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脑红蛋白在内毒素休克大鼠模型中的表达变化
引用本文:刘超,孙善全,余剑波,徐瑲,陈海,李红岩,高宝兵. 脑红蛋白在内毒素休克大鼠模型中的表达变化[J]. 医学争鸣, 2009, 30(9): 781-784
作者姓名:刘超  孙善全  余剑波  徐瑲  陈海  李红岩  高宝兵
作者单位:重庆医科大学,神经生物学实验室,重庆,400016;天津南开医院麻醉科,天津,300100;重庆医科大学,神经生物学实验室,重庆,400016;天津南开医院麻醉科,天津,300100;重庆医科大学,基础医学研究所,重庆,400016
基金项目:国家自然科学基金面上项目 
摘    要:目的:探讨内毒素休克模型大鼠海马、脑脊液、血浆脑红蛋白(Ngb)的表达变化及其意义.方法:选用SD大鼠70只,随机分为7组(n=10):对照组,经尾静脉注入0.5mL生理盐水;内毒素干预3,6,12,24,48,72h不同时间点组,经大鼠尾静脉注射0.5mL革兰氏阴性菌胞壁脂多糖(LPS),0.016g/kg,制作内毒素休克模型.对照组注射生理盐水后6h、内毒素干预不同时间点各组分别注射LPS后,于3,6,12,24,48,72h收集血浆、脑脊液,并处死大鼠留取海马.应用酶联免疫吸附法、免疫印迹法、免疫组织化学法检测标本中Ngb含量;应用干燥法检测海马组织含水量.结果:注射内毒素后,大鼠海马、脑脊液、血浆中Ngb含量显著高于对照组(P〈0.01),48h达峰值,分别为34.89,22.01,14.01mg/L.免疫印迹法结果显示,内毒素干预不同时间点各组表达Mr均为17×103Ngb蛋白,Ngb蛋白表达量也显著高于对照组.注射内毒素后大鼠脑海马组织含水量明显高于对照组(P〈0.01),48h含水量达峰值为0.8313.结论:Ngb表达量的上调与大鼠脑损害严重程度成正相关,其过度表达是全身性的,与内毒素处理的时程密切相关,Ngb表达上调可能是在内毒素休克状态下机体的内源性神经保护机制之一.

关 键 词:脑红蛋白  内毒素休克  脂多糖

Change of neuroglobin in rats during endotoxic shock
LIU Chao,SUN Shan-Quan,YU Jian-Bo,XU Qiang,CHEN Hai,LI Hong-Yan,GAO Bao-BingLaboratory of Neurobiology. Change of neuroglobin in rats during endotoxic shock[J]. Negative, 2009, 30(9): 781-784
Authors:LIU Chao  SUN Shan-Quan  YU Jian-Bo  XU Qiang  CHEN Hai  LI Hong-Yan  GAO Bao-BingLaboratory of Neurobiology
Affiliation:LIU Chao1,3,SUN Shan-Quan1,YU Jian-Bo3,XU Qiang2,CHEN Hai1,LI Hong-Yan1,GAO Bao-Bing11Laboratory of Neurobiology,2Institute of Basic Medical Sciences,Chongqing Medical University,Chongqing 400016,China,3Department of Anesthesiology,Nankai Hospital of Tianjin,Tianjin 300100
Abstract:AIM:To study the changes and significance of neuroglobin(Ngb) expression in hippocampus, cerebrospinal fluid(CSF) and plasma in rats under endotoxic shock condition. METHODS: Seventy adult Sprague-Dawley(SD) rats were randomly divided into control group (0.5 mL normal saline was injected via vena caudalis)and experimental groups (0.5 mL endotoxin was injected via vena caudalis, 0.016 g/kg). The brain tissues were examined respectively at the time point of 3, 6, 12, 24, 48 and 72 h(n=10). The expression of N...
Keywords:neuroglobin  endotoxic shock  lipopoly saccharid  
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