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Xenobiotica
the fate of foreign compounds in biological systems
Volume 11, 1981 - Issue 7
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Research Article

Enterohepatic circulation in formation of propachlor (2-chloro-N-isopropylacetanilide) metabolites in the rat

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Pages 473-480 | Received 08 Oct 1980, Published online: 22 Sep 2008

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A. Mörck, G. Larsen & E. Klasson Wehler. (2002) Covalent binding of PCB metabolites to lipids: route of formation and characterization. Xenobiotica 32:7, pages 625-640.
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K. L. Davison, G. L. Larsen & V. J. Feil. (1994) Comparative metabolism and elimination of acetanilide compounds by rat. Xenobiotica 24:10, pages 1003-1012.
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K. L. Davison, J. E. Bakke & G. L. Larsen. (1992) Comparative metabolism of the cysteine and homocysteine conjugates of propachlor by in situ perfused kidneys of rats. Xenobiotica 22:4, pages 479-485.
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K. L. Davison, J. E. Bakke & G. L. Larsen. (1990) Metabolism of the glutathione conjugate of propachlor by in situ perfused kidneys and livers of rats. Xenobiotica 20:4, pages 375-383.
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K. L. Davison, J. E. Bakke & G. L. Larsen. (1988) A kidney perfusion method for metabolism studies with chickens using propachlor as a model. Xenobiotica 18:3, pages 323-329.
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H. O. Esser. (1986) Comparative aspects of herbicide metabolism. Xenobiotica 16:10-11, pages 1031-1045.
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A. L. Servin, C. Jacquot, J. P. Lussiana & C. Viel. (1985) Metabolism of 6,7-dimethoxy 4-(p-chlorobenzyl)-isoquinoline. I. Single-dose pharmacokinetics in the rat and mouse. Xenobiotica 15:7, pages 553-566.
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A. Warrander, J. M. Allen & R. S. Andrews. (1985) Incorporation of radiolabelled amino acids into the sulphur-containing metabolites of paracetamol by the hamster. Xenobiotica 15:11, pages 891-897.
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J. J. Rafter, J. Å. Gustafsson, J. E. Bakke, G. L. Larsen, K. E. Norin & B. E. Gustafsson. (1983) Studies on the re-establishment of the intestinal microflora in germ-free rats with special reference to the metabolism of N-isopropyl-α-chloroacetanilide (propachlor). Xenobiotica 13:3, pages 171-178.
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G. L. Larsen, J. D. Larson & J Å. Gustafsson. (1983) Cysteine conjugate β-lyase in the gastrointestinal bacterium Fusobacterium necrophorum. Xenobiotica 13:11, pages 689-700.
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R.L. Cooper & L.M. Zorrilla. 2018. Comprehensive Toxicology. Comprehensive Toxicology 230 275 .
A.J.L. Cooper & M.H. Hanigan. 2018. Comprehensive Toxicology. Comprehensive Toxicology 363 406 .
A.J.L. Cooper & M.H. Hanigan. 2010. Comprehensive Toxicology. Comprehensive Toxicology 323 366 .
Anna Mörck, Heldur Hakk, Ulrika Örn & Eva Klasson Wehler. (2003) DECABROMODIPHENYL ETHER IN THE RAT: ABSORPTION, DISTRIBUTION, METABOLISM, AND EXCRETION. Drug Metabolism and Disposition 31:7, pages 900-907.
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Yoshihisa Kato, Koichi Haraguchi, Koichi Tomiyasu, Hiroyuki Saito, Tomoo Shibahara, Yoshito Masuda & Ryohei Kimura. (1999) The role of 3-methylsulfonyl-2,2′,4′,5,5′-pentachlorobiphenyl, a metabolite of 2,2′,4,5,5′-pentachlorobiphenyl, in the induction of hepatic microsomal drug-metabolizing enzymes by 2,2′,4,5,5′-pentachlorobiphenyl in rats. Environmental Toxicology and Pharmacology 8:1, pages 39-47.
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Michael Koob & Wolfgang Dekant. (1991) Bioactivation of xenobiotics by formation of toxic glutathione conjugates. Chemico-Biological Interactions 77:2, pages 107-136.
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. 1989. Metabolic Maps of Pesticides. Metabolic Maps of Pesticides 244 255 .
Paul C.C. Feng & James E. Patanella. (1989) In vitro oxidation of alachlor by liver microsomal enzymes from rats, mice, and monkeys. Pesticide Biochemistry and Physiology 33:1, pages 16-25.
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Paul C.C. Feng & James E. Patanella. (1988) Identification of mercapturic acid pathway metabolites of alachlor formed by liver and kidney homogenates of rats, mice, and monkeys. Pesticide Biochemistry and Physiology 31:1, pages 84-90.
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G.L. LARSEN. 1988. Role of the Gut Flora in Toxicity and Cancer. Role of the Gut Flora in Toxicity and Cancer 79 107 .
Orisa J. Igwe. (1986) Biologically active intermediates generated by the reduced glutathione conjugation pathway. Biochemical Pharmacology 35:18, pages 2987-2994.
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Hiroki Tomisawa, Hideo Fukazawa, Shigeyasu Ichihara & Mitsuru Tateishi. (1986) A novel pathway for formation of thiol-containing metabolites from cysteine conjugates. Biochemical Pharmacology 35:13, pages 2270-2272.
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Yoshihisa Kato, Toshihiro Kogure, Masaki Sato, Toshiro Murata & Ryohei Kimura. (1986) Evidence that methylsulfonyl metabolites of m-dichlorobenzene are causative substances of induction of hepatic microsomal drug-metabolizing enzymes by the parent compound in rats. Toxicology and Applied Pharmacology 82:3, pages 505-511.
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Dieter Martinetz & Klaus‐Dieter Wenzel. (2010) Immobilisation von Propachlor‐Rückständen. Zeitschrift für Chemie 25:9, pages 331-332.
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J.E. Bakke & G.L. Larsen. (1985) Metabolism of 2-chloro-N-isopropylacetanilide in chickens. Chemosphere 14:11-12, pages 1749-1754.
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H Tomisawa, S Suzuki, S Ichihara, H Fukazawa & M Tateishi. (1984) Purification and characterization of C-S lyase from Fusobacterium varium. A C-S cleavage enzyme of cysteine conjugates and some S-containing amino acids.. Journal of Biological Chemistry 259:4, pages 2588-2593.
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. (2012) POSTER COMMUNICATIONS. British Journal of Pharmacology 77:S1.
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Jerome Edelson, DavidP. Benziger & JamesF. Baker. 1982. 333 342 .

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