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Original Articles

The acute toxicity of penta‐, hexa‐, and heptachlorohydroxydiphenyl ethers in mice

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Pages 245-253 | Received 20 Dec 1982, Accepted 02 May 1983, Published online: 20 Oct 2009

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Robert Parette, Robert McCrindle, Katherine S. McMahon, Valerie J. Watson, Michael J. Janik, Darrell Velegol, Frank L. Dorman & Wendy N. Pearson. (2017) Modeling the formation of 2,3,7,8-tetrachlorodibenzo-p-dioxin in the historical manufacture of 2,4,5-trichlorophenol. Environmental Forensics 18:4, pages 307-317.
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Articles from other publishers (14)

Agata Jabłońska–Trypuć. (2023) A REVIEW ON TRICLOSAN IN WASTEWATER: MECHANISM OF ACTION, RESISTANCE PHENOMENON, ENVIRONMENTAL RISKS, AND SUSTAINABLE REMOVAL TECHNIQUES. Water Environment Research.
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Mohammad A. Alfhili & Myon-Hee Lee. (2019) Triclosan: An Update on Biochemical and Molecular Mechanisms. Oxidative Medicine and Cellular Longevity 2019, pages 1-28.
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Rekha Kumari, Shashwati Ghosh Sachan & Ashish Sachan. 2019. In vitro Plant Breeding towards Novel Agronomic Traits. In vitro Plant Breeding towards Novel Agronomic Traits 237 261 .
Inderpreet Kaur, Sonal Gaba, Sukhraj Kaur, Rajeev Kumar & Jyoti Chawla. (2018) Spectrophotometric determination of triclosan based on diazotization reaction: response surface optimization using Box–Behnken design. Water Science and Technology 77:9, pages 2204-2212.
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Gurpreet Dhillon, Surinder Kaur, Rama Pulicharla, Satinder Brar, Maximiliano Cledón, Mausam Verma & Rao Surampalli. (2015) Triclosan: Current Status, Occurrence, Environmental Risks and Bioaccumulation Potential. International Journal of Environmental Research and Public Health 12:5, pages 5657-5684.
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Gilles Bedoux, Benoit Roig, Olivier Thomas, Virginie Dupont & Barbara Le Bot. (2011) Occurrence and toxicity of antimicrobial triclosan and by-products in the environment. Environmental Science and Pollution Research 19:4, pages 1044-1065.
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J. N. Latosińska, M. Latosińska, M. A. Tomczak, J. Seliger, V. Žagar & J. K. Maurin. (2012) Conformations and intermolecular interactions pattern in solid chloroxylenol and triclosan (API of anti‐infective agents and drugs). A 35 Cl NQR, 1 H‐ 14  N NQDR, X‐ray and DFT/QTAIM study . Magnetic Resonance in Chemistry 50:2, pages 89-105.
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Thomas J. Leiker, Sonja R. Abney, Steven L. Goodbred & Michael R. Rosen. (2009) 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. Science of The Total Environment 407:6, pages 2102-2114.
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Lina Kantiani, Marinella Farré, Danijela Asperger, Fernando Rubio, Susana González, Maria J. López de Alda, Mira Petrović, Weilin L. Shelver & Damià Barceló. (2008) Triclosan and methyl-triclosan monitoring study in the northeast of Spain using a magnetic particle enzyme immunoassay and confirmatory analysis by gas chromatography–mass spectrometry. Journal of Hydrology 361:1-2, pages 1-9.
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Magda Izydorczak & Joanna Stefańska. (2007) ŚRODEK PRZECIWDROBNOUSTROJOWY TRICLOSAN - DZIAŁANIE, ZASTOSOWANIE I ZAGROŻENIA. Prospects in Pharmaceutical Sciences 5:2, pages 13-17.
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. 2004. Sax's Dangerous Properties of Industrial Materials. Sax's Dangerous Properties of Industrial Materials.
A.J. Niimi, S.Y. Huestis & C.D. Metcalfe. (2009) Chlorinated diphenyl ethers in great lakes fish and their environmental implication. Environmental Toxicology and Chemistry 13:7, pages 1133-1138.
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Terry L. Miller & Robert J. Smith. (1986) Thermotropic properties of human erythrocyte membrane proteins as affected by hydroxychloroaromatic compounds. Archives of Biochemistry and Biophysics 250:1, pages 128-138.
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N.Isaacson Kerkvliet, J.A. Brauner & J.P. Matlock. (1985) Humoral immunotoxicity of polychlorinated diphenyl ethers, phenoxyphenols, dioxins and furans present as contaminants of technical grade pentachlorophenol. Toxicology 36:4, pages 307-324.
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