FUNCTIONAL RECOVERY AFTER CORONARY REVASCULARIZATION FOR CHRONIC CORONARY-ARTERY DISEASE IS DEPENDENT ON MAINTENANCE OF OXIDATIVE-METABOLISM

被引:119
|
作者
GROPLER, RJ [1 ]
GELTMAN, EM [1 ]
SAMPATHKUMARAN, K [1 ]
PEREZ, JE [1 ]
MOERLEIN, SM [1 ]
SOBEL, BE [1 ]
BERGMANN, SR [1 ]
SIEGEL, BA [1 ]
机构
[1] WASHINGTON UNIV, SCH MED, DEPT INTERNAL MED, DIV CARDIOVASC, ST LOUIS, MO 63110 USA
关键词
D O I
10.1016/0735-1097(92)90010-K
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Objectives. This study was performed to define the importance of maintenance of oxidative metabolism as a descriptor and determinant of functional recovery after revascularization in patients with left ventricular dysfunction attributable to chronic coronary artery disease. Background. Although myocardial accumulation of F-18-fluorodeoxyglucose indicates the presence of tissue that is metabolically active, it may not identify those metabolic processes required for restoration of myocardial contractility. Experimental studies suggest that, under conditions of ischemia and reperfusion, maintenance of myocardial oxidative metabolism is an important metabolic determinant of the capacity for functional recovery. Methods. In 16 patients positron emission tomography was performed to characterize myocardial perfusion (with (H2O)-O-15, oxidative metabolism (with C-11-acetate) and utilization of glucose (with F-18-fluorodeoxyglucose). Dysfunctional but viable myocardium was differentiated from nonviable myocardium on the basis of assessments of regional function before and after coronary revascularization. To define the importance of coronary revascularization on myocardial perfusion and metabolism, tomography was repeated in 11 patients after revascularization. Results. Before revascularization, perfusion in 24 dysfunctional but viable myocardial segments and 29 nonviable segments averaged 79% and 74%, respectively, of that in 42 normal myocardial segments (both p < 0.01). Dysfunctional but viable myocardium exhibited oxidative metabolism comparable to that in normal myocardium. In contrast, in nonviable myocardium, oxidative metabolism was only 66% of that in normal (p < 0.01) and 69% of that in reversibly dysfunctional myocardium (p < 0.003). Regional utilization of glucose normalized to regional perfusion in dysfunctional but viable myocardium was greater than that in normal myocardium (p < 0.01). However, in both reversibly and persistently dysfunctional myocardium, utilization of glucose normalized to relative perfusion was markedly variable. Conclusions. The results indicate that preservation of oxidative metabolism is a necessary condition for recovery or function after coronary recanalization in patients with chronic coronary artery disease. Consequently, approaches that measure myocardial oxygen consumption, such as dynamic positron emission tomography with C-11-acetate, should facilitate the identification of those patients most likely to benefit from coronary revascularization.
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收藏
页码:569 / 577
页数:9
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