VITAMIN-A POTENTIATION OF CARBON-TETRACHLORIDE HEPATOTOXICITY - ENHANCED LIPID-PEROXIDATION WITHOUT ENHANCED BIOTRANSFORMATION

被引:31
作者
ELSISI, AED
EARNEST, DL
SIPES, IG
机构
[1] UNIV ARIZONA,COLL PHARM,DEPT PHARMACOL & TOXICOL,TUCSON,AZ 85721
[2] UNIV ARIZONA,COLL PHARM,DEPT INTERNAL MED,TUCSON,AZ 85721
关键词
D O I
10.1006/taap.1993.1071
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
To better understand the mechanism by which vitamin A (VA, retinol) potentiates the hepatotoxicity of carbon tetrachloride, its effect on metabolism and covalent binding of CCl4 as well as its effect on lipid peroxidation was determined. 14CCl4 (0.15 ml/kg, 21.4 μCi/mmol) was administered to male SD rats that had been treated with vitamin A (250,000 IU/kg/day for 1 week) or vehicle. Vitamin A pretreatment did not increase the 24-hr biotransformation of 14CCl4 to 14CO2, to exhaled volatile organics, or to metabolites excreted in the urine or feces. Furthermore, there was no dramatic effect of vitamin A pretreatment on the covalent binding of 14CCl4 equivalents to hepatic lipids and proteins at early time points (1 2-4 hr) after administration of 14CCl4. The microsomal concentration of cytochrome P450 was unchanged by vitamin A treatment. There was a dramatic increase (6-8×) in the amount of ethane exhaled in those rats treated with vitamin A and then administered CCl4 compared to that of those administered CCl4 without pretreatment. The enhanced lipid peroxidation as evidenced by the increased exhalation of ethane was not the result of vitamin A-induced decreases in hepatic glutathione or vitamin E. These data indicate that the potentiation of CCl4 hepatotoxicity by vitamin A pretreatment is associated with an enhancement of lipid peroxidation that is independent of changes in CCl4 biotransformation or the hepatic concentration of two important hepatoprotective agents. © 1993 Academic Press, Inc.
引用
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页码:289 / 294
页数:6
相关论文
共 35 条
[1]   HYPERBARIC-OXYGEN PROTECTION AGAINST CARBON-TETRACHLORIDE HEPATOTOXICITY IN THE RAT - ASSOCIATION WITH ALTERED METABOLISM [J].
BURK, RF ;
REITER, R ;
LANE, JM .
GASTROENTEROLOGY, 1986, 90 (04) :812-818
[2]  
BUTTRESS J, 1986, METHOD ENZYMOL, V105, P131
[3]   PREVENTION OF CARBON TETRACHLORIDE-INDUCED NECROSIS BY INHIBITORS OF DRUG-METABOLISM - FURTHER STUDIES ON THEIR MECHANISM OF ACTION [J].
CASTRO, JA ;
FERREYRA, EC ;
CASTRO, CRD ;
FENOS, OMD ;
SASAME, H ;
GILLETTE, JR .
BIOCHEMICAL PHARMACOLOGY, 1974, 23 (02) :295-&
[4]   CARBON-TETRACHLORIDE METABOLISM INVIVO AND EXHALATION OF VOLATILE ALKANES - DEPENDENCE UPON OXYGEN PARTIAL-PRESSURE [J].
DURK, H ;
FRANK, H .
TOXICOLOGY, 1984, 30 (03) :249-257
[5]   CHARACTERIZATION OF VITAMIN-A POTENTIATION OF CARBON TETRACHLORIDE-INDUCED LIVER-INJURY [J].
ELSISI, AED ;
HALL, P ;
SIM, WL ;
EARNEST, DL ;
SIPES, IG .
TOXICOLOGY AND APPLIED PHARMACOLOGY, 1993, 119 (02) :280-288
[6]   SYNERGISTIC TOXICITY OF CARBON-TETRACHLORIDE AND SEVERAL AROMATIC ORGANOHALIDE COMPOUNDS [J].
KLUWE, WM ;
HOOK, JB ;
BERNSTEIN, J .
TOXICOLOGY, 1982, 23 (04) :321-336
[7]   ROLE OF ETHANOL-INDUCIBLE CYTOCHROME-P-450 IIE1 IN CARBON-TETRACHLORIDE INDUCED DAMAGE TO CENTRILOBULAR HEPATOCYTES FROM ETHANOL-TREATED RATS [J].
LINDROS, KO ;
YUAN, C ;
PENTTILA, KE .
HEPATOLOGY, 1990, 12 (05) :1092-1097
[8]  
LOWRY OH, 1951, J BIOL CHEM, V193, P265
[9]   A HEME MODEL STUDY OF CARBON-TETRACHLORIDE METABOLISM - MECHANISMS OF PHOSGENE AND CARBON-DIOXIDE FORMATION [J].
MANSUY, D ;
FONTECAVE, M ;
CHOTTARD, JC .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1980, 95 (04) :1536-1542
[10]   INVIVO METABOLISM OF CCL4 BY RATS PRETREATED WITH CHLORDECONE, MIREX, OR PHENOBARBITAL [J].
MEHENDALE, HM ;
KLINGENSMITH, JS .
TOXICOLOGY AND APPLIED PHARMACOLOGY, 1988, 93 (02) :247-256