How to confirm identified toxicants in effect-directed analysis

被引:87
作者
Brack, Werner [1 ]
Schmitt-Jansen, Mechthild [2 ]
Machala, Miroslav [3 ]
Brix, Rikke [4 ]
Barcelo, Damia [4 ]
Schymanski, Emma [1 ]
Streck, Georg [1 ]
Schulze, Tobias [1 ]
机构
[1] UFZ Helmholtz Ctr Environm Res, Dept Effect Directed Anal, D-04318 Leipzig, Germany
[2] UFZ Helmholtz Ctr Environm Res, Dept Bioanalyt Ecotoxicol, D-04318 Leipzig, Germany
[3] Vet Res Inst, CS-62132 Brno, Czech Republic
[4] CSIC, IIQAB, Dept Environm Chem, ES-08034 Barcelona, Spain
关键词
effect-directed analysis; toxicity identification evaluation; toxicity confirmation; structural analysis; mixture toxicity; hazard;
D O I
10.1007/s00216-007-1808-8
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Due to the production and use of a multitude of chemicals in modern society, waters, sediments, soils and biota may be contaminated with numerous known and unknown chemicals that may cause adverse effects on ecosystems and human health. Effect-directed analysis (EDA), combining biotesting, fractionation and chemical analysis, helps to identify hazardous compounds in complex environmental mixtures. Confirmation of tentatively identified toxicants will help to avoid artefacts and to establish reliable cause-effect relationships. A tiered approach to confirmation is suggested in the present paper. The first tier focuses on the analytical confirmation of tentatively identified structures. If straightforward confirmation with neat standards for GC-MS or LC-MS is not available, it is suggested that a lines-of-evidence approach is used that combines spectral library information with computer-based structure generation and prediction of retention behaviour in different chromatographic systems using quantitative structure-retention relationships (QSRR). In the second tier, the identified toxicants need to be confirmed as being the cause of the measured effects. Candidate components of toxic fractions may be selected based, for example, on structural alerts. Quantitative effect confirmation is based on joint effect models. Joint effect prediction on the basis of full concentration-response plots and careful selection of the appropriate model are suggested as a means to improve confirmation quality. Confirmation according to the Toxicity Identification Evaluation (TIE) concept of the US EPA and novel tools of hazard identification help to confirm the relevance of identified compounds to populations and communities under realistic exposure conditions. Promising tools include bioavailability-directed extraction and dosing techniques, biomarker approaches and the concept of pollution-induced community tolerance (PICT).
引用
收藏
页码:1959 / 1973
页数:15
相关论文
共 119 条
[1]   What contributes to the combined effect of a complex mixture? [J].
Altenburger, R ;
Walter, H ;
Grote, M .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2004, 38 (23) :6353-6362
[2]   Mixture toxicity and its modeling by quantitative structure-activity relationships [J].
Altenburger, R ;
Nendza, M ;
Schüürmann, G .
ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY, 2003, 22 (08) :1900-1915
[3]  
Anderson-Carnahan L, 1989, EPA600388035
[4]   Structure-activity relationships for the toxicity of polychlorinated dibenzofurans: Approach through density functional theory-based descriptors [J].
Arulmozhiraja, S ;
Morita, M .
CHEMICAL RESEARCH IN TOXICOLOGY, 2004, 17 (03) :348-356
[5]  
Bailey HC, 2001, ENVIRON TOXICOL CHEM, V20, P2877, DOI [10.1897/1551-5028(2001)020&lt
[6]  
2877:JATODA&gt
[7]  
2.0.CO
[8]  
2, 10.1002/etc.5620201230]
[9]  
BANDOW N, 2007, U7 ANN M SEATC EUR P
[10]   Identification of compounds associated with testosterone depressions in fish exposed to bleached kraft pulp and paper mill chemical recovery condensates [J].
Belknap, Andrew M. ;
Solomon, Keith R. ;
MacLatchy, Deborah L. ;
Dube, Monique G. ;
Hewitt, L. Mark .
ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY, 2006, 25 (09) :2322-2333