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Автор Marrs, Timothy C
Автор Dewhurst, Ian C
Дата выпуска 2012
ISBN 978-1-84973-191-1
dc.description The insecticides discussed in this chapter comprise a group of insecticides that are not covered elsewhere in this book, with the exception of fipronil which is discussed in detail in Chapter 12. The phenylpyrazoles (fipronil and ethiprole) are antagonists at the γ-aminobutyric acid A (GABAA) receptor. Indoxacarb is anoxadiazine, which exerts its insecticidal action at voltage-dependent sodium channels. Amitraz is an amidine acaricide and insecticide used on crops and farm animals and is thought to act via the octopamine receptors in insects. The mode of action of pyridalyl on insects is unclear. Unsurprisingly, in view of their disparate mode of actions in insects, the insecticides discussed in this chapter have differing toxicities in mammals.
Формат application.pdf
Издатель Royal Society of Chemistry
Название Chapter 9. Toxicology of Some Insecticides Not Discussed Elsewhere
Тип other
DOI 10.1039/9781849733007-00288
Print ISSN 1757-7179
Журнал Mammalian Toxicology of Insecticides
Первая страница 288
Последняя страница 301
Аффилиация Marrs Timothy C; Edentox Associates, Pinehurst
Аффилиация Dewhurst Ian C; Chemicals Regulation Directorate, Health and Safety Executive
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Библиографическая ссылка P. Caboni, R. E. Sammelson, J. E. Casida, Phenylpyrazole insecticide photochemistry, metabolism, and GABAergic action: ethiprole compared with fipronil, J. Agric. Food Chem., 2003, 24, 7055, 7061
Библиографическая ссылка X. Zhao, T. Ikeda, J. Z. Yeh, T. Narahashi, Voltage-dependent block of sodium channels in mammalian neurons by the oxadiazine insecticide indoxacarb and its metabolite DCJW, Neurotoxicology, 2003, 24, 83, 96
Библиографическая ссылка Y. J. Wu, Y. L. Lin, H. Y. Huang, B. G. Hsu, Methemoglobinemia induced by indoxacarb intoxication, Clin. Toxicol. (Phila.), 2010, 48, 766, 767
Библиографическая ссылка S. G. Lalchandani, L. Longping, W. Zheng, M. M. Suni, R. M. Moore, S. B. Liggett, D. D. Miller, D. R. Feller, Yohimbine dimers exhibiting selectivity for the human alpha2c-adrenoreceptor subtype, J. Pharmacol. Exp. Ther., 2002, 303, 979, 984
Библиографическая ссылка A. T. Proudfoot, Poisoning with amitraz, Toxicol. Rev., 2003, 22, 71, 74
Библиографическая ссылка L. Avsarogullari, I. Ikizceli, M. Sungur, E. Sözüer, O. Akdur, M. Yücei, Acute amitraz poisoning in adults: clinical features, laboratory findings, and management, Clin. Toxicol., 2006, 44, 19, 23
Библиографическая ссылка Y. Demirel, A. Yilmaz, Y. Gursoy, K. Kaygusuz, C. Mimaroglu, Acute amitraz intoxication: retrospective analysis of 45 cases, Hum. Exp. Toxicol., 2006, 25, 613, 617
Библиографическая ссылка H. L. Yilmaz, D. R. Yildizdas, Amitraz poisoning, an emerging problem: epidemiology, clinical features, management, and preventive strategies, Arch. Dis. Child., 2003, 88, 130, 134
Библиографическая ссылка S. Isayama, S. Saito, K. Kuroda, K. Umeda, K. Kasamatsu, Pyridalyl, a novel insecticide: potency and insecticidal selectivity, Arch. Insect. Biochem. Physiol., 2005, 58, 226, 233
Библиографическая ссылка K. Moriya, S. Hirakura, J. Kobayashi, Y. Ozoe, S. Saito, T. Utsumi, Pyridalyl inhibits cellular protein synthesis in insect, but not mammalian, cell lines, Arch. Insect Biochem. Physiol., 2008, 69, 22, 31
Библиографическая ссылка H. Nagahori, K. Saito, Y. Tomigahara, N. Isobe, H. Kaneko, Metabolism of pyridalyl in rats, Drug Metab. Dispos., 2009, 37, 2284, 2289
Библиографическая ссылка H. Nagahori, Y. Tomigahara, N. Isobe, H. J. Kaneko, Metabolism of pyridalyl in rats: excretion, distribution, and biotransformation of dichloropropenyl-labeled pyridalyl, Agric. Food Chem., 2009, 57, 10845, 10851

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