Acute and chronic effects of adriamycin on fatty acid oxidation in isolated cardiac myocytes

被引:73
作者
AbdelAleem, S
ElMerzabani, MM
SayedAhmed, M
Taylor, DA
Lowe, JE
机构
[1] DUKE UNIV, MED CTR, DEPT MED, DURHAM, NC 27710 USA
[2] NATL CANC INST, CAIRO, EGYPT
关键词
adriamycin; fatty acid oxidation; L-carnitine; cardiotoxicity;
D O I
10.1006/jmcc.1996.0323
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
This study was designed to determine if acute (in vitro) or chronic (in vivo) adriamycin inhibits cardiac fatty acid oxidation and if so at what sites in the fatty acid oxidation pathway. In addition, the role of L-carnitine in reversing or preventing this effect was examined. We determined the effects of adriamycin in the presence or absence of L-carnitine on the oxidation of the metabolic substrates [1-C-14]palmitate, [1-C-14] octanoate, [1-C-14]butyrate, [U-C-14]glucose, and [2-C-14]pyruvate in isolated cardiac myocytes. Acute exposure to adriamycin caused a concentration- and time-dependent inhibition of carnitine palmitoyl transferase I (CPT I) dependent long-chain fatty acid, palmitate, oxidation. Chronic exposure to (18 mg/kg) adriamycin inhibited palmitate oxidation 40% to a similar extent seen in vitro with 0.5 mM adriamycin. Acute or chronic administration of L-carnitine completely abolished the adriamycin-induced inhibition of palmitate oxidation. Interestingly, medium- and short-chain fatty acid oxidation, which are independent of CPT I, were also inhibited acutely by adriamycin and could be reversed by L-carnitine. In isolated rat heart mitochondria, adriamycin significantly decreased oxidation of the CPT I dependent substrate palmitoyl-CoA by 50%. However, the oxidation of a non-CPT I dependent substrate palmitoylcarnitine was unaffected by adriamycin except at concentrations greater than 1 mM. These data suggest that after in vitro or in vivo administration, adriamycin, inhibits fatty acid oxidation in part secondary to inhibition of CPT I and/or depletion of its substrate, L-camitine, in cardiac tissue. However, these findings also suggest that L-carnitine plays an additional role in fatty acid oxidation independent of CPT I or fatty acid chain length. (C) 1997 Academic Press Limited.
引用
收藏
页码:789 / 797
页数:9
相关论文
共 37 条
[1]   THE INHIBITION OF LONG-CHAIN FATTY ACYL-COA SYNTHETASE BY ENOXIMONE IN RAT-HEART MITOCHONDRIA [J].
ABDELALEEM, S ;
YOUSSEF, J ;
BADR, M ;
MORGAN, P ;
FRANGAKIS, C .
JOURNAL OF CARDIOVASCULAR PHARMACOLOGY, 1992, 19 (06) :899-904
[2]  
ABDELALEEM S, 1987, BIOCHEM PHARMACOL, V36, P4307
[3]   STUDIES OF FATTY-ACID OXIDATION IN HOMOGENATES OF CARDIOMYOPATHIC HAMSTER [J].
BARAKAT, H ;
BROWN, W ;
HENRY, SD .
LIFE SCIENCES, 1978, 23 (17-1) :1835-1840
[4]   INTERACTION OF CARNITINE WITH MITOCHONDRIAL CARDIOLIPIN [J].
BATTELLI, D ;
BELLEI, M ;
ARRIGONIMARTELLI, E ;
MUSCATELLO, U ;
BOBYLEVA, V .
BIOCHIMICA ET BIOPHYSICA ACTA, 1992, 1117 (01) :33-36
[5]   ALTERATIONS IN FATTY-ACID METABOLISM IN ADRIAMYCIN CARDIOMYOPATHY [J].
BEANLANDS, RSB ;
SHAIKH, NA ;
WEN, WH ;
DAWOOD, F ;
UGNAT, AM ;
MCLAUGHLIN, PR ;
CARERE, R ;
LIU, PP .
JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 1994, 26 (01) :109-119
[6]   HEPATIC AND CARDIAC CARNITINE PALMITOYLTRANSFERASE ACTIVITY - EFFECTS OF ADRIAMYCIN AND GALACTOSAMINE [J].
BRADY, LJ ;
BRADY, PS .
BIOCHEMICAL PHARMACOLOGY, 1987, 36 (20) :3419-3423
[7]  
BUZADAR AV, 1985, CANCER, V55, P2761
[8]  
CARTER AL, 1992, CURRENT CONCEPTS IN CARNITINE RESEARCH, P245
[9]   ADRIAMYCIN - REVIEW [J].
CARTER, SK .
JOURNAL OF THE NATIONAL CANCER INSTITUTE, 1975, 55 (06) :1265-1274
[10]  
CHAPPELL JB, 1969, SUBCELLULAR COMPONEN, P77