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서지반출
Role of Oxidative Stress in the Radiation-Induced Lung Pathogenesis in Mice
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  • Role of Oxidative Stress in the Radiation-Induced Lung Pathogenesis in Mice
  • Role of Oxidative Stress in the Radiation-Induced Lung Pathogenesis in Mice
저자명
Park. Eun-Mi,Park. Ji-Sun,Kim. Yun-Jeong,Sung. Jae-Suk,Hwamg. Tea-Sook,Kim. Woo-Chul,Han. Mi-Young,Park. Young-Mee
간행물명
Journal of biochemistry and molecular biology
권/호정보
2001년|34권 6호|pp.544-550 (7 pages)
발행정보
생화학분자생물학회
파일정보
정기간행물|ENG|
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기타
이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
서지반출

기타언어초록

In pre-transplant total-body irradiation (TBI), the lung is a critical dose-limiting organ. Also, the possible role of oxidative stress was suggested in the development of TBI-induced lung damage. This study explores the association between TBI-induced oxidative stress and the induction of lung pathogenesis by investigating TBI-induced oxidative stress in the lungs of male C57BL/6 mice after a single dose of 10 Gy TBI. We showed significant increases of reactive oxygen species (ROS) formation and lipid peroxidation, and also a depletion and oxidation of glutathione after TBI. There is evidence that pretreatment with 1,10-phenanthroline (o-phen) significantly reduces oxidative stress in the lung. This indicates that the TBI-induced ROS generation involves a metal-catalyzed Fenton-type reaction. A pretreatment of buthionine sulfoximine (BSO) augmented the glutathione depletion and oxidation, but had no effect on the ROS formation and lipid peroxidation up to 6 h after TBI. Histopathological features that are consistent with pneumonitis were observed in the BSO pretreated-mice 1 week after irradiation. The results suggest that TBI-induced oxidative stress in the lung involves a generation of ROS through a Fenton-type reaction. Also, glutathione plays an important inhibitory role in the radiation-induced lung pathogenesis by participating in the self-amplifying cascade subsequent to the ROS generation by irradiation.