首页> 美国卫生研究院文献>Frontiers in Pharmacology >Potential Protective Effects of Ursolic Acid against Gamma Irradiation-Induced Damage Are Mediated through the Modulation of Diverse Inflammatory Mediators
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Potential Protective Effects of Ursolic Acid against Gamma Irradiation-Induced Damage Are Mediated through the Modulation of Diverse Inflammatory Mediators

机译:乌索酸对γ射线辐照引起的损伤的潜在保护作用是通过调节多种炎症介质介导的。

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摘要

This study was aimed to evaluate the possible protective effects of ursolic acid (UA) against gamma radiation induced damage both in vitro as well as in vivo. It was observed that the exposure to gamma radiation dose- and time-dependently caused a significant decrease in the cell viability, while the treatment of UA attenuated this cytotoxicity. The production of free radicals including reactive oxygen species (ROS) and NO increased significantly post-irradiation and further induced lipid peroxidation and oxidative DNA damage in cells. These deleterious effects could also be effectively blocked by UA treatment. In addition, UA also reversed gamma irradiation induced inflammatory responses, as indicated by the decreased production of TNF-α, IL-6, and IL-1β. NF-κB signaling pathway has been reported to be a key mediator involved in gamma radiation-induced cellular damage. Our results further demonstrated that gamma radiation dose- and time-dependently enhanced NF-κB DNA binding activity, which was significantly attenuated upon UA treatment. The post-irradiation increase in the expression of both phospho-p65, and phospho-IκBα was also blocked by UA. Moreover, the treatment of UA was found to significantly prolong overall survival in mice exposed to whole body gamma irradiation, and reduce the excessive inflammatory responses. Given its radioprotective efficacy as described here, UA as an antioxidant and NF-κB pathway blocker, may function as an important pharmacological agent in protecting against gamma irradiation-induced injury.
机译:这项研究旨在评估熊果酸(UA)在体外和体内对伽马辐射诱导的损伤的可能的保护作用。观察到暴露于γ射线剂量和时间依赖性导致细胞活力的显着降低,而UA的治疗减弱了这种细胞毒性。辐照后自由基(包括活性氧(ROS)和NO)的产生显着增加,并进一步诱导细胞中脂质过氧化和氧化DNA损伤。这些有害作用也可以通过UA治疗有效地阻止。此外,UA还可逆转γ辐射诱导的炎症反应,这可通过TNF-α,IL-6和IL-1β的产生减少来表明。据报道,NF-κB信号通路是γ射线诱导的细胞损伤的关键介体。我们的结果进一步证明,γ射线剂量和时间依赖性增强了NF-κBDNA结合活性,这在UA治疗后显着减弱。辐照后磷酸化-p65和磷酸化-IκBα的表达均被UA阻断。此外,发现UA的治疗可显着延长暴露于全身伽马射线照射的小鼠的整体存活,并减少过度的炎症反应。鉴于此处所述的放射防护功效,UA作为抗氧化剂和NF-κB途径阻滞剂,可以作为重要的药理剂来保护免受γ射线引起的伤害。

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