Journal of Medicinal Chemistry · 1998 · 83 citations · 25 references
Mao-a Inhibitory ActivityPharmaceutical ScienceCondensed PyridazinesOrganic ChemistryChemistryChemical BiologyExperimental PharmacologyPharmaceutical ChemistryRp-hplc RetentionMolecular PharmacologyMedicinal ChemistryDrug AnalysisDerivativesMao-b Inhibitory ActivityBiochemistryMechanism Of ActionPharmacologyMolecular ModelingNatural SciencesStructure−activity RelationshipsMonoamine NeurotransmittersRational Drug DesignMedicineDrug DiscoveryMonoamine Oxidase-b
A number of condensed pyridazines and pyrimidines were synthesized and tested for their monoamine oxidase-A (MAO-A) and MAO-B inhibitory activity. Their lipophilicity was examined by measuring partition coefficients and RP-HPLC capacity factors, revealing some peculiar electronic and conformational effects. Further insights were obtained by X-ray crystallography and a thermodynamic study of RP-HPLC retention. Structure−activity relations highlighted the main factors determining both selectivity and inhibitory potency. Thus, while most of the condensed pyridazines were reversible inhibitors of MAO-B with little or no MAO-A effects, the pyrimidine derivatives proved to be reversible and selective MAO-A inhibitors. Substituents on the diazine nucleus modulated enzyme inhibition. A QSAR analysis of X-substituted 3-X-phenyl-5H-indeno[1,2-c]pyridazin-5-ones showed lipophilicity to increase MAO-B and not MAO-A inhibitory activity.
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Chronic Parkinsonism in Humans Due to a Product of Meperidine-Analog Synthesis
J. William Langston, Philip L. Ballard, James W. Tetrud et al. · Science · 1983 · 4.9K citations