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首页> 外文期刊>High Altitude Medicine & Biology >Electron Paramagnetic Resonance Spectroscopic Evidence of Increased Free Radical Generation and Selective Damage to Skeletal Muscle Following Lightning Injury
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Electron Paramagnetic Resonance Spectroscopic Evidence of Increased Free Radical Generation and Selective Damage to Skeletal Muscle Following Lightning Injury

机译:电子顺磁共振光谱法证明雷击后自由基产生增加和骨骼肌选择性损伤

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Bailey, Damian M., Peter Bartsch and Mary Ann Cooper. Electron paramagnetic resonance spec-troscopic evidence of increased free-radical generation and selective damage to skeletal muscle following lightning injury. High Alt Med Biol 4:281-289, 2003.╚DThe present case study examined changes in peripheral markers of free radical metabolism and skeletal/myocardial muscle damage 30 h after a mountaineer had survived a lightning storm, having experienced contact with what was considered to be "upward leaders" at 4200 m. Sea-level control data were available between 3 and 8 weeks prior to the altitude sojourn for comparative purposes. Follow-up measurements were obtained for the same individual 3 weeks following the incident after simulated exposure to the combined stresses of inspiratory hypoxia and physical exercise. Venous blood was assayed for molecular markers of skeletal [myoglobin and total creatine phosphokinase (CPK)] and myocardial [cardiac troponin I (cTnI)] muscle damage. Ex-vivo spin trapping with α-phenyl-fert-butylnitrone (PBN) combined with electron paramagnetic resonance (EPR) spec-troscopy was incorporated for the direct detection of free radicals. The relative increases [post-exposure/preexposure X 100 (%)] in the concentration of the PBN adduct, myoglobin, and CPK in the "lightning blood" were markedly greater than those observed following the simulation study (PBN: 276 vs. 129%; CPK: 1130 vs. 182%; myoglobin: 205 vs. 115%). In contrast, no changes were observed for cTnI. A marked decrease in the PBN adduct, myoglobin, and CPK was observed within 2 h of completing the simulation study, following oral administration of water and lipid-soluble antioxidant vitamins in normoxia. These findings are the first to document lightning-induced free radical generation and selective damage to skeletal muscle in a high altitude mountaineer. Furthermore, free radicals may contribute to the pathogenesis of lightning injury, and dietary supplementation with antioxidant vitamins may prove of some benefit against associated tissue damage.
机译:Bailey,Damian M.,Peter Bartsch和Mary Ann Cooper。电子顺磁共振光谱法证明雷击后自由基的产生增加以及对骨骼肌的选择性损伤。 High Alt Med Biol 4:281-289,2003.?D本案例研究检查了登山者在雷暴中幸存下来30小时并经历了与所认为的接触之后,自由基代谢和骨骼/心肌肌肉损伤的周围标志物的变化在4200 m处成为“向上的领导者”。为了进行比较,在海拔高度停留之前的3至8周之间可获得海平面控制数据。模拟暴露于吸气性缺氧和体育锻炼的综合压力后,在事件发生后3周对同一个人进行了跟踪测量。分析静脉血中骨骼肌[肌红蛋白和总肌酸磷酸激酶(CPK)]和心肌[心肌肌钙蛋白I(cTnI)]肌肉损伤的分子标记。结合了α-苯基-叔丁基丁基亚硝基(PBN)的离体自旋捕获结合电子顺磁共振(EPR)光谱用于直接检测自由基。 “闪电血”中PBN加合物,肌红蛋白和CPK浓度的相对增加[暴露后/暴露前X 100(%)]显着大于模拟研究后观察到的浓度(PBN:276比129) %; CPK:1130对182%;肌红蛋白:205对115%)。相反,未观察到cTnI的变化。在正常研究中口服水和脂溶性抗氧化剂维生素后,在完成模拟研究后2小时内,PBN加合物,肌红蛋白和CPK明显下降。这些发现是第一个记录闪电诱导的自由基生成和对高海拔登山者骨骼肌选择性损伤的文献。此外,自由基可能会导致雷击的发病机理,饮食中添加抗氧化剂维生素可以证明对抵抗相关的组织损伤有一定益处。

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