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氢气对放射损伤的治疗作用(会议资料)

已有 4829 次阅读 2010-6-12 19:15 |个人分类:呼吸氢气|系统分类:科研笔记|关键词:学者| 氢气

这是今年5月的会议,会议中查到两篇氢气相关文章,一是关于氢气治疗机械通气肺损伤的文章,另一就是这个放射损伤的研究。会议资料地址:
 
会议资料也是非常重要的信息来源,特别是对开展类似研究的,不能等到文章发表出来再了解,通过查看会议信息是非常重要的一个查新途径。
[Poster Board # B15] Hydrogen therapy attenuates radiation-induced pulmonary injury in C57/Bl 6 mice through reducing oxidative stress., [Publication Page: A6356]

Y. Terasaki, MD, PhD1, K. Dedong, Ph D1, N. Kuwahara, Ph D1, A. I

shikawa, Ph D1, M. Takahashi, MD1, S. Kunugi, MD, PhD1, I. Ohsawa, MD, PhD2, Y. Fukuda, MD. PhD.1
1Tokyo/JP, 2Kawasaki/JP


RATIONALE: Previous studies indicate that molecular hydrogen (H2) is an efficient antioxidant gas that reaches rapidly across cell membranes and selectively reduces the hydroxyl radical (.OH), the most cytotoxic reactive oxygen species (ROS), and suppresses oxidative stress-induced injury in several organs. Since oxidative injury, especially hydroxyl radical, is implicated in radiation-induced tissue damage to the lung, we studied the effect of H2 as pulmonary radio-protectors in mice. METHODS AND MATERIALS: C57/bl6 female mice received 18Gy single-dose irradiation to the thorax. One cohort also was received the H2 treatment, as being inhaled of 4% H2 gas during irradiation period and drunk H2 containing water (0.8mM H2) after irradiation period. Subgroups were evaluated at variable time-points (1,3,7 days and 3 month post irradiation) for acute and late radiation lung damage. RESULTS: Within 7 days post-irradiation as acute lung damage phase, control irradiated mice had marked accumulated positive cells in bronchial epithelial cells for 8-OH-dG, ssDNA and TUNEL staining as markers for oxidative stress and apoptosis, less seen in irradiated, H2-treated mice. Consistent with these results, reduced malondialdehyde (MDA) levels and reduced expression level of nitrotyrosin, Bax and TGF-beta1 were also seen in lung tissue from irradiated mice with H2 treatment within 7 days post-irradiation, when compared with those of control irradiated mice without H2 treatment by western blotting and MDA assay. At three month post-irradiation, control irradiated mice had lung fibrotic findings as late lung damage, less seen in irradiated mice with H2-treatment by analysis as Ashcroft Score histologically. CONCLUSION: Our results indicate that H2 treatment can reduce oxidative stress in radiation-induced tissue damage to the lung and could be useful therapy for protection in radiation lung injury, owing to its selective reaction with cytotoxic ROS without known toxic side effects.
Am J Respir Crit Care Med 181;2010:A6356


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