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Endogenous basic fibroblst growth factor is a protective factor against myocardial ischemia/reperfusion injury of rats
Authors:JIANG Zhi-sheng  WANG Xiao-hong  FU Min-gui ZHAO Wen  LI Shu-lian  TANG Chao-shu
Institution:Institute of Cardiovascular Research, First Hospital, Beijing Medical University, Beijing 100034, China
Abstract:AIM: To observe the role of exogenous and endogenous basic fibroblst growth factor (bFGF) on myocardial ischemia/reperfusion(I/R) injury of rats.METHODS:bFGF and bFGF antiserum were applied to rat isolated I/R heart. Myocardial function, coronary effluent volume,protein and myoglobin content as well as LDH activity in coronary effluent fluid, myocardial calcium, MDA and ATP concentration as well as PKC, MAPK activity were measured. RESULTS:Compared with control, myocardial function in I/R group significantly decreased. Protein, myoglobin content and LDH activity in coronary effluent liquid as well as myocardial MDA and calcium content increased, while myocardial ATP concentration decreased(all P<0.01). Compared with I/R group, ±LV dp/dtmax in bFGF group increased by 43% and 26%, respectively. LVEDP decreased by 40%. HRr/HRi and B/A augmented by 42% and 20%, respectively. Protein and myoglobin content as well as LDH activity lowered by 29%,30% (all P<0.01) and 33% (P<0.05) respectively. Myocardial MDA and calcium content decreased by 44% and 35%, respectively, while myocardial ATP level as well as PKC and MAPK activity increased by 34%,41% and 10% (all P<0.01), respectively. In bFGF antiserum group, ±LV dp/dtmax were 35% and 38% lower than those in I/R group. LVEDP increased by 93%. HRr/HRi and B/A decreased by 36% and 45%, respectively. Protein and myoglobin content as well as LDH activity augmented by 54%,96% (all P<0.01) and 34% (P<0.05) respectively. Myocardial MDA and calcium content increased by 24% and 50%, respectively, while myocardial ATP level as well as PKC and MAPK activity lowered by 28%,21% and 8% (all P<0.01), respectively. CONCLUSION:Endogenous bFGF is a protective factor against myocardial ischemia/reperfusion injury of rats.
Keywords:Fibroblast growth factor  basic  Heart  Reperfusion injury  Signal transduction  Rats  
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