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Response of hypertrophied myocardium to ischemia: correlation with biochemical and physiological parameters
Insights
Hypertrophied hearts are more vulnerable to ischemic injury due to lower high-energy phosphate stores. Rapid cardiac arrest and substrate-enhanced cardioplegia may protect these hearts during surgery.
Area of Science:
- Cardiovascular Physiology
- Biochemistry
- Cardiac Surgery
Background:
- Cardiac hypertrophy increases susceptibility to ischemic injury.
- Biochemical responses of hypertrophied myocardium to ischemia require further elucidation.
Purpose of the Study:
- To investigate the relationship between ischemic contracture, high-energy phosphate content, and mitochondrial function in hypertrophied rat hearts during global ischemia.
Main Methods:
- Induction of cardiac hypertrophy via chronic pressure overload in rat hearts.
- Global ischemia was induced, and parameters like ischemic contracture, high-energy phosphate content, and mitochondrial function were measured.
Main Results:
- Hypertrophied hearts developed ischemic contracture significantly faster than normal hearts (5.8 vs. 10.1 minutes).
- Lower high-energy phosphate content was observed in hypertrophied hearts.
- Mitochondrial function was consistently greater in the hypertrophy group.
Conclusions:
- Hypertrophied myocardium is more vulnerable to ischemic injury, independent of flow issues, likely due to depleted high-energy phosphate stores.
- Rapid cardiac arrest and substrate-enriched cardioplegia may be beneficial for protecting hypertrophied hearts during planned ischemia.
Abstract:
The increased susceptibility of hypertrophied hearts to ischemic injury during cardiac operations has long been recognized. Although the imbalances in oxygen supply and demand which may occur with hypertrophy during hypotension, ventricular fibrillation, or reperfusion have been extensively studied, the biochemical response of hypertrophied myocardium to ischemia has not been fully elucidated. In the present investigation, rat hearts in which hypertrophy was induced by chronic pressure overload were used to examine the relationship of the physiological parameter, ischemic contracture, to high-energy phosphate content and mitochondrial function during global ischemia. Hypertrophied hearts developed ischemic contracture after significantly shorter duration of ischemia than did normal hearts (5.8 +/- 0.3 minutes versus 10.1 +/- 0.7 minutes). High-energy phosphate content was lower in hypertrophied hearts at control and at ischemic contracture initiation and completion than in normal hearts, whereas mitochondrial function was consistently greater in the hypertrophy group. This investigation demonstrates that the hypertrophied myocardium, independent of flow-related events, is more vulnerable to ischemic injury than normal myocardium and suggests that the increased susceptibility may result from lower high-energy phosphate stores present at the onset of ischemia. The results emphasize the need for rapid cardiac arrest with the induction of ischemia in hypertrophied myocardium and suggest the potential for increasing myocardial high-energy phosphate content in the hypertrophied ventricle by interventions such as arrested perfusion with substrate containing oxygenated cardioplegic solutions prior to the onset of planned ischemia.