METABOLIC-ACTIVATION OF CARCINOGENIC AROMATIC-AMINES BY FISH EXPOSED TO ENVIRONMENTAL-POLLUTANTS

被引:16
作者
RODRIGUEZARIZA, A
DIAZMENDEZ, FM
NAVAS, JI
PUEYO, C
LOPEZBAREA, J
机构
[1] UNIV CORDOBA,FAC VET,DEPT BIOQUIM & BIOL MOLEC,E-14071 CORDOBA,SPAIN
[2] UNIV CORDOBA,FAC VET,INST BIOL BASICA & APLICADA,E-14071 CORDOBA,SPAIN
[3] UNIV CORDOBA,FAC CIENCIAS,DEPT GENET,E-14071 CORDOBA,SPAIN
[4] UNIV CORDOBA,FAC CIENCIAS,INST BIOL BASICA & APLICADA,E-14071 CORDOBA,SPAIN
[5] JUNTA ANDALUCIA,PLAN MARISQUERO REG SURATLANT,HUELVA,SPAIN
关键词
FISH S9; AROCLOR; PESTICIDES; 2-AMINOANTHRACENE; ACETYLAMINOFLUORENE; GILTHEAD SEABREAM;
D O I
10.1002/em.2850250108
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Activation of arylamines to mutagenic metabolites by hepotic S9 fractions has been evaluated as a biomaker of fish exposure to pollutants, using gilthead seabream (Sparus aurata), a valuable fish species from the Spanish South Atlantic littoral, as model organism. To obtain maximal sensitivity to the mutagenic action of aromatic amines, a strain of Salmonella typhimurium overproducing O-acetyltransferase was used. Fish were treated with Aroclor 1254, pesticides (malathion and dieldrin), or copper(II), and compared to Aroclor 1254-treated rats. The promutagen activation capabilities of the S9 fractions were further characterized by studying the effect of two monooxygenase inhibitors, alpha-naphthoflavone, a well known inhibitor of aromatic hydrocarbon-inducible forms of cytochrome P450, and methimazole, a substrate for the flavin monooxygenase (FMO) system. This study shows that 2-aminoanthracene (2-AA) and 2-acetylaminoflvorene (AAF) activation by gilthead liver is enhanced by treatment of fish with different xenobiotics. The catalyst responsible for this enhanced activation appears to be different for each promutagen and, at least for 2-AA, dependent on the type of xenobiotic. The data presented indicate further that treatment of gilthead with some compounds, such as malathion and dieldrin, enhances the activation of aromatic amines in liver, without inducing ethoxyresorufin-O-deethylase activity. The use of acetyltransferase-overproducing bacteria appears to be a useful tool in the study of arylamine activation by fish liver, where biotransformation capability is lower than in mammals. (C) 1995 Wiley-Liss, Inc.
引用
收藏
页码:50 / 57
页数:8
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