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Selective dopaminergic vulnerability: 3,4-dihydroxyphenylacetaldehyde targets mitochondria
Free Radicals / Membrane Proteins / Enzyme Inhibitors / Mitochondria / Ion Channels / Dopamine / Cell Differentiation / Animals / Male / Cell Death / PT / Substantia nigra / Cyclosporine / Respiration / Neuronal Differentiation / Mitochondrial dysfunction / Rats / CSA / Disease Progression / Mechanism of action / Nerve Growth Factor / Trifluoperazine / Monoamine oxidase / Parkinson Disease / Biochemistry and cell biology / Dopamine antagonists / Dopamine / Cell Differentiation / Animals / Male / Cell Death / PT / Substantia nigra / Cyclosporine / Respiration / Neuronal Differentiation / Mitochondrial dysfunction / Rats / CSA / Disease Progression / Mechanism of action / Nerve Growth Factor / Trifluoperazine / Monoamine oxidase / Parkinson Disease / Biochemistry and cell biology / Dopamine antagonists
Potent 4-amino-5-azaindole factor VIIa inhibitors
Organic Chemistry / PT / Pyridines / Bioorganic and medicinal Chemistry / Structure activity Relationship / Chemical Synthesis / Serine Protease / Tissue Factor / Molecular Structure / Selectivity / Chemical Synthesis / Serine Protease / Tissue Factor / Molecular Structure / Selectivity
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