Response of isolated working hearts to fatty acids and carnitine palmitoyltransferase I inhibition during reduction of coronary flow in acutely and chronically diabetic rats.
- 1 August 1989
- journal article
- research article
- Published by Wolters Kluwer Health in Circulation Research
- Vol. 65 (2) , 378-387
- https://doi.org/10.1161/01.res.65.2.378
Abstract
The effects of palmitate on mechanical failure of ischemic hearts were studied in acutely (48-hour) and chronically (6-week) streptozotocin diabetic rats. Coronary flow was reduced by 50% in isolated working hearts perfused at a 15 cm H2O preload and 100 mm Hg afterload by the one-way ball valve model of ischemia. Peak systolic pressure (PSP) and cardiac output (CO) decreased 40% by 4 minutes in control hearts perfused with 11 mM glucose and paced at 280 beats/min, compared with 50% in hearts from acutely diabetic rats. Addition of 1.2 mM palmitate to the perfusate accelerated failure rates, with PSP and CO decreasing 65% and 80% by 4 minutes in control and acutely diabetic rat hearts, respectively. In chronically diabetic rats, mechanical function could not be maintained in palmitate-perfused hearts paced at 280 beats/min, even in the absence of ischemia. If these hearts were paced at 250 beats/min and subjected to ischemia, PSP and CO decreased 90% by 4 minutes, regardless of whether palmitate was added to the perfusate. Under these conditions, PSP decreased less than 10% by 4 minutes in both palmitate- or glucose-perfused control hearts. Etomoxir (10(-9) M), a carnitine palmitoyltransferase I inhibitor, markedly decreased the rate of mechanical failure in both acutely and chronically diabetic rat hearts, in the presence and absence of palmitate. The beneficial effect of Etomoxir on mechanical function did not occur as a result of a decrease in either myocardial long chain acyl-coenzyme A or long chain acylcarnitine levels.(ABSTRACT TRUNCATED AT 250 WORDS)This publication has 39 references indexed in Scilit:
- Effects of the fatty acid blocking agents, oxfenicine and 4-bromocrotonic acid, on performance in aerobic and ischemic myocardium*Journal of Molecular and Cellular Cardiology, 1987
- On the possible role of long chain fatty acylcarnitine accumulation in producing functional and calcium permeability changes in membranes during myocardial ischaemiaCardiovascular Research, 1987
- Effects of POCA on metabolism and function in the ischemic rat heartBasic Research in Cardiology, 1986
- Metabolic and physiological differences between zero-flow and low-flow myocardial ischemia: effects of L-acetylcarnitineBasic Research in Cardiology, 1984
- The effect of alloxan- and streptozotocin-induced diabetes on calcium transport in rat cardiac sarcoplasmic reticulum. The possible involvement of long chain acylcarnitinesCanadian Journal of Physiology and Pharmacology, 1983
- Influence of free fatty acids on myocardial oxygen consumption and ischemic injuryThe American Journal of Cardiology, 1981
- Metabolic responses of the heart in acute myocardial infarction in manThe American Journal of Cardiology, 1978
- Inhibition of bovine heart Na+,K+-ATPase by palmitylcarnitine and palmityl-CoABiochemical and Biophysical Research Communications, 1977
- The inhibition of adenine nucleotide translocase activity by oleoyl CoA and its reversal in rat liver mitochondriaBiochemical and Biophysical Research Communications, 1971
- Intravenous glucose tolerance, insulin, glucose, and free fatty acid levels after myocardial infarctionBMJ, 1969