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Journal of Pharmaceutical Sciences|October 1, 1987
Electrochemical oxidation of 5-hydroxytryptophan in acid solutionK Humphries, G DryhurstBiochemical Pharmacology|November 6, 1991
Interactions of salsolinol with oxidative enzymesZ Fa, G DryhurstJournal of Medicinal Chemistry|April 15, 1994
Effects of L-cysteine on the oxidation chemistry of dopamine: new reaction pathways of potential relevance to idiopathic Parkinson's diseaseF Zhang, G DryhurstJournal of Medicinal Chemistry|July 10, 1992
Metabolism of 5-hydroxytryptamine by brain synaptosomes and microsomes in the presence of cysteine and glutathioneS Singh, G DryhurstJournal of Medicinal Chemistry|January 8, 1993
Oxidation chemistry of the endogenous central nervous system alkaloid salsolinol-1-carboxylic acidF Zhang, G DryhurstJournal of Medicinal Chemistry|November 1, 1990
Further insights into the oxidation chemistry and biochemistry of the serotonergic neurotoxin 5,6-dihydroxytryptamineS Singh, G DryhurstJournal of Pharmaceutical Sciences|March 1, 1990
Electrochemical oxidation of 5-hydroxytryptophol. I: Studies in acid solutionF C Cheng, G DryhurstJournal of Medicinal Chemistry|March 29, 1996
Influence of glutathione on the oxidation of 1-methyl-6-hydroxy-1,2,3,4-tetrahydro-beta-carboline: chemistry of potential relevance to the addictive and neurodegenerative consequences of ethanol useQ P Han, G DryhurstChemical Research in Toxicology|July 22, 1998
Iron- and manganese-catalyzed autoxidation of dopamine in the presence of L-cysteine: possible insights into iron- and manganese-mediated dopaminergic neurotoxicityX M Shen, G DryhurstChemical Research in Toxicology|June 1, 1996
Further insights into the influence of L-cysteine on the oxidation chemistry of dopamine: reaction pathways of potential relevance to Parkinson's diseaseX M Shen, G DryhurstPageof 5