piceatannol improves mitochondrial functions by regulating the oxidant/antioxidant disequilibrium, the inflammatory and apoptotic responses, suggesting its possible use as adjuvant therapy in radio-therapeutic protocols to attenuate hepatic and renal injuries.

摘要

人体暴露于放射性治疗剂量的伽马射线会产生迟发性效应,这会降低癌症患者的生活质量、工作前景和整体健康状况。本研究旨在探讨白皮杉醇(PIC)在“线粒体生物发生”信号通路中的作用,作为一种可能的管理方法,用于治疗因伽马辐射(IR)或利血平(RES)给药引起的应激动物模型中的紊乱;RES 是一种线粒体复合物 I 抑制剂。将 PIC(10mg/kgBW/天;口服)给予大鼠 7 天,然后暴露于急性剂量的γ辐射(6Gy),或单次给予利血平注射(1g/kgBW;sc)。与利血平或γ辐射相比,PIC 减轻了肝和肾线粒体氧化应激,表现为脂质过氧化物和 NO 含量的显著减少,同时 SOD、CAT、GSH-PX 和 GR 活性显著增加。PIC 还显著减轻了炎症标志物 TNF-α和 IL-6以及凋亡标志物细胞色素 c 和 caspase-3 的增加。氧化应激、炎症和凋亡反应的减少与线粒体生物发生的显著改善有关,这表现在 SIRT1/p38-AMPK、PGC-1α 信号通路的表达和蛋白组织含量增加。线粒体功能的改善得到了证实,通过更高水平的 ATP 含量和复合物 I 活性,以及肝功能和肾功能的改善。此外,肝和肾组织的组织病理学检查表明,PIC 调节了利血平或伽马辐射诱导的组织损伤后的组织结构。PIC 通过调节氧化应激/抗氧化失衡、炎症和凋亡反应来改善线粒体功能,提示其可能作为放射性治疗方案的辅助治疗,以减轻肝和肾损伤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4332/8127740/e07229f1ae21/10.1177_20587384211016194-fig1.jpg

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