Trichloroethylene induced cancer in animals and its relevance to humans

被引:5
作者
Green, T
机构
[1] Zeneca Central Toxicology Laboratory, Macclesfield, Cheshire, SK121HY, Alderley Park
关键词
trichloroethylene; carcinogenicity; epidemiology; human hazard assessment;
D O I
10.1539/joh.39.261
中图分类号
R1 [预防医学、卫生学];
学科分类号
1004 ; 120402 ;
摘要
Trichloroethylene has been manufactured on an industrial scale since the beginning of this century. During that time widespread human exposure has occurred in industry and in the general population through the environment and from its uses in medicine, food and consumer products. Following the discovery in 1976 that trichloroethylene was an animal carcinogen, there have been numerous animal toxicology and human epidemiology studies evaluating the risks associated with exposure to this chemical. Trichloroethylene has been shown to cause tumours in both rats and mice in lifetime bioassays, principally liver and lung tumours in the mouse and kidney tumours in the rat. The mechanisms involved in the development of these tumours have been studied in detail and have been shown to be either species specific or a result of the use of cytotoxic dose levels. There is little or no evidence for genotoxicity playing a major role in these mechanisms. In mice, liver tumours are associated with peroxisome proliferation and increased cell division, the lung tumours are linked to cell damage and increased cell division. None of these effects are seen in rats due to metabolic and pharmacokinetic differences nor can they be replicated in human tissues. The low incidences of rat kidney tumours seen in some cancer bioassays appear to be linked to high dose toxicity. Human epidemiology studies based on large well defined cohorts support the findings of the mechanistic studies in animals and the overall conclusions that trichloroethylene is not a cancer hazard at current occupational and environmental levels.
引用
收藏
页码:261 / 273
页数:13
相关论文
共 73 条
[1]  
*ACHIG, 1992, APPL OCCUP ENV HYG, V7, P786
[2]  
ANTILLA A, 1995, J OCCUP ENVIRON MED, V37, P797
[3]  
ASHBY J, 1994, HUM EXP TOXICOL S2, V13, P1
[4]  
AXELSON O, 1994, J OCCUP ENVIRON MED, V36, P556
[5]  
BIRNAUER U, 1996, ARCH TOXICOL, V70, P338
[6]   NEPHROTOXIC AND GENOTOXIC N-ACETYL-S-DICHLOROVINYL-L-CYSTEINE IS A URINARY METABOLITE AFTER OCCUPATIONAL 1,1,2-TRICHLOROETHENE EXPOSURE IN HUMANS - IMPLICATIONS FOR THE RISK OF TRICHLOROETHENE EXPOSURE [J].
BIRNER, G ;
VAMVAKAS, S ;
WOLFGANG, D ;
HENSCHLER, D .
ENVIRONMENTAL HEALTH PERSPECTIVES, 1993, 99 :281-284
[7]   METABOLISM, TOXICITY, AND CARCINOGENICITY OF TRICHLOROETHYLENE [J].
BRUCKNER, JV ;
DAVIS, BD ;
BLANCATO, JN .
CRITICAL REVIEWS IN TOXICOLOGY, 1989, 20 (01) :31-50
[8]   Preexistence of chronic tubular damage in cases of renal cell cancer after long and high exposure to trichloroethylene [J].
Bruning, T ;
Golka, K ;
Makropoulos, V ;
Bolt, HM .
ARCHIVES OF TOXICOLOGY, 1996, 70 (3-4) :259-260
[9]   DELINEATION OF THE ROLE OF METABOLISM IN THE HEPATOTOXICITY OF TRICHLOROETHYLENE AND PERCHLOROETHYLENE - A DOSE EFFECT STUDY [J].
BUBEN, JA ;
OFLAHERTY, EJ .
TOXICOLOGY AND APPLIED PHARMACOLOGY, 1985, 78 (01) :105-122
[10]   THE ROLE OF DICHLOROACETATE IN THE HEPATOCARCINOGENICITY OF TRICHLOROETHYLENE [J].
BULL, RJ ;
TEMPLIN, M ;
LARSON, JL ;
STEVENS, DK .
TOXICOLOGY LETTERS, 1993, 68 (1-2) :203-211