Title of article :
Low Concentrations of Hydrogen Peroxide Improve Post-ischaemic Metabolic and Functional Recovery in Isolated Perfused Rat Hearts
Author/Authors :
Anna-Catharina Hegstad، نويسنده , , Olaf H Antonsen، نويسنده , , Kirsti Ytrehus، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1997
Pages :
9
From page :
2779
To page :
2787
Abstract :
The aim of the present study was to test the hypothesis that low concentrations of hydrogen peroxide (H2O2) have a beneficial effect on post-ischaemic myocardial recovery. Functional and metabolic measurements were performed in isolated buffer-perfused rat hearts exposed to 30 min perfusion with 0 (control group A), 25, 50, 100 or 200μ H2O2or 30 min global ischaemia followed by 30 min reperfusion with 0 (control group B), 25, 50 or 100μ H2O2. Catalase (200 U/ml) was added as scavenger during reperfusion with 25μ H2O2. Non-ischaemic perfusion: All concentrations of H2O2induced an immediate vasodilatation, which was maintained in the 50μ group, but it was followed by vasoconstriction in the 100 and 200μ group. Left ventricular developed pressure (LVDP) was significantly increased at the end of perfusion in the 50μ group compared to the control group. Exposure to 100 and 200μm H2O2significantly decreased LVDP and increased end-diastolic pressure. ATP was reduced in the 100μ group. Post-ischaemic perfusion: Exposure to 25μ H2O2caused improved coronary flow during the first 20 min of reperfusion compared to the control group (accumulated coronary flow; 235.5 ± 10.8v172.7 ± 8.6 ml). LVDP was significantly higher in the 25μ group compared to the control (59.8 ± 10.2v22.1 ± 7.3 mmHg), and end-diastolic pressure was significantly lower (32.1 ± 19.6v78.8 ± 2.2 mmHg) at the end of reperfusion. Improved recovery was not observed in the group exposed to 25μ H2O2plus catalase. Treatment with 25μ H2O2caused significantly improved recovery of tissue ATP and creatine phosphate. In conclusion, the present study showed that exposure to 25μ H2O2improved post-ischaemic recovery in hearts subjected to global ischaemia.
Keywords :
ATP , Coronary flow , creatine phosphate , free radicals , hydrogen peroxide , ischaemia , Isolatedrat hearts , left ventricular developed pressure , nucleotides , oxygen radicals , Reperfusion.
Journal title :
Journal of Molecular and Cellular Cardiology
Serial Year :
1997
Journal title :
Journal of Molecular and Cellular Cardiology
Record number :
525831
Link To Document :
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