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Radioprotective properties of tocopherol succinate against ionizing radiation in mice

机译:琥珀酸生育酚对小鼠电离辐射的辐射防护性能

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摘要

Threats of nuclear and other radiologic exposures have been increasing but no countermeasure for acute radiation syndrome has been approved by regulatory authorities. In prior publications we have demonstrated the efficacy of tocopherol succinate (TS) as a promising radiation countermeasure with the potential to protect against lethal doses of ionizing radiation exposure. The aim of this study was to gain further insight regarding how TS protects mice against a lethal dose of radiation. CD2F1 mice were injected subcutaneously with 400 mg/kg of TS, and 24 h later exposed to 60Co γ–radiation. Intestinal tissues or spleen/thymus were harvested after irradiation and analyzed for CD68-positive inflammatory cells and apoptotic cells by immunostaining of jejunal cross-sections. Comet assay was used to analyze DNA damage in various tissues. Phospho-histone H3(pH3) and the proliferating cell nuclear antigen (PCNA) were used as mitotic markers for immunostaining jejunal cross-sections. We observed that injecting TS significantly decreased the number of CD68-positive cells, DNA damage and apoptotic cells (BAX, caspase 3 and cleaved poly(ADP-ribose) polymerase-positive cells) as judged by various apoptotic pathway markers. TS treatment also increased proliferating cells in irradiated mice. Results of this study further support our contention that TS protects mice against lethal doses of ionizing radiation by inhibiting radiation-induced apoptosis and DNA damage while enhancing cell proliferation.
机译:核辐射和其他放射线暴露的威胁一直在增加,但监管机构尚未批准针对急性放射综合症的对策。在先前的出版物中,我们已经证明了生育酚琥珀酸酯(TS)作为一种有前途的辐射对策的功效,并且具有防止致命剂量的电离辐射暴露的潜力。这项研究的目的是获得更多有关TS如何保护小鼠免受致命剂量辐射的见解。 CD2F1小鼠皮下注射400 mg / kg的TS,24小时后暴露于 60 Coγ射线。照射后收集肠道组织或脾/胸腺,并通过空肠横截面的免疫染色分析CD68阳性炎症细胞和凋亡细胞。彗星试验用于分析各种组织中的DNA损伤。磷酸组蛋白H3(pH3)和增殖细胞核抗原(PCNA)被用作免疫染色空肠横断面的有丝分裂标记物。我们观察到,注射TS可以显着减少CD68阳性细胞的数量,DNA损伤和凋亡细胞(BAX,胱天蛋白酶3和裂解的聚(ADP-核糖)聚合酶阳性细胞),这是通过各种凋亡途径标记判断的。 TS处理还增加了辐射小鼠的增殖细胞。这项研究的结果进一步支持了我们的观点,即TS通过抑制辐射诱导的细胞凋亡和DNA损伤,同时增强细胞增殖,从而保护小鼠免受致命剂量的电离辐射的伤害。

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