Use of genetic toxicology information for risk assessment

被引:37
作者
Dearfield, KL
Moore, MM
机构
[1] US FDA, Natl Ctr Toxicol Res, Jefferson, AR 72079 USA
[2] US EPA, Off Sci Advisor 8105R, Washington, DC 20460 USA
关键词
risk assessment; mutagenic mode of action; genetic toxicology;
D O I
10.1002/em.20176
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Genetic toxicology data are used worldwide in regulatory decision-making. On the 25th anniversary of Environmental and Molecular Mutagenesis, we think it is important to provide a brief overview of the currently available genetic toxicity tests and to outline a framework for conducting weight-of-the-evidence (WOE) evaluations that optimize the utility of genetic toxicology information for risk assessment. There are two major types of regulatory decisions made by agencies such as the Environmental Protection Agency (EPA) and the Food and Drug Administration (FDA): (1) the approval and registration of pesticides, pharmaceuticals, medical devices, and medical-use products, and (2) the setting of standards for acceptable exposure levels in air, water, and food. Genetic toxicology data are utilized for both of these regulatory decisions. The current default assumption for regulatory decisions is that chemicals that are shown to be genotoxic in standard tests are, in fact, capable of causing mutations in humans (in somatic and/or germ cells) and that they contribute to adverse health outcomes via a "genotoxic/mutagenic" mode of action (MOA). The new EPA Guidelines for Carcinogen Risk Assessment [Guidelines for Carcinogen Risk Assessment, USEPA, 2005, EPA Publication No. EPA/630/P-03/001 F] emphasize the use of MOA information in risk assessment and provide a framework to help identify a possible mutagenic and/or nonmutagenic MOA for potential adverse effects. An analysis of the available genetic toxicity data is now, more than ever, a key component to consider in the derivation of an MOA for characterizing observed adverse health outcomes such as cancer. We provide our perspective and a two-step strategy for evaluating genotoxicity data for optimal use in regulatory decision-making. The strategy includes integration of all available information and provides, first, for a WOE analysis as to whether a chemical is a mutagen, and second, whether an adverse health outcome is mediated via a mutagenic MOA.
引用
收藏
页码:236 / 245
页数:10
相关论文
共 49 条
  • [1] Development and utilization of the rat lymphocyte hprt mutation assay
    Aidoo, A
    Morris, SM
    Casciano, DA
    [J]. MUTATION RESEARCH-REVIEWS IN MUTATION RESEARCH, 1997, 387 (02) : 69 - 88
  • [2] SOMATIC-CELL GENE-MUTATIONS IN HUMANS - BIOMARKERS FOR GENOTOXICITY
    ALBERTINI, RJ
    NICKLAS, JA
    ONEILL, JP
    [J]. ENVIRONMENTAL HEALTH PERSPECTIVES, 1993, 101 : 193 - 201
  • [3] METHODS FOR DETECTING CARCINOGENS AND MUTAGENS WITH SALMONELLA-MAMMALIAN-MICROSOME MUTAGENICITY TEST
    AMES, BN
    MCCANN, J
    YAMASAKI, E
    [J]. MUTATION RESEARCH, 1975, 31 (06): : 347 - 363
  • [4] [Anonymous], 2000, GUID STRAT TEST CHEM
  • [5] MOLECULAR DISSECTION OF MUTATIONS AT THE HETEROZYGOUS THYMIDINE KINASE LOCUS IN MOUSE LYMPHOMA-CELLS
    APPLEGATE, ML
    MOORE, MM
    BRODER, CB
    BURRELL, A
    JUHN, G
    KASWECK, KL
    LIN, PF
    WADHAMS, A
    HOZIER, JC
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1990, 87 (01) : 51 - 55
  • [6] GENOTOXIC EFFECTS IN CULTURED-MAMMALIAN-CELLS PRODUCED BY LOW PH TREATMENT CONDITIONS AND INCREASED ION CONCENTRATIONS
    BRUSICK, D
    [J]. ENVIRONMENTAL MUTAGENESIS, 1986, 8 (06): : 879 - 886
  • [7] ENU-INDUCED MUTAGENESIS AT A SINGLE-A - T-BASE PAIR IN TRANSGENIC MICE CONTAINING PHI-X174
    BURKHART, JG
    BURKHART, BA
    SAMPSON, KS
    MALLING, HV
    [J]. MUTATION RESEARCH, 1993, 292 (01): : 69 - 81
  • [8] Mutant frequencies and loss of heterozygosity induced by N-ethyl-N-nitrosourea in the thymidine kinase gene of L5178Y/TK+-3.7.2C mouse lymphoma cells
    Chen, T
    Harrington-Brock, K
    Moore, MM
    [J]. MUTAGENESIS, 2002, 17 (02) : 105 - 109
  • [9] CIMINO MC, 2001, GENETIC TOXICOLOGY C, P223
  • [10] Identification and chromosomal assignment of two heterozygous mutations in the Trp53 gene in L5178Y/Tk±-3.7.2C mouse lymphoma cells
    Clark, LS
    Hart, DW
    Vojta, PJ
    Harrington-Brock, K
    Barrett, JC
    Moore, MM
    Tindall, KR
    [J]. MUTAGENESIS, 1998, 13 (05) : 427 - 434