Probabilistic risk evaluation for triclosan in surface water, sediments, and aquatic biota tissues
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Jennifer Lyndall | Katrina B. Leigh | Elyse Perruchon | Marie Capdevielle | D. Laurén | M. Bock | M. Capdevielle | T. Barber | P. Fuchsman | Phyllis Fuchsman | Michael Bock | Darrel Lauren | Timothy Barber | Katrina Leigh | Jennifer Lyndall | Elyse Perruchon | Phyllis Fuchsman
[1] R. Halden,et al. Co-occurrence of triclocarban and triclosan in U.S. water resources. , 2005 .
[2] M. C. Newman,et al. Applying species‐sensitivity distributions in ecological risk assessment: Assumptions of distribution type and sufficient numbers of species , 2000 .
[3] David J. Hansen,et al. Technical basis for narcotic chemicals and polycyclic aromatic hydrocarbon criteria. I. Water and tissue , 2000 .
[4] H. Lygre,et al. Interaction of triclosan with eukaryotic membrane lipids. , 2003, European journal of oral sciences.
[5] A. Wenzel,et al. Retrospective Monitoring of Triclosan and Methyl-triclosan in Fish: Results from the German Environmental Specimen Bank , 2004 .
[6] R. Altenburger,et al. What contributes to the sensitivity of microalgae to triclosan? , 2008, Aquatic toxicology.
[7] A. Hauk,et al. Environmental concentrations of boron, LAS, EDTA, NTA and Triclosan simulated with GREAT-ER in the river Itter. , 2004, Chemosphere.
[8] D. Gaylor. Comments on the EPA uncertainty factor workshop , 1996 .
[9] K. Olson,et al. Plasma clearance, metabolism, and tissue accumulation of 3H-labeled catecholamines in trout. , 1986, The American journal of physiology.
[10] Satoshi Takizawa,et al. Evaluation of pharmaceuticals and personal care products as water-soluble molecular markers of sewage. , 2008, Environmental science & technology.
[11] Michael Matthies,et al. Selecting internally consistent physicochemical properties of organic compounds , 2002, Environmental toxicology and chemistry.
[12] Geoffrey R. Smith,et al. Effects of Three Organic Wastewater Contaminants on American Toad, Bufo americanus, Tadpoles , 2005, Ecotoxicology.
[13] Rajesh Seth,et al. Estimating the Organic Carbon Partition Coefficient and Its Variability for Hydrophobic Chemicals , 1999 .
[14] T. Aldenberg,et al. Extrapolation factors for small samples of pesticide toxicity data: Special focus on LD50 values for birds and mammals , 1997 .
[15] T. Ginn,et al. Occurrence and fate of pharmaceutically active compounds in the environment, a case study: Höje River in Sweden. , 2005, Journal of hazardous materials.
[16] S. Weigel,et al. Determination of selected pharmaceuticals and caffeine in sewage and seawater from Tromsø/Norway with emphasis on ibuprofen and its metabolites. , 2004, Chemosphere.
[17] T. J. Leiker,et al. Identification of methyl triclosan and halogenated analogues in male common carp (Cyprinus carpio) from Las Vegas Bay and semipermeable membrane devices from Las Vegas Wash, Nevada. , 2009, The Science of the total environment.
[18] R. Cela,et al. Microwave assisted extraction followed by gas chromatography with tandem mass spectrometry for the determination of triclosan and two related chlorophenols in sludge and sediments. , 2005, Journal of chromatography. A.
[19] C. Swartz,et al. Wastewater‐contaminated groundwater as a source of endogenous hormones and pharmaceuticals to surface water ecosystems , 2008, Environmental toxicology and chemistry.
[20] Anton Lindström,et al. Occurrence and environmental behavior of the bactericide triclosan and its methyl derivative in surface waters and in wastewater. , 2002, Environmental science & technology.
[21] A. Hauk,et al. A field study of triclosan loss rates in river water (Cibolo Creek, TX). , 2004, Chemosphere.
[22] R. Law,et al. Polycyclic aromatic hydrocarbons in oysters from coastal waters of the Lebanon 10 months after the Jiyeh oil spill in 2006. , 2008, Marine pollution bulletin.
[23] D. Orvos,et al. Aquatic toxicity of triclosan , 2002, Environmental toxicology and chemistry.
[24] Antonio Di Guardo,et al. Evaluating the environmental fate of a variety of types of chemicals using the EQC model , 1996 .
[25] Bryan W Brooks,et al. Gas chromatography-mass spectrometry screening methods for select UV filters, synthetic musks, alkylphenols, an antimicrobial agent, and an insect repellent in fish. , 2009, Journal of chromatography. A.
[26] E. Topp,et al. Pharmaceutical and personal care products in tile drainage following land application of municipal biosolids. , 2008, The Science of the total environment.
[27] N. Thomaidis,et al. Inhibitory effect of triclosan and nonylphenol on respiration rates and ammonia removal in activated sludge systems. , 2008, Ecotoxicology and environmental safety.
[28] Richard A Brain,et al. Aquatic plants exposed to pharmaceuticals: effects and risks. , 2008, Reviews of environmental contamination and toxicology.
[29] C. Droz,et al. Occurrence of methyl triclosan, a transformation product of the bactericide triclosan, in fish from various lakes in Switzerland. , 2004, Environmental science & technology.
[30] Alejandro J. Ramirez,et al. Occurrence of pharmaceuticals and personal care products in fish: Results of a national pilot study in the united states , 2009, Environmental toxicology and chemistry.
[31] Richard M. Dinsdale,et al. The removal of pharmaceuticals, personal care products, endocrine disruptors and illicit drugs during wastewater treatment and its impact on the quality of receiving waters. , 2009, Water research.
[32] R J Heath,et al. Mechanism of Triclosan Inhibition of Bacterial Fatty Acid Synthesis* , 1999, The Journal of Biological Chemistry.
[33] D. Fidock,et al. Structural Elucidation of the Specificity of the Antibacterial Agent Triclosan for Malarial Enoyl Acyl Carrier Protein Reductase* , 2002, The Journal of Biological Chemistry.
[34] S. Levy,et al. Triclosan targets lipid synthesis , 1998, Nature.
[35] E. Connor,et al. Estimates of soil ingestion by wildlife , 1994 .
[36] R. Halden,et al. Environmental Exposure of Aquatic and Terrestrial Biota to Triclosan and Triclocarban 1 , 2009, Journal - American Water Works Association.
[37] R. Brain,et al. Influence of nitrogen and phosphorus concentrations and ratios on Lemna gibba growth responses to triclosan in laboratory and stream mesocosm experiments , 2009, Environmental toxicology and chemistry.
[38] K. Solomon,et al. Toxicity of human pharmaceuticals and personal care products to benthic invertebrates , 2008, Environmental toxicology and chemistry.
[39] Laosheng Wu,et al. Degradation and adsorption of selected pharmaceuticals and personal care products (PPCPs) in agricultural soils. , 2009, Chemosphere.
[40] N. Tatarazako,et al. Effects of triclosan on various aquatic organisms. , 2004, Environmental sciences : an international journal of environmental physiology and toxicology.
[41] Joseph J. Pignatello,et al. Mechanisms of Slow Sorption of Organic Chemicals to Natural Particles , 1996 .
[42] Brett Paull,et al. Predicting sorption of pharmaceuticals and personal care products onto soil and digested sludge using artificial neural networks. , 2009, The Analyst.
[43] M. C. Archer,et al. Fatty acid synthase is a potential molecular target for the chemoprevention of breast cancer. , 2004, Carcinogenesis.
[44] D. Sabaliūnas,et al. Environmental fate of Triclosan in the River Aire Basin, UK. , 2003, Water research.
[45] George G. Vadas,et al. Nonylphenols in sediments and effluents associated with diverse wastewater outfalls , 2000 .
[46] E. G. Carnieri,et al. Effect of triclosan (TRN) on energy-linked functions of rat liver mitochondria. , 2005, Toxicology letters.
[47] Hiroshi Hosoya,et al. Use of Paramecium species in bioassays for environmental risk management: Determination of IC50 values for water pollutants , 2003 .
[48] S. Canonica,et al. Phototransformation of Triclosan in Surface Waters: A Relevant Elimination Process for This Widely Used BiocideLaboratory Studies, Field Measurements, and Modeling , 2002 .
[49] Geoffrey R. Smith,et al. Direct and interactive effects of ecologically relevant concentrations of organic wastewater contaminants on Rana pipiens tadpoles , 2004, Environmental toxicology.
[50] Robert F. Chen,et al. The partitioning of Triclosan between aqueous and particulate bound phases in the Hudson River Estuary. , 2009, Marine pollution bulletin.
[51] W. Arnold,et al. Aqueous photochemistry of triclosan: Formation of 2,4‐dichlorophenol, 2,8‐dichlorodibenzo‐p‐dioxin, and oligomerization products , 2005, Environmental toxicology and chemistry.
[52] T. Wind. Prognosis of environmental concentrations by geo-referenced and generic models: a comparison of GREAT-ER and EUSES exposure simulations for some consumer-product ingredients in the Itter. , 2004, Chemosphere.
[53] Li Wang,et al. Determination of phenolic endocrine disrupting chemicals and acidic pharmaceuticals in surface water of the Pearl Rivers in South China by gas chromatography-negative chemical ionization-mass spectrometry. , 2009, The Science of the total environment.
[54] Jon A Arnot,et al. A quantitative structure‐activity relationship for predicting metabolic biotransformation rates for organic chemicals in fish , 2009, Environmental toxicology and chemistry.
[55] E. Topp,et al. Pharmaceutical and personal care products in tile drainage following surface spreading and injection of dewatered municipal biosolids to an agricultural field. , 2009, The Science of the total environment.
[56] D. Swackhamer,et al. Changes in antibacterial activity of triclosan and sulfa drugs due to photochemical transformations , 2006, Environmental toxicology and chemistry.
[57] R. Letcher,et al. Triclosan in waste and surface waters from the upper Detroit River by liquid chromatography-electrospray-tandem quadrupole mass spectrometry. , 2005, Environment international.
[58] R. Reiss,et al. An ecological risk assessment for triclosan in lotic systems following discharge from wastewater treatment plants in the United States , 2002, Environmental toxicology and chemistry.
[59] T. L. Point,et al. Snail bioaccumulation of triclocarban, triclosan, and methyltriclosan in a north texas, usa, stream affected by wastewater treatment plant runoff , 2008, Environmental toxicology and chemistry.
[60] Mark Crane,et al. Freshwater to saltwater toxicity extrapolation using species sensitivity distributions , 2002, Environmental toxicology and chemistry.
[61] Daniel Mamais,et al. Investigation of triclosan fate and toxicity in continuous-flow activated sludge systems. , 2007, Chemosphere.
[62] Short-term dynamics and retention of triclosan in the lower Hudson River Estuary. , 2008, Marine pollution bulletin.
[63] E. Topp,et al. Comparative microscale analysis of the effects of triclosan and triclocarban on the structure and function of river biofilm communities. , 2009, The Science of the total environment.
[64] Matthias Hofmann-Kamensky,et al. Consideration of Exposure and Species Sensitivity of Triclosan in the Freshwater Environment , 2008, Integrated environmental assessment and management.
[65] R. Kookana,et al. Effect of triclosan and triclocarban biocides on biodegradation of estrogens in soils. , 2009, Chemosphere.
[66] D Mackay,et al. Fugacity analysis and model of organic chemical fate in a sewage treatment plant. , 1995, Environmental science & technology.
[67] R. Kookana,et al. Effect of triclosan on microbial activity in australian soils , 2009, Environmental toxicology and chemistry.
[68] U. Borgmann,et al. Effect of a mixture of seven pharmaceuticals on Hyalella azteca over multiple generations. , 2007, Chemosphere.
[69] H. Shiratsuchi,et al. Effects of triclosan on the early life stages and reproduction of medaka Oryzias latipes and induction of hepatic vitellogenin. , 2004, Aquatic toxicology.
[70] C. E. Cowan,et al. Technical basis for establishing sediment quality criteria for nonionic organic chemicals using equilibrium partitioning , 1991 .
[71] B. Venables,et al. Triclosan in a North Texas wastewater treatment plant and the influent and effluent of an experimental constructed wetland , 2006, Environmental toxicology and chemistry.
[72] G. Ying,et al. Growth‐inhibiting effects of 12 antibacterial agents and their mixtures on the freshwater microalga Pseudokirchneriella subcapitata , 2008, Environmental toxicology and chemistry.
[73] M. Skopec,et al. Urban contribution of pharmaceuticals and other organic wastewater contaminants to streams during differing flow conditions. , 2004, The Science of the total environment.
[74] M. DeLorenzo,et al. Individual and Mixture Effects of Selected Pharmaceuticals and Personal Care Products on the Marine Phytoplankton Species Dunaliella tertiolecta , 2008, Archives of environmental contamination and toxicology.
[75] S. Hawthorne,et al. Measured partitioning coefficients for parent and alkyl polycyclic aromatic hydrocarbons in 114 historically contaminated sediments: Part 1. KOC values , 2006, Environmental toxicology and chemistry.
[76] Jon A Arnot,et al. A food web bioaccumulation model for organic chemicals in aquatic ecosystems , 2004, Environmental toxicology and chemistry.
[77] Jennifer Lyndall,et al. Probabilistic application of a fugacity model to predict triclosan fate during wastewater treatment , 2010, Integrated environmental assessment and management.
[78] Glen R. Boyd,et al. Pharmaceuticals and personal care products (PPCPs) in surface and treated waters of Louisiana, USA and Ontario, Canada. , 2003, The Science of the total environment.
[79] T. Miyazaki,et al. Residues of 4-chloro-1-(2,4-dichlorophenoxy)-2-methoxybenzene(triclosan methyl) in aquatic biota , 1984, Bulletin of environmental contamination and toxicology.
[80] Peter W. Duenk,et al. Runoff of pharmaceuticals and personal care products following application of dewatered municipal biosolids to an agricultural field. , 2009, The Science of the total environment.
[81] C. Ciniglia,et al. Application of methods for assessing the geno- and cytotoxicity of Triclosan to C. ehrenbergii. , 2005, Journal of hazardous materials.
[82] Wenjing Fu,et al. Influence of soil pH on the sorption of ionizable chemicals: Modeling advances , 2009, Environmental toxicology and chemistry.
[83] P. Mineau,et al. A Review of Interspecies Toxicity Extrapolation in Birds and Mammals and a Proposal for Long-term Toxicity Data , 2005, Ecotoxicology.
[84] J. Giesy,et al. Ecological risk assessment of atrazine in North American surface waters. , 1996 .
[85] W. Shiu,et al. Generic models for evaluating the regional fate of chemicals , 1992 .
[86] Guang-Guo Ying,et al. Triclosan in wastewaters and biosolids from Australian wastewater treatment plants. , 2007, Environment international.
[87] Seon-young Kim,et al. Effects of triclosan on seed germination and seedling development of three wetland plants: Sesbania herbacea, Eclipta prostrata, and Bidens frondosa , 2009, Environmental toxicology and chemistry.
[88] Jennifer Lyndall,et al. Terrestrial ecological risk evaluation for triclosan in land‐applied biosolids , 2010, Integrated environmental assessment and management.
[89] D. Muir,et al. Occurrence of triclosan in plasma of wild Atlantic bottlenose dolphins (Tursiops truncatus) and in their environment. , 2009, Environmental pollution.
[90] Z. Cai,et al. Triclosan determination in water related to wastewater treatment. , 2007, Talanta.
[91] B. Venables,et al. Algal bioaccumulation of triclocarban, triclosan, and methyl-triclosan in a North Texas wastewater treatment plant receiving stream. , 2007, Chemosphere.
[92] R. Scheline. O-Methylation in Fish , 1962, Nature.
[93] M. DeLorenzo,et al. Toxicity of the antimicrobial compound triclosan and formation of the metabolite methyl‐triclosan in estuarine systems , 2008, Environmental toxicology.
[94] K. Bester,et al. Personal care compounds in a reed bed sludge treatment system. , 2009, Chemosphere.
[95] Gregory A Loraine,et al. Seasonal variations in concentrations of pharmaceuticals and personal care products in drinking water and reclaimed wastewater in southern California. , 2006, Environmental science & technology.
[96] A. Rickard,et al. Microbial Characterization of Biofilms in Domestic Drains and the Establishment of Stable Biofilm Microcosms , 2003, Applied and Environmental Microbiology.
[97] J. Castilla,et al. Challenges in the Quest for Keystones , 1996 .
[98] R. Ebinghaus,et al. Occurrence and distribution of triclosan in the German Bight (North Sea). , 2008, Environmental pollution.
[99] R. Kookana,et al. Biological degradation of triclocarban and triclosan in a soil under aerobic and anaerobic conditions and comparison with environmental fate modelling. , 2007, Environmental pollution.
[100] D. Kolpin,et al. A national reconnaissance for pharmaceuticals and other organic wastewater contaminants in the United States--II) untreated drinking water sources. , 2008, The Science of the total environment.
[101] A. Fernández-Alba,et al. Evaluation of triclosan and biphenylol in marine sediments and urban wastewaters by pressurized liquid extraction and solid phase extraction followed by gas chromatography mass spectrometry and liquid chromatography mass spectrometry , 2003 .
[102] M. Tomson,et al. Irreversible Sorption of Neutral Hydrocarbons to Sediments: Experimental Observations and Model Predictions , 1998 .
[103] Peter W. Duenk,et al. Runoff of pharmaceuticals and personal care products following application of biosolids to an agricultural field. , 2008, The Science of the total environment.
[104] H. Singer,et al. Triclosan: occurrence and fate of a widely used biocide in the aquatic environment: field measurements in wastewater treatment plants, surface waters, and lake sediments. , 2002, Environmental science & technology.
[105] J. Ritchie,et al. Fate of triclosan and evidence for reductive dechlorination of triclocarban in estuarine sediments. , 2008, Environmental science & technology.
[106] Zhendi Wang,et al. Occurrence of steroid estrogens, endocrine-disrupting phenols, and acid pharmaceutical residues in urban riverine water of the Pearl River Delta, South China. , 2008, The Science of the total environment.