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苯吸入染毒大鼠致多组织器官氧化损伤作用
引用本文:杨丹凤,袭著革,晁福寰,张华山,刘焕亮.苯吸入染毒大鼠致多组织器官氧化损伤作用[J].中国公共卫生,2005,21(7):795-796.
作者姓名:杨丹凤  袭著革  晁福寰  张华山  刘焕亮
作者单位:军事医学科学院卫生学环境医学研究所环境卫生学研究室,天津,300050
基金项目:国家十五科技攻关课题(2001BA704B01),国家科技部社会公益基金课题(2001DIA10001)
摘    要:目的研究气态苯(106mg/m3)吸入染毒大鼠致组织器官氧化损伤作用,探讨苯对机体的脂质过氧化作用及机体的抗氧化损伤机制。方法通过建立气态苯动式吸入染毒大鼠的实验动物模型,连续染毒7d,每天4h;染毒结束后,采用分光光度法测定各组织器官(肺、脑、肝和外周血)中还原型谷胱甘肽(GSH)含量、谷胱甘肽过氧化物酶(GSHPX)活力、超氧化物歧化酶(SOD)活性及脂质过氧化产物丙二醛(MDA)含量。结果苯吸入组大鼠肺、肝、脑组织及外周血均表现不同程度的氧化损伤,其中大鼠肺组织SOD活力,肝组织GSHPX和MDA及脑组织的MDA含量与对照组比较差异均有统计学意义(P<0.05),外周血GSH、GsHPx和MDA及TS0D水平与对照组比较也表现增加趋势。结论推测苯可诱发大鼠机体发生一系列的氧化应激损伤,并且具有多器官性的特点。

关 键 词:氧化损伤作用  组织器官  染毒大鼠  谷胱甘肽过氧化物酶(GSH-PX)  超氧化物歧化酶(SOD)  丙二醛(MDA)  脂质过氧化作用  还原型谷胱甘肽  脂质过氧化产物    实验动物模型  GsH-Px  氧化应激损伤  分光光度法  SOD活力  大鼠肺组织
文章编号:1001-0580(2005)07-0795-02
修稿时间:2004年10月28

Oxidation damage of benzene inhalation on multiple organs in rats
YANG Danfeng,XI Zhuge,CHAO Fuhuan,et al..Oxidation damage of benzene inhalation on multiple organs in rats[J].Chinese Journal of Public Health,2005,21(7):795-796.
Authors:YANG Danfeng  XI Zhuge  CHAO Fuhuan  
Institution:YANG Danfeng,XI Zhuge,CHAO Fuhuan,et al.Institute of Health and Environmental Medicine,Academy of Military Medical Science
Abstract:Objective To study the possible mechanisms of oxidative damages in rat multiple organs induced by gaseous benzene.Methods The mold of benzene inhalation in rats was built.The dose of inhalation was (106?mg/m~3) and the peirod was consecutive 7 days ((4?h/d)).After the inhalation toxicological experiment,the factors of oxidative damage of lung,brain,liver and peripheral blood were determined.Results Benzene inhalation caused the significant increase of the activity of superoxide dismutase(SOD)in lung,the activity of GSH-Px and the concentration of malonyl dialdehyde(MDA)in liver and the MDA in brain.At the same time,the level of reduced glutathione(GSH),GSH-PX,MDA and SOD in peripheral blood had the trend of increase.Conclusion Benzene may induce a series of oxidative damage in the body of the rat,and has the character of multiple organs.
Keywords:benzene  oxidative damage  inhale toxicity
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