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EFFECT OF PREOPERATIVE GLUTAMINE ADMINISTRATION ON ICAM-1 EXPRESSION IN RAT LUNG INDUCED BY INTESTINAL ISCHEMIA-REPERFUSION
引用本文:耿桂启 姜虹 朱也森. EFFECT OF PREOPERATIVE GLUTAMINE ADMINISTRATION ON ICAM-1 EXPRESSION IN RAT LUNG INDUCED BY INTESTINAL ISCHEMIA-REPERFUSION[J]. 上海第二医科大学学报, 2008, 20(1): 32-37
作者姓名:耿桂启 姜虹 朱也森
作者单位:Department of Anesthesiology, the Ninth People's Hospital, School of Medicine, Shanghai Jiaotong University, Shanghai200011, China
摘    要:Objective To evaluate the effect of preoperative glutamine administration on intracellular adhesion molecule-1 (1CAM-l) expression in rat lung induced by intestinal ischemia-reperfusion( I/R). Methods Sprague-Dawley rats (n = 25) were randomly divided into 5 groups: sham group (sham surgery), glutamine groups (three different doses) and control group. All groups except sham were subjected to intestinal 1/R injury, and superior mesenteric artery (SMA) occluded for 60 min followed by 90 min of reperfusion. Lung injury was evaluated with Evans blue dye concentration and histopathologic examination. The immunohistochemical expression and mRNA expression of 1CAM-1 were measured with immunohistochemical staining and RT-PCR method respectively. The level of myeloperoxidase (MPO) was also measured with biochemistry method. Results Intestinal 1/R resulted in lung injury characterized by an increase in Evans blue dye concentration, neutrophil sequestration, and obvious staining for expression of pulmonary 1CAM-l, compared with sham group. The expression of 1CAM-1 and the level of MPO in rat lung were lower in glutamine groups compared with control group. Conclusion 1-R injury increases the expression of 1CAM-1 within the lung. This may contribute to the migration, accumulation and activation of polymorphonuclear neutrophils (PAINs) after such injury. Preoperative glutamine administration attenuates rat lung injury induced by intestinal I-R, and inhibiting 1CAM-1 expression maybe one of the potential mechanisms.

关 键 词:肺损伤  细胞内粘合分子  谷氨酸盐  肠缺血

EFFECT OF PREOPERATIVE GLUTAMINE ADMINISTRATION ON ICAM-1 EXPRESSION IN RAT LUNG INDUCED BY INTESTINAL ISCHEMIA-REPERFUSION
GENG Gui-qi,JIANG Hong,ZHU Ye-sen. EFFECT OF PREOPERATIVE GLUTAMINE ADMINISTRATION ON ICAM-1 EXPRESSION IN RAT LUNG INDUCED BY INTESTINAL ISCHEMIA-REPERFUSION[J]. Journal of Shanghai Second Medical University(Foreign Language Edition), 2008, 20(1): 32-37
Authors:GENG Gui-qi  JIANG Hong  ZHU Ye-sen
Affiliation:Department of Anesthesiology, the Ninth People's Hospital, School of Medicine, Shanghai Jiaotong University, Shanghai200011, China
Abstract:Objective To evaluate the effect of preoperative glutamine administration on intracellular adhesion molecule-1 (ICAM-1) expression in rat lung induced by intestinal ischemia-reperfusion( I/R ). Methods Sprague-Dawley rats (n = 25) were randomly divided into 5 groups: sham group ( sham surgery), glutamine groups (three different doses) and control group. All groups except sham were subjected to intestinal I/R injury, and superior mesenteric artery (SMA) occluded for 60 min followed by 90 min of reperfusion. Lung injury was evaluated with Evans blue dye concentration and histopathologic examination. The immunohistochemical expression and mRNA expression of ICAM-1 were measured with immunohistochemical staining and RT-PCR method respectively. The level of myeloperoxidase (MPO) was also measured with biochemistry method. Results Intestinal I/R resulted in lung injury characterized by an increase in Evans blue dye concentration, neutrophil sequestration, and obvious staining for expression of pulmonary ICAM-1, compared with sham group. The expression of ICAM-1 and the level of MPO in rat lung were lower in glutamine groups compared with control group. Conclusion I-R injury increases the expression of ICAM-1 within the lung. This may contribute to the migration, accumulation and activation of polymorphanuclear neutrophils (PMNs) after such injury. Preoperative glutamine administration attenuates rat lung injury induced by intestinal I-R, and inhibiting ICAM-1 expression maybe one of the potential mechanisms.
Keywords:lung injury  intracellular adhesion molecule-1  glutamine  intestinal ischemia-reperfusion
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