The role of aldehyde oxidase in drug metabolism
暂无分享,去创建一个
[1] R. Hille. Molybdenum and tungsten in biology. , 2002, Trends in biochemical sciences.
[2] O. Hankinson,et al. Identification of aldehyde oxidase 1 and aldehyde oxidase homologue 1 as dioxin-inducible genes. , 2005, Toxicology.
[3] K. Iyer,et al. Isolation of Liver Aldehyde Oxidase Containing Fractions from Different Animals and Determination of Kinetic Parameters for Benzaldehyde , 2008, Indian journal of pharmaceutical sciences.
[4] Christian Schmidl,et al. Aldehyde oxidase 1 is highly abundant in hepatic steatosis and is downregulated by adiponectin and fenofibric acid in hepatocytes in vitro. , 2006, Biochemical and biophysical research communications.
[5] S. Kitamura,et al. Reduction of tertiary amine N-oxides by liver preparations: function of aldehyde oxidase as a major N-oxide reductase. , 1984, Biochemical and biophysical research communications.
[6] N. Watanabe,et al. Lack of dimer formation ability in rat strains with low aldehyde oxidase activity , 2007, Xenobiotica; the fate of foreign compounds in biological systems.
[7] C. Beedham. The role of non—P450 enzymes in drug oxidation. , 1997, Pharmacy World and Science.
[8] S. Kitamura,et al. Developmental Changes of Aldehyde Oxidase Activity in Young Japanese Children , 2007, Clinical pharmacology and therapeutics.
[9] E. Pai,et al. Unique amino acids cluster for switching from the dehydrogenase to oxidase form of xanthine oxidoreductase , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[10] D. G. Walters,et al. Inhibition of zaleplon metabolism by cimetidine in the human liver: in vitro studies with subcellular fractions and precision-cut liver slices , 2002, Xenobiotica; the fate of foreign compounds in biological systems.
[11] M. Seldin,et al. Chromosomal mapping, isolation, and characterization of the mouse xanthine dehydrogenase gene. , 1994, Genomics.
[12] Desmond O'Connor,et al. Pharmacokinetics and metabolism studies on (3-tert-butyl-7-(5-methylisoxazol-3-yl)-2-(1-methyl-1H-1,2,4-triazol-5-ylmethoxy) pyrazolo[1,5-d][1,2,4]triazine, a functionally selective GABA(A) alpha5 inverse agonist for cognitive dysfunction. , 2006, Bioorganic & medicinal chemistry letters.
[13] P. LoRusso,et al. Bioavailability and pharmacokinetics of the investigational anticancer agent XK469 (NSC 698215) in rats following oral and intravenous administration , 2005, Cancer Chemotherapy and Pharmacology.
[14] C. Beedham,et al. Kinetics and specificity of guinea pig liver aldehyde oxidase and bovine milk xanthine oxidase towards substituted benzaldehydes. , 2004, Acta biochimica Polonica.
[15] S. Demontis,et al. Isolation and characterization of the human aldehyde oxidase gene: conservation of intron/exon boundaries with the xanthine oxidoreductase gene indicates a common origin. , 1998, The Biochemical journal.
[16] E. Garattini,et al. The xanthine oxidoreductase gene: structure and regulation. , 1997, Biochemical Society Transactions.
[17] S. Leimkühler,et al. Site Directed Mutagenesis of Amino Acid Residues at the Active Site of Mouse Aldehyde Oxidase AOX1 , 2009, PloS one.
[18] M. Relling,et al. Genetic Studies of a Cluster of Acute Lymphoblastic Leukemia Cases in Churchill County, Nevada , 2006, Environmental health perspectives.
[19] L. Lindblom,et al. The enzyme "aldehyde oxidase" is an iminium oxidase. Reaction with nicotine delta 1'(5') iminium ion. , 1979, Biochemical and biophysical research communications.
[20] D. Kouretas,et al. Contribution of aldehyde oxidase, xanthine oxidase, and aldehyde dehydrogenase on the oxidation of aromatic aldehydes. , 2004, Chemical research in toxicology.
[21] R. Obach,et al. Human Liver Aldehyde Oxidase: Inhibition by 239 Drugs , 2004, Journal of clinical pharmacology.
[22] D. Kouretas,et al. Substrate specificity of guinea pig liver aldehyde oxidase and bovine milk xanthine oxidase for methyl- and nitrobenzaldehydes , 2010, European Journal of Drug Metabolism and Pharmacokinetics.
[23] M. Fratelli,et al. Mammalian aldehyde oxidases: genetics, evolution and biochemistry , 2008, Cellular and Molecular Life Sciences.
[24] R. Obach,et al. Drugs That Inhibit Oxidation Reactions Catalyzed by Aldehyde Oxidase Do Not Inhibit the Reductive Metabolism of Ziprasidone to its Major Metabolite, S-Methyldihydroziprasidone: An In Vitro Study , 2005, Journal of Clinical Psychopharmacology.
[25] Jeffrey P. Jones,et al. Purification and Mechanism of Human Aldehyde Oxidase Expressed in Escherichia coli , 2009, Drug Metabolism and Disposition.
[26] M. Salmona,et al. Regulation and Biochemistry of Mouse Molybdo-flavoenzymes , 2004, Journal of Biological Chemistry.
[27] Kuresh Youdim,et al. In Vitro-In Vivo Correlation for Intrinsic Clearance for Drugs Metabolized by Human Aldehyde Oxidase , 2010, Drug Metabolism and Disposition.
[28] T. Spector,et al. 5-ethynyl-2(1H)-pyrimidinone: aldehyde oxidase-activation to 5-ethynyluracil, a mechanism-based inactivator of dihydropyrimidine dehydrogenase. , 1994, Biochemical pharmacology.
[29] K. Dohi,et al. Differences in aldehyde oxidase activity in cytosolic preparations of human and monkey liver , 1997, Biochemistry and molecular biology international.
[30] D. O'connor,et al. Aldehyde oxidase and its contribution to the metabolism of a structurally novel, functionally selective GABAA α5-subtype inverse agonist , 2006, Xenobiotica; the fate of foreign compounds in biological systems.
[31] M. Salmona,et al. Cloning of the cDNAs Coding for Two Novel Molybdo-flavoproteins Showing High Similarity with Aldehyde Oxidase and Xanthine Oxidoreductase* , 2000, The Journal of Biological Chemistry.
[32] M. Rashidi,et al. In vitro study of 6-mercaptopurine oxidation catalysed by aldehyde oxidase and xanthine oxidase. , 2007, Drug metabolism and pharmacokinetics.
[33] Deepak Dalvie,et al. Aldehyde oxidase: an enzyme of emerging importance in drug discovery. , 2010, Journal of medicinal chemistry.
[34] E. Garattini,et al. Increasing recognition of the importance of aldehyde oxidase in drug development and discovery , 2011, Drug metabolism reviews.
[35] C. Beedham,et al. Metabolism of Isovanillin by Aldehyde Oxidase, Xanthine Oxidase, Aldehyde Dehydrogenase and Liver Slices , 2005, Pharmacology.
[36] C. Beedham,et al. Biotransformation of carbazeran in guinea pig: effect of hydralazine pretreatment. , 1994, Xenobiotica; the fate of foreign compounds in biological systems.
[37] R. Obach,et al. Cross-Species Comparison of the Metabolism and Excretion of Zoniporide: Contribution of Aldehyde Oxidase to Interspecies Differences , 2010, Drug Metabolism and Disposition.
[38] G. Panoutsopoulos. Metabolism of Homovanillamine to Homovanillic Acid in Guinea Pig Liver Slices , 2005, Cellular Physiology and Biochemistry.
[39] Peter A. Jones,et al. Long-term Epigenetic Therapy with Oral Zebularine Has Minimal Side Effects and Prevents Intestinal Tumors in Mice , 2008, Cancer Prevention Research.
[40] M. Pairish,et al. Systematic structure modifications of imidazo[1,2-a]pyrimidine to reduce metabolism mediated by aldehyde oxidase (AO). , 2011, Journal of medicinal chemistry.
[41] R. Obach,et al. Ziprasidone Metabolism, Aldehyde Oxidase, and Clinical Implications , 2003, Journal of clinical psychopharmacology.
[42] Delazar Abbas,et al. Inhibitory Effects of Ruta graveolens L. Extract on Guinea Pig Liver Aldehyde Oxidase , 2006 .
[43] N. Watanabe,et al. Lack of Formation of Aldehyde Oxidase Dimer Possibly Due to 377G>A Nucleotide Substitution , 2007, Drug Metabolism and Disposition.
[44] S. Polsky,et al. The biotransformation of nitrogen containing xenobiotics to lactams. , 2000, Current drug metabolism.
[45] R. Gamage,et al. Methadone: a potent inhibitor of rat liver aldehyde oxidase. , 1994, Biochemical pharmacology.
[46] J. Čejková,et al. Comparative histochemical and immunohistochemical study on xanthine oxidoreductase/xanthine oxidase in mammalian corneal epithelium. , 2004, Acta histochemica.
[47] E. Garattini,et al. Expression of xanthine oxidoreductase in mouse mammary epithelium during pregnancy and lactation: regulation of gene expression by glucocorticoids and prolactin. , 1996, The Biochemical journal.
[48] G. Panoutsopoulos. Phenylacetaldehyde Oxidation by Freshly Prepared and Cryopreserved Guinea Pig Liver Slices: The Role of Aldehyde Oxidase , 2005, International journal of toxicology.
[49] S. Ohta,et al. Prediction of Human Metabolism of FK3453 by Aldehyde Oxidase Using Chimeric Mice Transplanted with Human or Rat Hepatocytes , 2012, Drug Metabolism and Disposition.
[50] C. Beedham. Molybdenum hydroxylases: biological distribution and substrate-inhibitor specificity. , 1987, Progress in medicinal chemistry.
[51] C. Enroth,et al. Crystal structures of bovine milk xanthine dehydrogenase and xanthine oxidase: structure-based mechanism of conversion. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[52] M. Hiratsuka,et al. Genetic Polymorphism of Aldehyde Oxidase in Donryu Rats , 2007, Drug Metabolism and Disposition.
[53] S. Kitamura,et al. Developmental changes of aldehyde oxidase in postnatal rat liver. , 2007, Drug metabolism and pharmacokinetics.
[54] G. Panoutsopoulos. Contribution of Aldehyde Oxidizing Enzymes on the Metabolism of 3,4-Dimethoxy-2-phenylethylamine to 3,4-Dimethoxyphenylacetic Acid by Guinea Pig Liver Slices , 2006, Cellular Physiology and Biochemistry.
[55] G. Panoutsopoulos. Metabolism of 2-phenylethylamine to phenylacetic acid, via the intermediate phenylacetaldehyde, by freshly prepared and cryopreserved guinea pig liver slices. , 2004, In vivo.
[56] M. Fratelli,et al. Avian and Canine Aldehyde Oxidases , 2006, Journal of Biological Chemistry.
[57] Takeshi Nishino,et al. Mammalian xanthine oxidoreductase – mechanism of transition from xanthine dehydrogenase to xanthine oxidase , 2008, The FEBS journal.
[58] S. Munk,et al. Characterization of brimonidine metabolism with rat, rabbit, dog, monkey and human liver fractions and rabbit liver aldehyde oxidase. , 1996, Xenobiotica; the fate of foreign compounds in biological systems.
[59] P. C. Ruenitz,et al. Acidic metabolites of tamoxifen. Aspects of formation and fate in the female rat. , 1995, Drug metabolism and disposition: the biological fate of chemicals.
[60] M. Hayashi,et al. Species differences in oral bioavailability of methotrexate between rats and monkeys. , 2000, Biological & pharmaceutical bulletin.
[61] M. Relling,et al. Racial and gender differences in N‐acetyltransferase, xanthine oxidase, and CYP1A2 * activities , 1992, Clinical pharmacology and therapeutics.
[62] M. Rashidi,et al. Inhibitory effects of flavonoids on aldehyde oxidase activity. , 2009, Journal of enzyme inhibition and medicinal chemistry.
[63] M. Romão,et al. Mammalian molybdo-flavoenzymes, an expanding family of proteins: structure, genetics, regulation, function and pathophysiology. , 2003, The Biochemical journal.
[64] Liang-Shang Gan,et al. Disposition of 1-[3-(aminomethyl)phenyl]-N-[3-fluoro-2'- (methylsulfonyl)-[1,1'-biphenyl]-4-yl]-3-(trifluoromethyl)- 1H-pyrazole-5-carboxamide (DPC 423) by novel metabolic pathways. Characterization of unusual metabolites by liquid chromatography/mass spectrometry and NMR. , 2002, Chemical research in toxicology.
[65] R. K. Robins,et al. Studies on the mode of oxidation of pyrazolo(3,4-d)pyrimidine by aldehyde oxidase and xanthine oxidase. , 1969, Biochemical pharmacology.
[66] J. Collins,et al. Zebularine metabolism by aldehyde oxidase in hepatic cytosol from humans, monkeys, dogs, rats, and mice: influence of sex and inhibitors. , 2006, Bioorganic & medicinal chemistry.
[67] L. De Gioia,et al. Purification, cDNA Cloning, and Tissue Distribution of Bovine Liver Aldehyde Oxidase (*) , 1995, The Journal of Biological Chemistry.
[68] G. Izaguirre,et al. Metabolism of Retinaldehyde and Other Aldehydes in Soluble Extracts of Human Liver and Kidney* , 1999, The Journal of Biological Chemistry.
[69] A. D. Rodrigues,et al. The in vitro hepatic metabolism of ABT-418, a cholinergic channel activator, in rats, dogs, cynomolgus monkeys, and humans. , 1994, Drug metabolism and disposition: the biological fate of chemicals.
[70] J. Sahi,et al. Aldehyde oxidase activity and inhibition in hepatocytes and cytosolic fractions from mouse, rat, monkey and human. , 2008, Drug metabolism letters.
[71] Y. Moriwaki,et al. In vitro oxidation of pyrazinamide and allopurinol by rat liver aldehyde oxidase. , 1993, Biochemical Pharmacology.
[72] B. Palmer,et al. Cytosol mediated metabolism of the experimental antitumor agent acridine carboxamide to the 9-acridone derivative. , 1991, Biochemical pharmacology.
[73] J. McCormack,et al. Oxidation of selected pteridine derivatives by mamalian liver xanthine oxidase and aldehyde oxidase. , 1976, Journal of pharmaceutical sciences.
[74] H. Hwang,et al. Preclinical study of the systemic toxicity and pharmacokinetics of 5-iodo-2-deoxypyrimidinone-2'-deoxyribose as a radiosensitizing prodrug in two, non-rodent animal species: implications for phase I study design. , 2000, Clinical cancer research : an official journal of the American Association for Cancer Research.
[75] R. Obach,et al. Potent inhibition of human liver aldehyde oxidase by raloxifene. , 2004, Drug metabolism and disposition: the biological fate of chemicals.
[76] N. Watanabe,et al. Construction and expression of mutant cDNAs responsible for genetic polymorphism in aldehyde oxidase in Donryu strain rats. , 2007, Journal of biochemistry and molecular biology.
[77] Y. Cheng,et al. 5-Fluoro-2-pyrimidinone, a liver aldehyde oxidase-activated prodrug of 5-fluorouracil. , 1995, Biochemical pharmacology.
[78] S. Kitamura,et al. Variation of Hepatic Methotrexate 7‐Hydroxylase Activity in Animals and Humans , 1999, IUBMB life.
[79] J. Brown,et al. Aldehyde Oxidase‐catalysed Oxidation of Methotrexate in the Liver of Guinea‐pig, Rabbit and Man , 1999, The Journal of pharmacy and pharmacology.
[80] J. Stell,et al. Elevation of molybdenum hydroxylase levels in rabbit liver after ingestion of phthalazine or its hydroxylated metabolite. , 1984, Biochemical pharmacology.
[81] D. Sakarkar,et al. Development and Evaluation of Oral Controlled Release Chlorpheniramine-Ion Exchange Resinate Suspension , 2008, Indian journal of pharmaceutical sciences.
[82] M. Rashidi,et al. In vitro oxidation of famciclovir and 6-deoxypenciclovir by aldehyde oxidase from human, guinea pig, rabbit, and rat liver. , 1997, Drug metabolism and disposition: the biological fate of chemicals.
[83] F. Ayala,et al. Convergent neofunctionalization by positive Darwinian selection after ancient recurrent duplications of the xanthine dehydrogenase gene , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[84] C. Beedham,et al. Species variation in hepatic aldehyde oxidase activity , 1987, European Journal of Drug Metabolism and Pharmacokinetics.
[85] B. Testa,et al. Stereoselective biotransformation of the selective serotonin reuptake inhibitor citalopram and its demethylated metabolites by monoamine oxidases in human liver. , 1998, Biochemical pharmacology.
[86] M. Rashidi,et al. Inhibitory effects of Ruta graveolens L. extract on guinea pig liver aldehyde oxidase. , 2006, Chemical & pharmaceutical bulletin.
[87] R. Fanelli,et al. Purification of the Aldehyde Oxidase Homolog 1 (AOH1) Protein and Cloning of the AOH1 and Aldehyde Oxidase Homolog 2 (AOH2) Genes , 2001, The Journal of Biological Chemistry.
[88] M. Fratelli,et al. The mammalian aldehyde oxidase gene family , 2009, Human Genomics.
[89] A. D. Rodrigues. Comparison of levels of aldehyde oxidase with cytochrome P450 activities in human liver in vitro. , 1994, Biochemical pharmacology.
[90] A. Hartmann,et al. Small‐interference RNA‐mediated knock‐down of aldehyde oxidase 1 in 3T3‐L1 cells impairs adipogenesis and adiponectin release , 2008, FEBS letters.
[91] S. Kitamura,et al. Drug-metabolizing ability of molybdenum hydroxylases. , 2006, Drug metabolism and pharmacokinetics.
[92] L. Lindblom,et al. The enzyme “aldehyde oxidase” is an iminium oxidase. Reaction with nicotine Δ1′(5′) iminium ion , 1979 .
[93] E. Squires,et al. Role of aldehyde oxidase in the hepatic in vitro metabolism of 3-methylindole in pigs. , 2000, Journal of agricultural and food chemistry.
[94] M. Rashidi,et al. Quantitative study of the structural requirements of phthalazine/quinazoline derivatives for interaction with human liver aldehyde oxidase. , 2001, Chemical & pharmaceutical bulletin.
[95] J. Smith,et al. Role of guinea pig and rabbit hepatic aldehyde oxidase in oxidative in vitro metabolism of cinchona antimalarials. , 1992, Drug metabolism and disposition: the biological fate of chemicals.
[96] J. Casida,et al. Substrate specificity of rabbit aldehyde oxidase for nitroguanidine and nitromethylene neonicotinoid insecticides. , 2006, Chemical research in toxicology.
[97] S. Kitamura,et al. Involvement of liver aldehyde oxidase in the reduction of nicotinamide N-oxide. , 1984, Biochemical and biophysical research communications.
[98] E. Scanziani,et al. Role of the Molybdoflavoenzyme Aldehyde Oxidase Homolog 2 in the Biosynthesis of Retinoic Acid: Generation and Characterization of a Knockout Mouse , 2008, Molecular and Cellular Biology.
[99] C. Beedham,et al. Substrate specificity of human liver aldehyde oxidase toward substituted quinazolines and phthalazines: a comparison with hepatic enzyme from guinea pig, rabbit, and baboon. , 1995, Archives of biochemistry and biophysics.
[100] M. Salmona,et al. The Aldehyde Oxidase Gene Cluster in Mice and Rats , 2004, Journal of Biological Chemistry.
[101] P. Perani,et al. Molecular cloning of a cDNA coding for mouse liver xanthine dehydrogenase. Regulation of its transcript by interferons in vivo. , 1992, The Biochemical journal.
[102] S. Demontis,et al. Molecular cloning of the cDNA coding for mouse aldehyde oxidase: tissue distribution and regulation in vivo by testosterone. , 1999, The Biochemical journal.
[103] R. Cysyk,et al. An extremely potent anilinoacridine inhibitor of aldehyde oxidase. , 1983, Biochemical and biophysical research communications.