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蜂胶水提液预处理对缺血再灌注大鼠小肠肠系膜微循环的改善作用及机制
引用本文:姚树桐,桑慧,王家富,商战平,李卫红,于凤秀.蜂胶水提液预处理对缺血再灌注大鼠小肠肠系膜微循环的改善作用及机制[J].中国病理生理杂志,2010,26(1):23-27.
作者姓名:姚树桐  桑慧  王家富  商战平  李卫红  于凤秀
作者单位:泰山医学院病理生理学教研室, 山东 泰安 271000
基金项目:泰山医学院重点资助项目 
摘    要:目的:研究蜂胶水提液(WEP)预处理对缺血/再灌注(I/R)大鼠小肠肠系膜微循环的改善作用及其机制。方法:32只雄性Wistar大鼠随机分为假手术(sham)、I/R和WEP(100、200mg/kg)预处理组,以无创动脉夹夹闭肠系膜上动脉建立小肠I/R损伤模型,于再灌注2h时观测肠系膜微循环变化,分别采用Nackel氏分度法和测定小肠湿/干重比来判定肠道损伤水肿情况,酶联免疫吸附(ELISA)法测定血浆可溶性细胞间黏附分子-1(sICAM-1)含量,分光光度计法测定小肠组织髓过氧化酶(MPO)活性。结果:(1)与I/R组比较,WEP预处理组小肠病理变化明显减轻,Nackel氏分度和小肠湿/干重比明显降低(P0.01);(2)WEP明显改善肠系膜微循环血流状态,减轻I/R所致的微动静脉收缩(P0.05)、血流速度减慢(P0.01)和微血管内白细胞贴壁滚动、黏附(P0.01),且明显降低血浆sICAM-1含量(P0.05)和小肠组织MPO活性(P0.01)。结论:蜂胶水提液预处理可改善小肠I/R大鼠肠系膜微循环,其机制可能与抑制ICAM-1介导的中性粒细胞活化有关。

关 键 词:蜂胶水提液  再灌注损伤  肠系膜微循环  胞间黏附分子1  中性白细胞  
收稿时间:2009-4-1
修稿时间:2009-8-13

Ameliorative effect of water extract of propolis preconditioning on mesenteric microcirculation of rats subjected to small intestinal ischemia reperfusion
YAO Shu-tong,SANG Hui,WANG Jia-fu,SHANG Zhan-ping,LI Wei-hong,YU Feng-xiu.Ameliorative effect of water extract of propolis preconditioning on mesenteric microcirculation of rats subjected to small intestinal ischemia reperfusion[J].Chinese Journal of Pathophysiology,2010,26(1):23-27.
Authors:YAO Shu-tong  SANG Hui  WANG Jia-fu  SHANG Zhan-ping  LI Wei-hong  YU Feng-xiu
Institution:Department of Pathophysiology, Taishan Medical College, Taian 271000, China. E-mail: jfwang@ tsmc.edc.cn
Abstract:AIM:To investigate the ameliorative effect of water extract of propolis (WEP) preconditioning on mesenteric microcirculation of rats subjected to small intestinal ischemia reperfusion (I/R). METHODS:Thirty-two male Wistar rats were randomly divided into sham,I/R and WEP (100,200 mg/kg) preconditioning groups. Model of small intestinal I/R injury was made by clamping super mesenteric artery for 45 min followed by 120 min of reperfusion in rats. Mesenteric microcirculation was detected at the end of reperfusi...
Keywords:Water extract of propolis  Reperfusion injury  Mesenteric microcirculation  Intercellular adhesion molecule-1  Neutrophils
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