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September 1, 1995AJP Heart and Circulatory Physiology110 citations

Inhibition of the creatine kinase reaction decreases the contractile reserve of isolated rat hearts

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BHBaron L. HammanJBJohn A. BittlWJWilliam E. Jacobus

Key Result

Inhibition of creatine kinase to <2% of control activity by iodoacetamide reduced the contractile reserve of isolated rat hearts by approximately 50%.

Structured PICO

P
Population
Isolated perfused rat hearts (n=18: n=7 for hypercalcemic buffer perfusion, n=6 for norepinephrine infusion, n=5 for hypoxic buffer perfusion)
I
Intervention
Iodoacetamide (IA) exposure to chemically inhibit creatine kinase (CK) activity
C
Comparator
Control hearts (uninhibited CK activity)
O
Outcome
Cardiac performance (end-diastolic pressure, left ventricular developed pressure, and heart rate) under physiological and acute stress conditionssurrogate

Inhibition of creatine kinase activity significantly reduces contractile reserve during acute stress in isolated rat hearts, demonstrating its essential role in myocardial performance.

Abstract

To define the relation between phosphoryl transfer via creatine kinase (CK) and the ability of the intact beating heart to do work, we chemically inhibited CK activity and then measured cardiac performance under physiological and acute stress conditions. Isolated perfused rat hearts were exposed to iodoacetamide (IA) and subjected to one of three cardiac stresses: hypercalcemic (Ca2+ = 3 mM) buffer perfusion (n = 7), norepinephrine (2 mumol/min) infusion (n = 6), or hypoxic buffer perfusion (n = 5). IA decreased CK activity to near zero, measured in intact hearts by 31P magnetization transfer, and to 2% of control CK activity, measured in myocardial homogenates. The CK isoenzyme profile was unchanged, suggesting nonselective IA inhibition of all isoenzymes. Mitochondria isolated from IA-treated hearts had normal ADP:O ratios, state 3 respiratory rates, and unchanged acceptor and respiratory control ratios. Neither actomyosin adenosinetriphosphatase nor adenylate kinase activities were changed. After IA exposure, end-diastolic pressure, left ventricular developed pressure, and heart rate were unchanged for at least 30 min at physiological perfusion pressures, but large changes were observed during stress conditions. The increase in left ventricular developed pressure induced by hypercalcemic perfusion and by norepinephrine infusion decreased by 39 and 54%, respectively. During hypoxia, the rate of phosphocreatine depletion was decreased by 57%, left ventricular developed pressure declined, and end-diastolic pressure increased faster than in controls. These results show that inhibition of CK to < 2% of control activity by IA reduced contractile reserve by approximately 50%. We conclude that CK activity is essential for the expression of the full dynamic range of myocardial performance.

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Cite This Study

Hamman et al. (1995) studied Isolated rat hearts (n=18). Iodoacetamide (IA) vs. Control was evaluated on Contractile reserve (left ventricular developed pressure during stress). Inhibition of creatine kinase to <2% of control activity by iodoacetamide reduced the contractile reserve of isolated rat hearts by approximately 50%.

synapsesocial.com/papers/6a12fc968f1bac20a09ea7aahttps://doi.org/10.1152/ajpheart.1995.269.3.h1030
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