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PMID: 10473673 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Intravenous allopurinol decreases myocardial oxygen consumption and increases mechanical efficiency in dogs with pacing-induced heart failure.

Circulation research ·Vol. 85 ·No. 5 ·1999-09-03 ·Pages 437-45

Ekelund UE, Harrison RW, Shokek O, Thakkar RN, Tunin RS, Senzaki H, Kass DA, Marbán E, Hare JM

Abstract

Allopurinol, an inhibitor of xanthine oxidase, increases myofilament calcium responsiveness and blunts calcium cycling in isolated cardiac muscle. We sought to extend these observations to conscious dogs with and without pacing-induced heart failure and tested the prediction that allopurinol would have a positive inotropic effect without increasing energy expenditure, thereby increasing mechanical efficiency. In control dogs (n=10), allopurinol (200 mg IV) caused a small positive inotropic effect; (dP/dt)(max) increased from 3103+/-162 to 3373+/-225 mm Hg/s (+8.3+/-3.2%; P=0.01), but preload-recruitable stroke work and ventricular elastance did not change. In heart failure (n=5), this effect was larger; (dP/dt)(max) rose from 1602+/-190 to 1988+/-251 mm Hg/s (+24.4+/-8.7%; P=0.03), preload-recruitable stroke work increased from 55.8+/-9.1 to 84. 9+/-12.2 mm Hg (+28.1+/-5.3%; P=0.02), and ventricular elastance rose from 6.0+/-1.6 to 10.5+/-2.2 mm Hg/mm (P=0.03). Allopurinol did not affect myocardial lusitropic properties either in control or heart failure dogs. In heart failure dogs, but not controls, allopurinol decreased myocardial oxygen consumption (-49+/-4.6%; P=0. 002) and substantially increased mechanical efficiency (stroke work/myocardial oxygen consumption; +122+/-42%; P=0.04). Moreover, xanthine oxidase activity was approximately 4-fold increased in failing versus control dog hearts (387+/-125 versus 78+/-72 pmol/min. mg(-1); P=0.04) but was not detectable in plasma. These data indicate that allopurinol possesses unique inotropic properties, increasing myocardial contractility while simultaneously reducing cardiac energy requirements. The resultant boost in myocardial contractile efficiency may prove beneficial in the treatment of congestive heart failure.

MeSH Terms
Allopurinol/administration & dosage,pharmacology,therapeutic use Animals Cardiac Pacing, Artificial Cardiotonic Agents/administration & dosage,pharmacology,therapeutic use Consciousness Diastole/drug effects Disease Progression Dogs Drug Evaluation, Preclinical Energy Metabolism Enzyme Inhibitors/administration & dosage,pharmacology,therapeutic use Heart Failure/drug therapy,metabolism Heart Rate/drug effects Injections, Intravenous Male Muscle Proteins/antagonists & inhibitors Myocardial Contraction/drug effects Myocardium/enzymology Oxidative Stress Oxygen Consumption/drug effects Ventricular Function, Left/drug effects Xanthine Oxidase/antagonists & inhibitors
Chemicals
Cardiotonic Agents Enzyme Inhibitors Muscle Proteins Allopurinol Xanthine Oxidase
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Ekelund U E
Department of Medicine, Cardiology Division, Johns Hopkins Medical Institutions, Baltimore, MD, USA.
Harrison R W
Shokek O
Thakkar R N
Tunin R S
Senzaki H
Kass D A
Marbán E
Hare J M
Article Info
Journal
Circulation research
Abbr.
Circ Res
ISSN
0009-7330
Published
1999-09-03
Pages
437-45
Language
English
Region
United States
NLM ID
0047103
Subset
IM
Grants
NHLBI NIH HHS · K08 HL03228 · United States
NHLBI NIH HHS · R01 HL44065 · United States
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