Genetic polymorphism in ethanol metabolism: acetaldehyde contribution to alcohol abuse and alcoholism

被引:132
作者
Quertemont, E [1 ]
机构
[1] Univ Liege, Lab Neurosci Comportementales & Psychopharmacol, B-4000 Liege, Belgium
关键词
alcoholism; acetaldehyde; genetic polymorphisms; alcohol dehydrogenase; catalase; aldehyde dehydrogenase;
D O I
10.1038/sj.mp.4001497
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Acetaldehyde, the first product of ethanol metabolism, has been speculated to be involved in many pharmacological and behavioral effects of ethanol. In particular, acetaldehyde has been suggested to contribute to alcohol abuse and alcoholism. In the present paper, we review current data on the role of acetaldehyde and ethanol metabolism in alcohol consumption and abuse. Ethanol metabolism involves several enzymes. Whereas alcohol dehydrogenase metabolizes the bulk of ethanol within the liver, other enzymes, such as cytochrome P4502E1 and catalase, also contributes to the production of acetaldehyde from ethanol oxidation. In turn, acetaldehyde is metabolized by the enzyme aldehyde dehydrogenase. In animal studies, acetaldehyde is mainly reinforcing particularly when injected directly into the brain. In humans, genetic polymorphisms of the enzymes alcohol dehydrogenase and aldehyde dehydrogenase are also associated with alcohol drinking habits and the incidence of alcohol abuse. From these human genetic studies, it has been concluded that blood acetaldehyde accumulation induces unpleasant effects that prevent further alcohol drinking. It is therefore speculated that acetaldehyde exerts opposite hedonic effects depending on the localization of its accumulation. In the periphery, acetaldehyde is primarily aversive, whereas brain acetaldehyde is mainly reinforcing. However, the peripheral effects of acetaldehyde might also be dependent upon its peak blood concentrations and its rate of accumulation, with a narrow range of blood acetaldehyde concentrations being reinforcing.
引用
收藏
页码:570 / 581
页数:12
相关论文
共 182 条
[1]   PHARMACOGENETICS OF ALCOHOL METABOLISM AND ALCOHOLISM [J].
AGARWAL, DP ;
GOEDDE, HW .
PHARMACOGENETICS, 1992, 2 (02) :48-62
[2]   Genetic polymorphisms of alcohol metabolizing enzymes [J].
Agarwal, DP .
PATHOLOGIE BIOLOGIE, 2001, 49 (09) :703-709
[3]  
AMIT Z, 1988, PSYCHOPHARMACOLOGY, V95, P512
[4]   POSSIBLE INVOLVEMENT OF ACETALDEHYDE, NOREPINEPHRINE AND THEIR TETRAHYDROISOQUINOLINE DERIVATIVES IN REGULATION OF ETHANOL SELF-ADMINISTRATION [J].
AMIT, Z ;
BROWN, ZW ;
ROCKMAN, GE .
DRUG AND ALCOHOL DEPENDENCE, 1977, 2 (5-6) :495-500
[5]   A MULTI-DIMENSIONAL EXAMINATION OF THE POSITIVE REINFORCING PROPERTIES OF ACETALDEHYDE [J].
AMIT, Z ;
SMITH, BR .
ALCOHOL, 1985, 2 (02) :367-370
[6]   INDUCTION OF BRAIN CYTOCHROME-P-450IIE1 BY CHRONIC ETHANOL TREATMENT [J].
ANANDATHEERTHAVARADA, HK ;
SHANKAR, SK ;
BHAMRE, S ;
BOYD, MR ;
SONG, BJ ;
RAVINDRANATH, V .
BRAIN RESEARCH, 1993, 601 (1-2) :279-285
[7]   A CORRELATION BETWEEN VOLUNTARY ETHANOL-CONSUMPTION AND BRAIN CATALASE ACTIVITY IN THE RAT [J].
ARAGON, CMG ;
STERNKLAR, G ;
AMIT, Z .
ALCOHOL, 1985, 2 (02) :353-356
[8]  
ARAGON CMG, 1992, NEUROPHARMACOLOGY, V31, P709
[9]  
Asai H, 1996, J PHARMACOL EXP THER, V277, P1004
[10]   Main ethanol metabolizing alcohol dehydrogenases (ADH I and ADH IV): biochemical functions and the physiological manifestation [J].
Ashmarin, IP ;
Danilova, RA ;
Obukhova, MF ;
Moskvitina, TA ;
Prosorovsky, VN .
FEBS LETTERS, 2000, 486 (01) :49-51