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Research Article

Folpet-induced short term cytotoxic and proliferative changes in the mouse duodenum

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Pages 54-59 | Received 21 Apr 2011, Accepted 29 May 2011, Published online: 21 Oct 2011

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Virunya S. Bhat, Samuel M. Cohen, Elliot B. Gordon, Charles E. Wood, John M. Cullen, Mark A. Harris, Deborah M. Proctor & Chad M. Thompson. (2020) An adverse outcome pathway for small intestinal tumors in mice involving chronic cytotoxicity and regenerative hyperplasia: a case study with hexavalent chromium, captan, and folpet. Critical Reviews in Toxicology 50:8, pages 685-706.
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Articles from other publishers (9)

M. Noruzi & M. Sharifzadeh. 2024. Encyclopedia of Toxicology. Encyclopedia of Toxicology 755 759 .
Christian Strupp, Marco Corvaro, Samuel M. Cohen, J. Christopher Corton, Kumiko Ogawa, Lysiane Richert & Miriam N. Jacobs. (2023) Increased Cell Proliferation as a Key Event in Chemical Carcinogenesis: Application in an Integrated Approach for the Testing and Assessment of Non-Genotoxic Carcinogenesis. International Journal of Molecular Sciences 24:17, pages 13246.
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Felix M. Kluxen, Clive S. RoperSigne M. JensenClaire M. Koenig. (2022) Characterizing Local Acute Irritation Properties of Captan and Folpet with New Approach Methods. Applied In Vitro Toxicology 8:3, pages 83-101.
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Jiyeon Ham, Bo Hyun Yun, Whasun Lim & Gwonhwa Song. (2021) Folpet induces mitochondrial dysfunction and ROS-mediated apoptosis in mouse Sertoli cells. Pesticide Biochemistry and Physiology 177, pages 104903.
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M. A. Mirzebasov, A. S. Smirnov & S. N. Smirnov. (2019) INFLUENCE OF EPICHLOROHYDRIN ON THE STATE OF THE DUODENAL MUCOSA CRYPTS IN RATS AND CORRECTION OF THE CONSEQUENCES CAUSED BY THIS EFFECT. World of Medicine and Biology 15:70, pages 208.
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Chad M. Thompson, Jeffrey C. Wolf, Alene McCoy, Mina Suh, Deborah M. Proctor, Christopher R. Kirman, Laurie C. Haws & Mark A. Harris. (2017) Comparison of Toxicity and Recovery in the Duodenum of B6C3F1 Mice Following Treatment with Intestinal Carcinogens Captan, Folpet, and Hexavalent Chromium. Toxicologic Pathology 45:8, pages 1091-1101.
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Chad M. Thompson, Mina Suh, Deborah M. Proctor, Laurie C. Haws & Mark A. Harris. (2017) Ten factors for considering the mode of action of Cr(VI)-induced gastrointestinal tumors in rodents. Mutation Research/Genetic Toxicology and Environmental Mutagenesis 823, pages 45-57.
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Rita Nahta, Fahd Al-Mulla, Rabeah Al-Temaimi, Amedeo Amedei, Rafaela Andrade-Vieira, Sarah N. Bay, Dustin G. Brown, Gloria M. Calaf, Robert C. Castellino, Karine A. Cohen-Solal, Anna Maria Colacci, Nichola Cruickshanks, Paul Dent, Riccardo Di Fiore, Stefano Forte, Gary S. Goldberg, Roslida A. Hamid, Harini Krishnan, Dale W. Laird, Ahmed Lasfar, Paola A. Marignani, Lorenzo Memeo, Chiara Mondello, Christian C. Naus, Richard Ponce-Cusi, Jayadev Raju, Debasish Roy, Rabindra Roy, Elizabeth P. Ryan, Hosni K. Salem, A.Ivana Scovassi, Neetu Singh, Monica Vaccari, Renza Vento, Jan Vondráček, Mark Wade, Jordan Woodrick & William H. Bisson. (2015) Mechanisms of environmental chemicals that enable the cancer hallmark of evasion of growth suppression. Carcinogenesis 36:Suppl 1, pages S2-S18.
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P. Singh, S.M. Cohen & E. Gordon. 2014. Encyclopedia of Toxicology. Encyclopedia of Toxicology 619 621 .

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