The versatile, changing, and advancing roles of fish in sediment toxicity assessment—a review
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[1] H. Hollert,et al. The SeKT Joint Research Project: Definition of reference conditions, control sediments and toxicity thresholds for limnic sediment contact tests (2 pp) , 2005, Environmental science and pollution research international.
[2] M. Roberts,et al. Effects of contaminated sediments and sediment-exposed effluent water on an estuarine fish: Acute toxicity , 1984 .
[3] B. Nowak,et al. Histological, growth and 7-ethoxyresorufin O-deethylase (EROD) activity responses of greenback flounder Rhombosolea tapirina to contaminated marine sediment and diet. , 2001, Aquatic toxicology.
[4] H. Köhler,et al. Developmental toxicity and stress protein responses in zebrafish embryos after exposure to diclofenac and its solvent, DMSO. , 2004, Chemosphere.
[5] P. Balaguer,et al. Bioanalytical characterisation of multiple endocrine- and dioxin-like activities in sediments from reference and impacted small rivers. , 2010, Environmental pollution.
[6] T. Braunbeck,et al. Cytotoxicity of settling particulate matter and sediments of the Neckar River (Germany) during a winter flood , 2000 .
[7] W. Manz,et al. A novel statistical approach for the evaluation of comet assay data. , 2008, Mutation research.
[8] S. Stürzenbaum,et al. Genes and environment - striking the fine balance between sophisticated biomonitoring and true functional environmental genomics. , 2008, The Science of the total environment.
[9] T. Rushmore,et al. Pathogenesis of skin and liver neoplasms in white suckers from industrially polluted areas in Lake Ontario. , 1990, The Science of the total environment.
[10] J. Lazorchak,et al. Evaluation of microsomal and cytosolic biomarkers in a seven-day larval trout sediment toxicity test , 1995 .
[11] D. Klumpp,et al. Toxic contaminants and their biological effects in coastal waters of Xiamen, China. I. Organic pollutants in mussel and fish tissues. , 2002, Marine pollution bulletin.
[12] Markus Reischl,et al. Zebrafish embryos as models for embryotoxic and teratological effects of chemicals. , 2009, Reproductive toxicology.
[13] R. Triebskorn,et al. Fish early life stage tests as a tool to assess embryotoxic potentials in small streams , 2001 .
[14] G. A. Burton,et al. Assessing the toxicity of freshwater sediments , 1991 .
[15] K. Schirmer. Proposal to improve vertebrate cell cultures to establish them as substitutes for the regulatory testing of chemicals and effluents using fish. , 2006, Toxicology.
[16] U. Förstner,et al. Data Quality Assurance of Sediment Monitoring , 2008 .
[17] A. Brouwer,et al. Alterations in plasma and hepatic retinoid levels in flounder (Platichthys flesus) after chronic exposure to contaminated harbour sludge in a mesocosm study , 1998 .
[18] J. F. Skidmore. Resistance to zinc sulphate of the zebrafish (Brachydanio rerio Hamilton-Buchanan) at different phases of its life history. , 1965, The Annals of applied biology.
[19] H. Segner. Cytotoxicity Assays with Fish Cells as an Alternative to the Acute Lethality Test with Fish , 2004, Alternatives to laboratory animals : ATLA.
[20] T. A. DelValls,et al. Determining sediment quality for regulatory proposes using fish chronic bioassays. , 2007, Environment International.
[21] J. Stein,et al. Accumulation and dose-response of hepatic DNA adducts in English sole (Pleuronectes vetulus) exposed to a gradient of contaminated sediments , 1996 .
[22] K. Adeli,et al. Development of a Rapid and Simple Genotoxicity Assay Using a Brown Bullhead Fish Cell-Line: Application to Toxicological Surveys of Sediments in the Huron-Erie Corridor , 1993 .
[23] K. Solomon,et al. New concepts in ecological risk assessment: where do we go from here? , 2002, Marine pollution bulletin.
[24] F. Kelly,et al. THE WATER FRAMEWORK DIRECTIVE: USING FISH AS A MANAGEMENT TOOL , 2022, Biology and Environment: Proceedings of the Royal Irish Academy.
[25] R. Triebskorn,et al. Assessment of the developmental success of brown trout (Salmo trutta f. fario L.) embryos in two differently polluted streams in Germany , 2004, Hydrobiologia.
[26] D. Dixon,et al. The use of fish cell cultures as an indication of contaminant toxicity to fish , 1985 .
[27] P. Hodson,et al. Evaluation of an Exposure Assay to Measure Uptake of Sediment Pah by Fish , 2006, Environmental monitoring and assessment.
[28] P. Chapman. Survey of biological effects of toxicants upon Puget Sound biota. I. Broad-scale toxicity survey , 1982 .
[29] L. Viganò,et al. Biomarkers of exposure and effect in flounder (Platichthys flesus) exposed to sediments of the Adriatic sea. , 2001, Marine pollution bulletin.
[30] J. B. Sprague. Measurement of pollutant toxicity to fish I. Bioassay methods for acute toxicity , 1969 .
[31] C. Mothersill,et al. Identification of a multixenobiotic resistance mechanism in primary cultured epidermal cells from Oncorhynchus mykiss and the effects of environmental complex mixtures on its activity. , 2005, Aquatic toxicology.
[32] S. Caeiro,et al. Toxicity ranking of estuarine sediments on the basis of Sparus aurata biomarkers , 2007, Environmental toxicology and chemistry.
[33] M. Stanton,et al. HEPATIC NEOPLASMS IN NATIVE BOTTOM-FEEDING FISH OF DEEP CREEK LAKE, MARYLAND. , 1964, Cancer research.
[34] Monika Nendza,et al. Inventory of marine biotest methods for the evaluation of dredged material and sediments. , 2002, Chemosphere.
[35] William G. Brumbaugh,et al. Toxicity of metal-contaminated sediments from the upper Clark Fork River, Montana, to aquatic invertebrates and fish in laboratory exposures , 1994 .
[36] H. Köhler,et al. Assessing water quality in a tropical lake using biomarkers in zebrafish embryos: developmental toxicity and stress protein responses , 2005, Environmental monitoring and assessment.
[37] S. Scholz,et al. Gene expression analysis in zebrafish embryos: A potential approach to predict effect concentrations in the fish early life stage test , 2009, Environmental toxicology and chemistry.
[38] P. Balaguer,et al. Assessment of Estrogen (ER) and Aryl Hydrocarbon Receptor (AhR) Mediated Activities in Organic Sediment Extracts of the Detroit River, Using In Vitro Bioassays Based on Human MELN and Teleost PLHC-1 Cell Lines , 2004 .
[39] K. Munkittrick,et al. An Ecological Impact Assessment Framework for Decision-Making Related to Sediment Quality , 1991 .
[40] D. Cyr,et al. Exposure of male american plaice (Hippoglossoides platessoides) to contaminated marine sediments decreases the hatching success of their progeny , 1997 .
[41] R. Peddicord,et al. Ecological Evaluation of Proposed Discharge of Dredged Material into Ocean Waters. , 1977 .
[42] G. Ankley,et al. Integrated assessment of contaminated sediments in the lower Fox River and Green Bay, Wisconsin. , 1992, Ecotoxicology and environmental safety.
[43] R. Nagel. DarT: The embryo test with the Zebrafish Danio rerio--a general model in ecotoxicology and toxicology. , 2002, ALTEX.
[44] Gerald T. Ankley,et al. Methods for measuring the toxicity and bioaccumulation of sediment-associated contaminants with freshwater invertebrates , 1994 .
[45] U. Kammann. PAH Metabolites in Bile Fluids of Dab (Limanda limanda) and Flounder (Platichthys flesus): Spatial Distribution and Seasonal Changes (7 pp) , 2007, Environmental science and pollution research international.
[46] T. Braunbeck,et al. Changes in toxicity and Ah receptor agonist activity of suspended particulate matter during flood events at the rivers Neckar and Rhine — a mass balance approach using in vitro methods and chemical analysis , 2008, Environmental science and pollution research international.
[47] D. Spira,et al. Variability of sediment-contact tests in freshwater sediments with low-level anthropogenic contamination--determination of toxicity thresholds. , 2010, Environmental pollution.
[48] H. Hühnerfuss,et al. Genotoxic and teratogenic potential of marine sediment extracts investigated with comet assay and zebrafish test. , 2004, Environmental pollution.
[49] P. Chapman,et al. Assessing sediment contamination in estuaries , 2001, Environmental toxicology and chemistry.
[50] Peter M Chapman,et al. Pore water testing and analysis: the good, the bad, and the ugly. , 2002, Marine pollution bulletin.
[51] J. Snodgrass,et al. Altered Swimming Performance of a Benthic Fish (Erimyzon sucetta) Exposed to Contaminated Sediments , 2003, Archives of environmental contamination and toxicology.
[52] P. C. Francis,et al. Effects of cadmium-enriched sediment on fish and amphibian embryo-larval stages. , 1984, Ecotoxicology and environmental safety.
[53] S. Anderson,et al. Effects of contaminants on genetic patterns in aquatic organisms: a review. , 2001, Mutation research.
[54] M. E. Hahn,et al. Cytochrome P4501A Induction and Porphyrin Accumulation in PLHC-1 Fish Cells Exposed to Sediment and Oil Shale Extracts , 2000, Archives of environmental contamination and toxicology.
[55] E. Gallagher,et al. Effects of Black Rock Harbor sediments on indices of biotransformation, oxidative stress, and DNA integrity in channel catfish , 1993 .
[56] P. Seel,et al. Der Embryotest mit dem Zebrabärbling - eine neue Möglichkeit zur Prüfung und Bewertung der Toxizität von Abwasserproben , 1995 .
[57] W. E. Bishop,et al. Aquatic Toxicology and Hazard Assessment: Sixth Symposium , 1983 .
[58] T. A. DelValls,et al. Evaluation of heavy metal sediment toxicity in littoral ecosystems using juveniles of the fish Sparus aurata. , 1998, Ecotoxicology and environmental safety.
[59] H. Steinhart,et al. A permanent fish cell line (EPC) for genotoxicity testing of marine sediments with the comet assay. , 2001, Mutation research.
[60] J. Giesy,et al. Freshwater Sediment Toxicity Bioassessment: Rationale for Species Selection and Test Design , 1989 .
[61] R. Ishaq,et al. A bio-effect directed fractionation study for toxicological and chemical characterization of organic compounds in bottom sediment. , 2005, Toxicological sciences : an official journal of the Society of Toxicology.
[62] Amer M. Diab,et al. Hepatic gene expression in flounder chronically exposed to multiply polluted estuarine sediment: Absence of classical exposure 'biomarker' signals and induction of inflammatory, innate immune and apoptotic pathways. , 2010, Aquatic toxicology.
[63] C. Mothersill,et al. Effects of contaminated sediment from Cork Harbour, Ireland on the cytochrome P450 system of turbot. , 2009, Ecotoxicology and environmental safety.
[64] T. Braunbeck,et al. Isolated hepatocytes of rainbow trout (Oncorhynchus mykiss) as a tool to discriminate between differently contaminated small river systems. , 2000, Toxicology in vitro : an international journal published in association with BIBRA.
[65] G. A. Burton,et al. Toxicity and bioaccumulation of sediment-associated contaminants using freshwater invertebrates: A review of methods and applications , 1995 .
[66] T. Schulze,et al. The risk of altering soil and sediment samples upon extract preparation for analytical and bio-analytical investigations—a review , 2008, Analytical and bioanalytical chemistry.
[67] N. Garcia-Reyero,et al. Fish 'n' chips: the use of microarrays for aquatic toxicology. , 2007, Molecular bioSystems.
[68] T. Braunbeck,et al. DNA damage induced by genotoxicants in zebrafish (Danio rerio) embryos after contact exposure to freeze-dried sediment and sediment extracts from Laguna Lake (The Philippines) as measured by the comet assay. , 2008, Mutation research.
[69] T. Braunbeck,et al. Assessment of water and sediment contamination in small streams by means of cytological and biochemical alterations in isolated rainbow trout (Oncorhynchus mykiss) hepatocytes , 2001 .
[70] O. Parra,et al. Bioavailability of PAHs in the Biobio river (Chile): MFO activity and biliary fluorescence in juvenile Oncorhynchus mykiss. , 2001, Chemosphere.
[71] A. Castaño,et al. Correlations between the RTG-2 cytotoxicity test EC50 and in vivo LC50 rainbow trout bioassay , 1996 .
[72] H. Steinhart,et al. Bioassay-directed Fractionation of Organic Extracts of Marine Surface Sediments from the North and Baltic Sea - Part II: Results of the biotest battery and development of a biotest index (8 pp) , 2005 .
[73] M. Westerfield. The zebrafish book : a guide for the laboratory use of zebrafish (Danio rerio) , 1995 .
[74] K. Fent. Fish cell lines as versatile tools in ecotoxicology: assessment of cytotoxicity, cytochrome P4501A induction potential and estrogenic activity of chemicals and environmental samples. , 2001, Toxicology in vitro : an international journal published in association with BIBRA.
[75] J. J. Black. Field and Laboratory Studies of Environmental Carcinogenesis in Niagara River Fish , 1983 .
[76] Markus Hecker,et al. Effect-directed analysis (EDA) in aquatic ecotoxicology: state of the art and future challenges , 2009, Environmental science and pollution research international.
[77] Christoph Schulte,et al. Testing Acute Toxicity in the Embryo of Zebrafish, Brachydanio rerio, as an Alternative to the Acute Fish Test: Preliminary Results , 1994 .
[78] W. Liss,et al. Evidence from whole-sediment, porewater, and elutriate testing in toxicity assessment of contaminated sediments. , 1997, Ecotoxicology and environmental safety.
[79] L. Bat. A Review of Sediment Toxicity Bioassays Using the Amphipods and Polychaetes , 2005 .
[80] G. Klobučar,et al. Genotoxicity monitoring of freshwater environments using caged carp (Cyprinus carpio) , 2010, Ecotoxicology.
[81] L. Folmar,et al. Array technology as a tool to monitor exposure of fish to xenoestrogens. , 2002, Marine environmental research.
[82] O. Zapata-Pérez,et al. Toxicity of sediments from Bahía de Chetumal, México, as assessed by hepatic EROD induction and histology in nile tilapia Oreochromis niloticus. , 2000, Marine environmental research.
[83] Histochemical and biochemical markers in trout larvae exposed to river sediments , 1998 .
[84] P. Olsvik,et al. Gene expression profiling in atlantic cod (Gadus Morhua L.) from two contaminated sites using a custom‐made cDNA microarray , 2009, Environmental toxicology and chemistry.
[85] C. Mothersill,et al. Genotoxicity of field‐collected inter‐tidal sediments from Cork Harbor, Ireland, to juvenile turbot (Scophthalmus maximus L.) as measured by the Comet assay , 2004, Environmental and molecular mutagenesis.
[86] Relationship of per cent mortality of four species of aquatic biota from 96-hour sediment bioassays of five lake Michigan harbors and elutriate chemistry of the sediments , 1980, Bulletin of environmental contamination and toxicology.
[87] T. Braunbeck,et al. Sediment genotoxicity in the Tietê River (São Paulo, Brazil): in vitro comet assay versus in situ micronucleus assay studies. , 2009, Ecotoxicology and environmental safety.
[88] W. Brack,et al. Effect-directed identification of oxygen and sulfur heterocycles as major polycyclic aromatic cytochrome P4501A-inducers in a contaminated sediment. , 2003, Environmental science & technology.
[89] M. Mac,et al. A bioaccumulation bioassay for freshwater sediments , 1990 .
[90] F. Gagné,et al. Evaluation of the Genotoxicity of Environmental Contaminants in Sediments to Rainbow Trout Hepatocytes , 1995 .
[91] R. Geisler,et al. Differential gene expression as a toxicant-sensitive endpoint in zebrafish embryos and larvae. , 2007, Aquatic toxicology.
[92] H. Budzinski,et al. Characterization of toxic effects of sediment-associated organic pollutants using the lambda transgenic medaka. , 2007, Environmental science & technology.
[93] G. Dave,et al. Toxicity of mercury, copper, nickel, lead, and cobalt to embryos and larvae of zebrafish,Brachydanio rerio , 1991, Archives of environmental contamination and toxicology.
[94] Peter M. Chapman,et al. Should the Sediment Quality Triad Become a Tetrad, a Pentad, or Possibly even a Hexad? , 2006 .
[95] Arnold V. Hallare,et al. Combined effects of temperature and cadmium on developmental parameters and biomarker responses in zebrafish (Danio rerio) embryos , 2005 .
[96] K. Scott,et al. Sediment toxicity evaluations , 1992 .
[97] Björn Ekwall,et al. SCREENING OF TOXIC COMPOUNDS IN MAMMALIAN CELL CULTURES , 1983, Annals of the New York Academy of Sciences.
[98] A. Castaño,et al. Comparison of basal cytotoxicity data between mammalian and fish cell lines: a literature survey. , 2005, Toxicology in vitro : an international journal published in association with BIBRA.
[99] J. B. Sprague. Measurement of pollutant toxicity to fish—III: Sublethal effects and “safe” concentrations , 1971 .
[100] S. Minchin,et al. A DNA expression array to detect toxic stress response in European flounder (Platichthys flesus). , 2003, Aquatic toxicology.
[101] Malcolm H. Taylor,et al. Effects of sediment‐bound zinc contamination on early life stages of the mummichog (Fundulus heteroclitus L.) in the Christina Watershed, Delaware, USA , 2006, Environmental toxicology and chemistry.
[102] Thomas Braunbeck,et al. Towards an alternative for the acute fish LC(50) test in chemical assessment: the fish embryo toxicity test goes multi-species -- an update. , 2005, ALTEX.
[103] R. Gingold,et al. The weaker points of fish acute toxicity tests and how tests on embryos can solve some issues. , 2007, Environmental pollution.
[104] Edward P. Kolodziej,et al. In vivo bioassay‐guided fractionation of marine sediment extracts from the Southern California Bight, USA, for estrogenic activity , 2005, Environmental toxicology and chemistry.
[105] A. Oikari,et al. Hepatic responses of gene expression in juvenile brown trout (Salmo trutta lacustris) exposed to three model contaminants applied singly and in combination , 2007, Environmental toxicology and chemistry.
[106] H. Laale. The biology and use of zebrafish, Brachydanio rerio in fisheries research. , 1977 .
[107] R. Nagel,et al. Toxicity of Binary Chemical Mixtures: Effects on Reproduction of Zebrafish (Brachydanio rerio) , 1997, Archives of environmental contamination and toxicology.
[108] Biological effect monitoring in dab (Limanda limanda) using gene transcript of CYP1A1 or EROD—a comparison , 2008, Environmental science and pollution research international.
[109] T. Braunbeck,et al. Is the fish embryo toxicity test (FET) with the zebrafish (Danio rerio) a potential alternative for the fish acute toxicity test? , 2009, Comparative biochemistry and physiology. Toxicology & pharmacology : CBP.
[110] S. George,et al. In vitro alternatives to whole animal testing. Comparative cytotoxicity studies of divalent metals in established cell lines derived from tropical and temperate water fish species in a neutral red assay , 1996 .
[111] A. E. Wiklund,et al. Toxicity evaluation by using intact sediments and sediment extracts. , 2005 .
[112] T. Braunbeck. Cytological alterations in fish hepatocytes following in vivo and in vitro sublethal exposure to xenobiotics — structural biomarkers of environmental contamination , 1998 .
[113] C. Mothersill,et al. Assessing the potential of fish cell lines as tools for the cytotoxicity testing of estuarine sediment aqueous elutriates. , 2005, Toxicology in vitro : an international journal published in association with BIBRA.
[114] G. A. Burton,et al. Sediment Toxicity Assessment , 1992 .
[115] J. Delfino. Toxic substances in the Great Lakes , 1979 .
[116] A. Dipple,et al. METABOLIC PROPERTIES OF IN VITRO SYSTEMS * , 1983, Annals of the New York Academy of Sciences.
[117] B. McCain,et al. Bioavailability of Crude Oil from Experimentally Oiled Sediments to English Sole (Parophrys vetulus), and Pathological Consequences , 1978 .
[118] W. Manz,et al. Differentiation between bioavailable and total hazard potential of sediment-induced DNA fragmentation as measured by the comet assay with Zebrafish embryos , 2007 .
[119] F. Gagné,et al. Lethal and sublethal effects of marine sediment extracts on rainbow trout hepatocytes. , 1996, Toxicology letters.
[120] Werner Brack,et al. Endocrine Disruption of Water and Sediment Extracts in a Non-Radioactive Dot Blot/RNAse Protection-Assay Using Isolated Hepatocytes of Rainbow Trout (14 pp).Deficiencies between bioanalytical effectiveness and chemically determined concentrations and how to explain them , 2005, Environmental science and pollution research international.
[121] J. Besser,et al. Contaminated sediments from tributaries of the Great Lakes: Chemical characterization and carcinogenic effects in medaka (Oryzias latipes) , 1991, Archives of environmental contamination and toxicology.
[122] J. Porcher,et al. Monitoring of dioxin-like, estrogenic and anti-androgenic activities in sediments of the Bizerta lagoon (Tunisia) by means of in vitro cell-based bioassays : Contribution of low concentrations of polynuclear aromatic hydrocarbons (PAHs) , 2008 .
[123] J. Giesy,et al. Characterization of dioxin‐like activity of sediments from a Czech River Basin , 2001, Environmental toxicology and chemistry.
[124] A. Goksøyr,et al. Cellular localization of cytochrome P450 (CYP1A) induction and histology in Atlantic cod (Gadus morhua L.) and European flounder (Platichthys flesus) after environmental exposure to contaminants by caging in Sørfjorden, Norway , 1996 .
[125] W. Manz,et al. Comparative genotoxicity testing of rhine river sediment extracts using the comet assay with permanent fish cell lines (rtg-2 and rtl-w1) and the ames test* , 2004 .
[126] S. Caeiro,et al. Genotoxic damage in Solea senegalensis exposed to sediments from the Sado Estuary (Portugal): effects of metallic and organic contaminants. , 2008, Mutation research.
[127] S. Scholz,et al. The zebrafish embryo model in environmental risk assessment—applications beyond acute toxicity testing , 2008, Environmental science and pollution research international.
[128] Bingsheng Zhou,et al. Primary cultured cells as sensitive in vitro model for assessment of toxicants--comparison to hepatocytes and gill epithelia. , 2006, Aquatic toxicology.
[129] Jonny Beyer,et al. Fish bioaccumulation and biomarkers in environmental risk assessment: a review. , 2003, Environmental toxicology and pharmacology.
[130] Jens C. Otte,et al. DanTox—a novel joint research project using zebrafish (Danio rerio) to identify specific toxicity and molecular modes of action of sediment-bound pollutants , 2010 .
[131] W. Manz,et al. Activities and identification of aryl hydrocarbon receptor agonists in sediments from the Danube river , 2008, Analytical and bioanalytical chemistry.
[132] M. Pacheco,et al. Responses of European eel (Anguilla anguilla L.) in two polluted environments: in situ experiments. , 2004, Ecotoxicology and environmental safety.
[133] A. Goksøyr,et al. Contaminant accumulation and biomarker responses in flounder (Platichthys flesus L.) and Atlantic cod (Gadus morhua L.) exposed by caging to polluted sediments in Sørfjorden, Norway , 1996 .
[134] D. Barceló,et al. Environmental monitoring by gene expression biomarkers in Barbus graellsii: laboratory and field studies. , 2007, Chemosphere.
[135] M. Tysklind,et al. Biological and Chemical Determination of Dioxin-like Compounds in Sediments by Means of a Sediment Triad Approach in the Catchment Area of the River Neckar , 2002, Ecotoxicology.
[136] M. Schubauer-Berigan,et al. Predicting the toxicity of bulk sediments to aquatic organisms with aqueous test fractions: Pore water vs. elutriate , 1991 .
[137] A. DeCaprio,et al. Lethal and sublethal effects of polychlorinated biphenyls on Rana sylvatica tadpoles , 2002, Environmental toxicology and chemistry.
[138] Teresa Lettieri,et al. Recent Applications of DNA Microarray Technology to Toxicology and Ecotoxicology , 2005, Environmental health perspectives.
[139] Werner Brack,et al. Effect‐directed analysis of mutagens and ethoxyresorufin‐O‐deethylase inducers in aquatic sediments , 2005, Environmental toxicology and chemistry.
[140] D. Powers. Fish as model systems. , 1989, Science.
[141] E. Foekema,et al. Prolonged ELS test with the marine flatfish sole (Solea solea) shows delayed toxic effects of previous exposure to PCB 126. , 2008, Aquatic toxicology.
[142] M. E. Hahn,et al. Comparison of two bioassays, a fish liver cell line (PLHC-1) and a midge (Chironomus riparius), in monitoring freshwater sediments , 1998 .
[143] P. Beelen. A review on the application of microbial toxicity tests for deriving sediment quality guidelines , 2003 .
[144] M. Landolt,et al. Lethal and sublethal effects of marine sediment extracts on fish cells and chromosomes , 1984, Helgoländer Meeresuntersuchungen.
[145] M. Landolt,et al. Cytotoxicity/genotoxicity: The application of cell culture techniques to the measurement of marine sediment pollution , 1985 .
[146] Helmut Segner,et al. Isolation and primary culture of teleost hepatocytes , 1998 .
[147] H. Steinhart,et al. Genotoxic potential of marine sediments from the North Sea. , 2000, Mutation research.
[148] E. Perkins,et al. Playing in the Mud-Using Gene Expression to Assess Contaminant Effects on Sediment Dwelling Invertebrates , 2003, Ecotoxicology.
[149] C. Kimmel,et al. Stages of embryonic development of the zebrafish , 1995, Developmental dynamics : an official publication of the American Association of Anatomists.
[150] T. McDonald,et al. In situ biomonitoring of PAH-contaminated sediments using juvenile coho salmon (Oncorhynchus kisutch). , 2008, Ecotoxicology and environmental safety.
[151] D. Klumpp,et al. Toxic contaminants and their biological effects in coastal waters of Xiamen, China. II. Biomarkers and embryo malformation rates as indicators of pollution stress in fish. , 2002, Marine pollution bulletin.
[152] S. Stürzenbaum,et al. Gene expression profiling to characterize sediment toxicity – a pilot study using Caenorhabditis elegans whole genome microarrays , 2009, BMC Genomics.
[153] Alex Netzband. Sediment Management: An essential element of River Basin Management Plans , 2007 .
[154] W. Clements,et al. Gene expression in caged fish as a first‐tier indicator of contaminant exposure in streams , 2005, Environmental toxicology and chemistry.
[155] J. Frazier,et al. Isolated fish hepatocytes — model systems for toxicology research☆ , 1990 .
[156] N. Maclean,et al. Teleost microarrays: development in a broad phylogenetic range reflecting diverse applications , 2008 .
[157] A. Scott,et al. A comparison of pollutant biomarker responses with transcriptional responses in European flounders (Platicthys flesus) subjected to estuarine pollution. , 2004, Marine environmental research.
[158] H. Hollert,et al. Ecotoxicological characterization of sediment cores from the western Baltic Sea (Mecklenburg Bight) using GC–MS and in vitro biotests , 2009 .
[159] R. Sonstegard. ENVIRONMENTAL CARCINOGENESIS STUDIES IN FISHES OF THE GREAT LAKES OF NORTH AMERICA * , 1977, Annals of the New York Academy of Sciences.
[160] C. Travis,et al. The Genomic Revolution: What Does it Mean for Human and Ecological Risk Assessment? , 2003, Ecotoxicology.
[161] M. Roberts,et al. Acute toxicity of PAH contaminated sediments to the estuarine fish,Leiostomus xanthurus , 1989, Bulletin of environmental contamination and toxicology.
[162] R. Altenburger,et al. Oxygen decline in biotesting of environmental samples—Is there a need for consideration in the acute zebrafish embryo assay? , 2008, Environmental Toxicology.
[163] Gary M Williams,et al. Cellular systems for toxicity testing. , 1983, Annals of the New York Academy of Sciences.
[164] R. Barra,et al. Analysis of CYP4501A1, PAHs metabolites in bile, and genotoxic damage in Oncorhynchus mykiss exposed to Biobío River sediments, Central Chile. , 2006, Ecotoxicology and environmental safety.
[165] R. Baudo,et al. In situ tests to assess the potential toxicity of aquatic sediments , 1999 .
[166] T. Braunbeck,et al. Effects of sediment eluates and extracts from differently polluted small rivers on zebrafish embryos and larvae , 2002 .
[167] F. Gagné,et al. Genotoxicity of sediment extracts obtained in the vicinity of a creosote-treated wharf to rainbow trout hepatocytes. , 1995, Toxicology letters.
[168] M. Schubauer-Berigan,et al. The contribution of ammonia, metals and nonpolar organic compounds to the toxicity of sediment interstitial water from an illinois river tributary , 1991 .
[169] G. Leblanc,et al. A Method of Assessing the Toxicity of Contaminated Freshwater Sediments , 1985 .
[170] T. Snell,et al. Gene Expression Profiling in Ecotoxicology , 2003, Ecotoxicology.
[171] G. Ankley,et al. Identification of ammonia as an important sediment‐associated toxicant in the lower fox River and green bay, Wisconsin , 1990 .
[172] J. Lech,et al. Caged and wild fish: Induction of hepatic cytochrome P‐450 (CYP1A1) as an environmental biomonitor , 1993 .
[173] M. Hecker,et al. In search for the ecological and toxicological relevance of sediment re-mobilisation and transport during flood events , 2009 .
[174] J. Bantle,et al. Evaluation of the developmental toxicity of metal-contaminated sediments using short-term fathead minnow and frog embryo-larval assays , 1988 .
[175] H. Köhler,et al. Assessing contamination levels of Laguna Lake sediments (Philippines) using a contact assay with zebrafish (Danio rerio) embryos. , 2005, The Science of the total environment.
[176] A. Goksøyr,et al. Influence of Temperature and Polyaromatic Contaminants on Cyp1a Levels in North-Sea Dab (Limanda-Limanda) , 1995 .
[177] V. Mićović,et al. CYP1A induction potential and the concentration of priority pollutants in marine sediment samples--in vitro evaluation using the PLHC-1 fish hepatoma cell line. , 2008, Toxicology in vitro : an international journal published in association with BIBRA.
[178] U. Förstner,et al. Historical Contaminated Sediments and Soils at the River Basin Scale , 2004 .
[179] Paul D. Jones,et al. Advanced fluorescence in situ hybridization to localize and quantify gene expression in Japanese medaka (Oryzias latipes) exposed to endocrine‐disrupting compounds , 2009, Environmental toxicology and chemistry.
[180] L. DiPinto. Trophic transfer of a sediment-associated organophosphate pesticide from meiobenthos to bottom feeding fish , 1996, Archives of environmental contamination and toxicology.
[181] Wolfgang Gebauer,et al. Comparison of testing acute toxicity on embryo of zebrafish, Brachydanio rerio and RTG-2 cytotoxicity as possible alternatives to the acute fish test , 1995 .
[182] J. Fleeger,et al. Effects of sediment-bound polycyclic aromatic hydrocarbons on feeding behavior in juvenile spot (Leiostomus xanthurus Lacépède: Pisces) , 1998 .
[183] H. Steinhart,et al. Expression of heat shock protein 70 in a permanent cell line (EPC) exposed to sediment extracts from the North Sea and the Baltic Sea. , 2007, Marine environmental research.
[184] S. De Flora,et al. Multiple genotoxicity biomarkers in fish exposed in situ to polluted river water. , 1993, Mutation research.
[185] K. Tollefsen,et al. Use of fish in vitro hepatocyte assays to detect multi-endpoint toxicity in Slovenian river sediments. , 2006, Marine environmental research.
[186] C. Martinez,et al. Acute effects of sediments taken from an urban stream on physiological and biochemical parameters of the neotropical fish Prochilodus lineatus. , 2005, Comparative biochemistry and physiology. Toxicology & pharmacology : CBP.
[187] Y H Cheung,et al. Assessment of Sediment Toxicity Using Different Trophic Organisms , 1997, Archives of environmental contamination and toxicology.
[188] Thomas Braunbeck,et al. A new sediment contact assay to assess particle-bound pollutants using zebrafish (danio rerio) embryos , 2004 .
[189] J. Karlsson,et al. Hazard identification of contaminated sites—ranking potential toxicity of organic sediment extracts in crustacean and fish , 2008 .
[190] R. Law,et al. The measurement of disease susceptibility in dab, Limanda limanda L., following long-term exposure to contaminated sediments: Preliminary studies , 1989 .
[191] T. Braunbeck,et al. Ecotoxicological Assessment of Sediment, Suspended Matter and Water Samples in the Upper Danube River. A pilot study in search for the causes for the decline of fish catches (12 pp) , 2006, Environmental science and pollution research international.
[192] R. Lloyd,et al. Sublethal and chronic effects of pollutants on freshwater fish , 1994 .
[193] C. Metcalfe,et al. Carcinogenic and genotoxic activity of extracts from contaminated sediments in western Lake Ontario. , 1990, The Science of the total environment.
[194] P. Ozoh. Malformations and inhibitory tendencies induced toBrachydanio rerio (Hamilton-Buchanan) eggs and larvae due to exposures in low concentrations of lead and copper ions , 1979, Bulletin of environmental contamination and toxicology.