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Heat-killed Salmonella Typhimurium protects mice against carbon ion radiation

机译:热杀死<斜斜体>沙门氏菌施鼠保护小鼠免受碳离子辐射

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Objective Patients receiving carbon-ion radiation therapy and astronauts exploring outer space are inevitably exposed to heavy ion radiation. The aim of this study was to develop radioprotectors to minimize the injuries induced by carbon ion radiation. Methods Heat-killed Salmonella Typhimurium (HKST) was administered to mice by gavage prior to irradiation with a ~(12)C ~(6+) heavy ion accelerator. Hematoxylin and eosin staining and immunofluorescence TdT-mediated dUTP Nick-End Labeling staining were used to assess the radioprotective effect of HKST on organ damage and levels of apoptosis, respectively, in mice. To investigate the mechanism underlying the radioprotective effect of HKST, levels of the pro-apoptotic proteins BAX and caspase 3 as well as interferon-regulatory factor (IRF) 3/7 in the femur, testis and intestine were assessed using immunofluorescence. Results Injuries induced by carbon ion radiation were significantly eased by pretreatment with HKST. Both apoptosis and high expression levels of pro-apoptotic proteins induced by heavy ion radiation were inhibited by HKST pretreatment. The radioprotective effect of HKST was associated with stimulation of Toll-like receptor signaling mediated by enhanced IRF3 and IRF7 signaling. Conclusion HKST was an effective radioprotector alleviating damage to multiple organs caused by heavy ion radiation.
机译:接受碳离子辐射治疗和宇航员探索外层空间的目的患者不可避免地暴露于重离子辐射。本研究的目的是开发辐射防护剂,以最小化碳离子辐射诱导的损伤。方法通过〜(12)C〜(6 +)重离子促进剂在照射之前通过饲料施用热杀死的沙门氏菌(HKST)。血杂志和曙红染色和免疫荧光TDT介导的DUTP缩乳末端标记染色用于评估HKST在小鼠中对器官损伤和细胞凋亡水平的放射性保护作用。为了研究HKST的放射性保护作用的基础,使用免疫荧光评估股骨,睾丸和肠道中促凋亡蛋白Bax和Caspase 3以及干扰素调控因子(IRF)3/7的机制。通过HKST预处理显着减轻了碳离子辐射诱导的损伤。通过HKST预处理抑制了由重离子辐射诱导的促凋亡蛋白的细胞凋亡和高表达水平。 HKST的辐射保护作用与通过增强的IRF3和IRF7信号传导介导的Toll样受体信号传导的刺激相关。结论HKST是一种有效的辐射防护剂,减轻了对重离子辐射引起的多个器官的损伤。

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