Molecular sites of bioactivation of insecticides
Yamamoto, I.
Environmental Quality and Safety. Supplement 3: 336-340
1975
ISSN/ISBN: 0340-4714 PMID: 178504 Document Number: 89080
Document emailed within 1 workday
Related Documents
Minaev, B.F. 2002: Electronic mechanisms of molecular oxygen bioactivation Ukrains'kyi Biokhimichnyi Zhurnal 74(3): 11-19Narahashi, T. 1982: Cellular and molecular mechanisms of action of insecticides: neurophysiological approach Neurobehavioral Toxicology and Teratology 4(6): 753-758
Croy, B.A.; Wessels, J.M.; Linton, N.F.; van den Heuvel, M.; Edwards, A.K.; Tayade, C. 2009: Cellular and molecular events in early and mid gestation porcine implantation sites: a review Society of Reproduction and Fertility Supplement 66: 233-244
Bachvaroff, R.; Markowitz, A.S.; Rapaport, F.T. 1973: Ligand-induced movement of lymphocyte surface molecular binding sites for soluble extracts of streptococcal membranes (TGCM) Transplantation Proceedings 5(4): 1869-1873
Giannella, M.; Leonelli, M.; Pigini, M. 1980: Molecular requirements of the active sites of the cholinergic receptors. XIIi - Stereospecific synthesis of 3c-methyl-2t-hydroxy-lr-dimethyl-aminomethylcyclopentane methiodide and its dehydroderivative Il Farmaco; Edizione Scientifica 35(4): 263-268
Swanson, B.N.; Boppana, V.K.; Vlasses, P.H.; Rotmensch, H.H.; Ferguson, R.K. 1983: Dimethyl sulfoxide inhibits bioactivation of sulindac Journal of Laboratory and Clinical Medicine 102(1): 95-101
Eder, E.; Dornbusch, K. 1988: Metabolism of 2,3-dichloro-1-propene in the rat. Consideration of bioactivation mechanisms Drug Metabolism and Disposition: the Biological Fate of Chemicals 16(1): 60-68
Dong, H.; Haining, R.L.; Thummel, K.E.; Rettie, A.E.; Nelson, S.D. 2000: Involvement of human cytochrome P450 2D6 in the bioactivation of acetaminophen Drug Metabolism and Disposition: the Biological Fate of Chemicals 28(12): 1397-1400
Nicoll-Griffith, D.A.; Falgueyret, J.P.; Silva, J.M.; Morin, P.E.; Trimble, L.; Chan, C.C.; Clas, S.; Leger, S.; Wang, Z.; Yergey, J.A.; Riendeau, D. 1999: Oxidative bioactivation of the lactol prodrug of a lactone cyclooxygenase-2 inhibitor Drug Metabolism and Disposition: the Biological Fate of Chemicals 27(3): 403-409
Subrahmanyam, V.; Sadler, A.; Suba, E.; Ross, D. 1989: Stimulation of in vitro bioactivation of hydroquinone by phenol in bone marrow cells Drug Metabolism and Disposition: the Biological Fate of Chemicals 17(3): 348-350
Williams, D.E.; Reed, R.L.; Kedzierski, B.; Dannan, G.A.; Guengerich, F.P.; Buhler, D.R. 1989: Bioactivation and detoxication of the pyrrolizidine alkaloid senecionine by cytochrome P-450 enzymes in rat liver Drug Metabolism and Disposition: the Biological Fate of Chemicals 17(4): 387-392
Listgarten, M.A. 1984: Subgingival microbiological differences between periodontally healthy sites and diseased sites prior to and after treatment International Journal of Periodontics and Restorative Dentistry 4(1): 27-34
McCann, D.J.; Su, T.P. 1991: Solubilization and characterization of haloperidol-sensitive (+)-[3H]SKF-10,047 binding sites (sigma sites) from rat liver membranes Journal of Pharmacology and Experimental Therapeutics 257(2): 547-554
Walton, M.I.; Bleehen, N.M.; Workman, P. 1989: Stimulation by localized tumor hyperthermia of reductive bioactivation of 2-nitroimidazole benznidazole in mice Cancer Research 49(9): 2351-2355
Hendrick, M.J.; Shofer, F.S.; Goldschmidt, M.H.; Haviland, J.C.; Schelling, S.H.; Engler, S.J.; Gliatto, J.M. 1994: Comparison of fibrosarcomas that developed at vaccination sites and at nonvaccination sites in cats: 239 cases (1991-1992) Journal of the American Veterinary Medical Association 205(10): 1425-1429
Sasaki, T.; Shimura, H.; Tanaka, T.; Nakashima, K.; Matsuo, K.; Ikeda, S. 2004: Protection of trocar sites from gallbladder cancer implantation in a murine model by physically covering the sites International Surgery 89(4): 202-208
Lai, W.G.; Gardner, I.; Zahid, N.; Uetrecht, J.P. 2000: Bioactivation and covalent binding of hydroxyfluperlapine in human neutrophils: implications for fluperlapine-induced agranulocytosis Drug Metabolism and Disposition: the Biological Fate of Chemicals 28(3): 255-263
Shi, S.T.; Wang, Z.Y.; Smith, T.J.; Hong, J.Y.; Chen, W.F.; Ho, C.T.; Yang, C.S. 1994: Effects of green tea and black tea on 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone bioactivation, DNA methylation, and lung tumorigenesis in A/J mice Cancer Research 54(17): 4641-4647
Arif, J.; Gupta, R. 1996: Effect of inducer and inhibitor probes on DNA adduction of benzo[a]pyrene and 2-acetylaminofluorene and their roles in defining bioactivation mechanism(s) International Journal of Oncology 8(4): 681-685
Verschoyle, R.D.; Wolf, C.R.; Dinsdale, D. 1993: Cytochrome P450 2B isoenzymes are responsible for the pulmonary bioactivation and toxicity of butylated hydroxytoluene, O,O,S-trimethylphosphorothioate and methylcyclopentadienyl manganese tricarbonyl Journal of Pharmacology and Experimental Therapeutics 266(2): 958-963