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首页> 外文期刊>Radiation oncology >Administration of ON 01210.Na after exposure to ionizing radiation protects bone marrow cells by attenuating DNA damage response
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Administration of ON 01210.Na after exposure to ionizing radiation protects bone marrow cells by attenuating DNA damage response

机译:暴露于电离辐射后施用ON 01210.Na可通过减弱DNA损伤反应来保护骨髓细胞

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Background Ionizing radiation-induced hematopoietic injury could occur either due to accidental exposure or due to diagnostic and therapeutic interventions. Currently there is no approved drug to mitigate radiation toxicity in hematopoietic cells. This study investigates the potential of ON 01210.Na, a chlorobenzylsulfone derivative, in ameliorating radiation-induced hematopoietic toxicity when administered after exposure to radiation. We also investigate the molecular mechanisms underlying this activity. Methods Male C3H/HeN mice (n = 5 mice per group; 6-8 weeks old) were exposed to a sub-lethal dose (5 Gy) of γ radiation using a 137Cs source at a dose rate of 0.77 Gy/min. Two doses of ON 01210.Na (500 mg/kg body weight) were administered subcutaneously at 24 h and 36 h after radiation exposure. Mitigation of hematopoietic toxicity by ON 01210.Na was investigated by peripheral white blood cell (WBC) and platelet counts at 3, 7, 21, and 28 d after radiation exposure. Granulocyte macrophage colony forming unit (GM-CFU) assay was done using isolated bone marrow cells, and terminal deoxynucleotidyl transferase dUTP nick end-labeling (TUNEL) was performed on bone marrow sections at 7 d post-exposure. The DNA damage response pathway involving ataxia telangiectasia mutated (ATM) and p53 was investigated by Western blot in bone marrow cells at 7 d post-exposure. Results Compared to the vehicle, ON 01210.Na treated mice showed accelerated recovery of peripheral WBC and platelet counts. Post-irradiation treatment of mice with ON 01210.Na also resulted in higher GM-CFU counts. The mitigation effects were accompanied by attenuation of ATM-p53-dependent DNA damage response in the bone marrow cells of ON 01210.Na treated mice. Both phospho-ATM and phospho-p53 were significantly lower in the bone marrow cells of ON 01210.Na treated than in vehicle treated mice. Furthermore, the Bcl2:Bax ratio was higher in the drug treated mice than the vehicle treated groups. Conclusions ON 01210.Na treatment significantly mitigated the hematopoietic toxicity induced by a sub-lethal radiation dose. Mechanistically, attenuation of ATM-p53 mediated DNA damage response by ON 01210.Na is contributing to the mitigation of radiation-induced hematopoietic toxicity.
机译:背景技术电离辐射引起的造血损伤可能是由于意外暴露或由于诊断和治疗干预而发生的。当前没有批准的药物来减轻造血细胞的辐射毒性。本研究调查了氯苄基砜衍生物ON 01210.Na在暴露于放射线后改善放射线引起的造血毒性的潜力。我们还调查了这项活动的分子机制。方法使用 137 Cs来源的剂量将雄性C3H / HeN小鼠(每组5只小鼠; 6-8周龄)暴露于亚致死剂量(5 Gy)的γ射线中速度为0.77 Gy / min。放射线照射后24小时和36小时皮下注射两次剂量的ON 01210.Na(500 mg / kg体重)。用ON 01210.Na减轻造血毒性,用放射线照射后第3、7、21和28天时的外周血白细胞(WBC)和血小板计数进行研究。暴露后7 d,使用分离的骨髓细胞进行粒细胞巨噬细胞集落形成单位(GM-CFU)测定,并在骨髓切片上进行末端脱氧核苷酸转移酶dUTP缺口末端标记(TUNEL)。暴露后7 d,通过Western blot研究涉及共济失调毛细血管扩张突变(ATM)和p53的DNA损伤反应途径。结果与媒介物相比,ON 01210.Na处理的小鼠显示出外周白细胞和血小板计数的加速恢复。用ON 01210.Na照射小鼠后,也导致更高的GM-CFU计数。缓解作用伴随着ON 01210.Na处理的小鼠骨髓细胞中ATM-p53依赖性DNA损伤反应的减弱。在ON 01210.Na处理的骨髓细胞中,磷酸ATM和磷酸化p53均显着低于媒介物处理小鼠。此外,在药物治疗的小鼠中,Bcl2:Bax比与溶媒治疗组相比更高。结论ON 01210.Na处理可显着减轻亚致死剂量辐射引起的造血毒性。从机理上讲,ON 01210.Na减弱了ATM-p53介导的DNA损伤反应,这有助于减轻辐射引起的造血毒性。

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