Jeopardized, blighted, and necrotic myocardium.
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Biomedical subjects
Publications and source records attributed to W E Shell.
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To estimate the ultimate extent of myocardial damage during evolving myocardial infarction in conscious dogs and patients, we analyzed early serum creatine phosphokinase (CPK) changes with nonlinear curve-fitting techniques. In experiments with dogs, serial serum CPK changes were fit to a log-normal function by the least squares method; the extent of the completed infarct was calculated by analysis of observed serum CPK changes and verified by measurement of myocardial CPK depletion 24 h after coronary occlusion. Early prediction of myocardial damage was based on projected serum CPK values from best fit curves based on data obtained during the first 5 h after initial elevation of enzyme activity. The correlation between predicted and observed values was close (r > 0.96, n = 11). In 11 additional conscious animals subjected to coronary occlusion, isoproterenol was administered continuously as soon as damage had been estimated from projected serum CPK values. The extent of the completed infarct was assessed by analysis of all serial serum CPK values and verified by analysis of myocardial CPK depletion 24 h after coronary occlusion. In each experiment the calculated completed infarct size exceeded infarct size projected before administration of isoproterenol (average increase = 44+/-10 [SE]%). When similar calculations were applied in experiments with eight dogs treated with propranolol, myocardial salvage was detected in 50% of the animals. In 30 patients with uncomplicated acute myocardial infarction the extent of the completed infarct, measured by analysis of CPK activity in serum samples obtained every 2 h, was compared with damage estimated from CPK values projected by the best fit log-normal curve derived from data obtained during the first 7 h after the initial serum CPK elevation. The estimate of damage based on early data correlated closely with the extent of infarction calculated from all available serial serum CPK values (r = 0.93, n = 30). Thus, the extent of the completed infarct could be estimated accurately during the early evolution of infarction. In patients with spontaneous extension of infarction manifested by chest pain and electrocardiographic changes, the calculated extent of the completed infarct exceeded that predicted. Conversely, salvage of myocardium, after reduction of myocardial oxygen requirements by administration of trimethaphan, was reflected by reduction of the extent of the calculated completed infarct with respect to that predicted from early serum CPK changes.
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The effects of coronary artery reperfusion 3 hr after coronary occlusion on contractile function and the development of myocardial damage at 24 hr was studied experimentally. In 14 control and 6 reperfused dogs, relationships between epicardial ST segment elevation 15 min after coronary occlusion and myocardial creatine phosphokinase activity (CPK) and histologic appearance 24 hr later were examined. The electrocardiograms were recorded from 10 to 15 sites on the left ventricular epicardium and transmural samples for CPK and histology were obtained from the same sites where epicardial electrocardiograms had been recorded. An inverse relation existed between ST segment elevation (mv) 15 min after occlusion and log CPK activity (IU/ mg of protein) 24 hr later, log CPK = - 0.06ST + 1.26. In dogs subjected to coronary artery reperfusion, there was significantly less CPK depression (log CPK = - 0.01ST + 1.31, [P < 0.01]) than that expected from the control group. In the control group 97% of specimens showing ST segment elevations over 2 mv at 15 min showed abnormal histology 24 hr later. In contrast, in the reperfused group 43% of sites exhibiting elevated ST segment at 15 min showed abnormal histology 24 hr later. In six additional dogs it was shown that the paradoxical movement of the left ventricular wall could be reversed within 1 hr of perfusion. Therefore, by enzymatic and histologic criteria, as well as by functional assessment, coronary artery reperfusion 3 hr after occlusion resulted in salvage of myocardial tissue.
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This study was designed to develop a method for quantitative assessment of infarct size in the conscious animal based on serial changes of serum creatine phosphokinase (CPK) activity. From 11 experiments in which myocardial CPK was injected intravenously in conscious dogs, the average CPK distribution space and average CPK fractional disappearance rate from serum were found to be 11.4% of body weight and 0.48% min respectively. In other experiments, myocardial infarction was produced in 22 conscious dogs by constriction of a left coronary artery snare and serum CPK activity was determined at frequent intervals for 24 hr. Since myocardial CPK depletion reflects infarct size, infarct size was determined directly by analysis of myocardial CPK content in the same animals 24 hr after coronary artery occlusion. CPK released from the infarct was determined from observed changes in serum CPK activity analyzed according to a model taking into account the fraction of CPK released from an infarct and the rates of appearance and disappearance of CPK activity from serum. Infarct size was calculated on the basis of observed changes in serum CPK and compared to infarct size determined directly by analysis of myocardial CPK depletion. Agreement was close and results from all experiments fit the equation: [infarct size (g) determined from serum CPK] = 1.13 x [infarct size (g) determined from myocardial CPK] - 1.3, r = 0.96, n = 22. The method described is useful for accurate assessment of infarct size in the conscious animal and for detection of modification of infarct size produced by pharmacologic interventions.
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