Abstract
Effect of exogenous phosphocreatine on exhaustive exercise mice
  
DOI:
EN KeyWords: phosphocreatine  exhaustion swimming  serum  SOD  MDA
Fund Project:武汉市卫生局科研项目[武卫(2011)99号]
作者单位
姜茜 大连医科大学检验医学院2009级,辽宁 大连 116027 
刘艳环 山东理工大学体育学院山东 淄博 255049 
刘丽红 大连医科大学运动医学教研室,辽宁 大连 116027 
殷林波 大连医科大学检验医学院2009级,辽宁 大连 116027 
马集 大连医科大学检验医学院2009级,辽宁 大连 116027 
卢畅 大连医科大学检验医学院2009级,辽宁 大连 116027 
阎萍 大连医科大学运动医学教研室,辽宁 大连 116027 
马国栋 山东理工大学体育学院山东 淄博 255049 
刘彦娜 大连医科大学运动医学教研室,辽宁 大连 116027 
刘克敏 大连医科大学运动医学教研室,辽宁 大连 116027 
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EN Abstract:
  Objective:To observe the influence of exogenous phosphocreatine on exhaustive exercise mice,and research the mechanism of antifatigue.Methods:The method of mice weight-loading swimming was used to set up the model of exhaustive exercise.The mice were divided into group of exhaustion with medicine as group A,group of exhaustion without medicine as group B,group of swimming for 8 min without medicine as group C,and group of swimming for 8 min with medicine as group D.Twenty min before the experiment,mice in the groups A and D were intraperitoneally injected with creatine phosphate sodium by the standard of 1000mg/kg,and those in the groups B and C were intraperitoneally injected with the same volume of normal saline.The exhaustive swimming experiment was conducted on the loading weight with 6% of the weight of each mouse.Serum SOD activity and MDA content were determined by using biochemistry colorimetry,and the exhaustive time was recorded.Results:The SOD activity in groups A,C and D was stronger than in group B (P<0.05,0.01),and stronger in group D than in group A(P<0.05).The MDA content in group B was higher than in group C(P<0.01),and higher in group A than in group D(P<0.05).The time from swimming to exhaustion in group B was significantly shorter than in group A(P<0.05).Conclusion:The mechanism by which exogenous phosphocreatine strengthens the ability of organisms to fight against fatigue may be related to the enhancement of SOD activity and reduction of MDA content,which improves the organism's ability to resist fatigue by enhancing the removal of the free radicals.
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