Effect of 8-hydroxy-2-(di-n-propylamino)-tetralin on the tryptophan-induced increase in 5-hydroxytryptophan accumulation in rat brain.
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[1] J. Schaechter,et al. Tryptophan Availability Modulates Serotonin Release from Rat Hypothalamic Slices , 1989, Journal of neurochemistry.
[2] K. Perry,et al. Determination of brain concentrations of 8-hydroxy-2-(di-n-propylamino)tetralin by liquid chromatography with electrochemical detection. , 1989, Biochemical pharmacology.
[3] D G Grahame-Smith,et al. In Vivo Measurement of Extracellular 5‐Hydroxytryptamine in Hippocampus of the Anaesthetized Rat Using Microdialysis: Changes in Relation to 5‐Hydroxytryptaminergic Neuronal Activity , 1989, Journal of neurochemistry.
[4] P. H. Hutson,et al. Hippocampal 5-HT synthesis and release in vivo is decreased by infusion of 8-OHDPAT into the nucleus raphe dorsalis , 1989, Neuroscience Letters.
[5] C. de Montigny,et al. Electrophysiological assessment of putative antagonists of 5-hydroxytryptamine receptors: a single-cell study in the rat dorsal raphe nucleus. , 1989, Canadian journal of physiology and pharmacology.
[6] S. Hjorth,et al. The 5-HT1A receptor agonist, 8-OH-DPAT, preferentially activates cell body 5-HT autoreceptors in rat brain in vivo , 1988, Naunyn-Schmiedeberg's Archives of Pharmacology.
[7] I. Reynolds,et al. Tricyclic antidepressants block N‐methyl‐D‐aspartate receptors: similarities to the action of zinc , 1988, British journal of pharmacology.
[8] T. Phan,et al. Tryptophan hydroxylase: increase in activity by electrical stimulation of serotonergic neurons , 1986, Neurochemistry International.
[9] M. Fernstrom,et al. Effect of tyrosine administration on dopa accumulation in light- and dark-adapted retinas from normal and diabetic rats. , 1986, Life sciences.
[10] C. J. Gibson. Dietary control of retinal dopamine synthesis , 1986, Brain Research.
[11] G. Aghajanian,et al. (-)-Propranolol blocks the inhibition of serotonergic dorsal raphe cell firing by 5-HT1A selective agonists. , 1986, European journal of pharmacology.
[12] M. Fernstrom,et al. Effects of aspartame ingestion on the carbohydrate-induced rise in tryptophan hydroxylation rate in rat brain. , 1986, The American journal of clinical nutrition.
[13] M. Fernstrom,et al. Absence of chronic effects of dietary protein content on brain tryptophan concentrations in rats. , 1985, The Journal of nutrition.
[14] F. Artaud,et al. Biochemical evidence for the 5-HT agonist properties of PAT (8-hydroxy-2-(di-n-propylamino)tetralin) in the rat brain. , 1984, European journal of pharmacology.
[15] R. Roth,et al. Pharmacology of mesocortical dopamine neurons. , 1983, Pharmacological reviews.
[16] A. Sved,et al. A simple, sensitive and reliable assay for serotonin and 5-HIAA in brain tissue using liquid chromatography with electrochemical detection. , 1980, Life sciences.
[17] J. Glowinski,et al. THE ROLE OF INTRANEURONAL 5‐HT AND OF TRYPTOPHAN HYDROXYLASE ACTIVATION IN THE CONTROL OF 5‐HT SYNTHESIS IN RAT BRAIN SLICES INCUBATED IN K+‐ENRICHED MEDIUM , 1979, Journal of neurochemistry.
[18] S. Snyder,et al. Tricyclic antidepressants: therapeutic properties and affinity for alpha-noradrenergic receptor binding sites in the brain. , 1978, Science.
[19] R. Fuller,et al. Regulation of enzymes that synthesize neurotransmitter monoamines. , 1976, Advances in enzyme regulation.
[20] J. Bartko,et al. Statistics for disinterested scientists. , 1976, Life sciences.
[21] R. Wurtman,et al. EFFECTS OF INGESTION OF A CARBOHYDRATE‐FAT MEAL ON THE LEVELS AND SYNTHESIS OF 5‐HYDROXYINDOLES IN VARIOUS REGIONS OF THE RAT CENTRAL NERVOUS SYSTEM , 1975, Journal of neurochemistry.
[22] R. Roth,et al. Tryptophan hydroxylase: activation in vivo following stimulation of central serotonergic neurons. , 1975, Biochemical pharmacology.
[23] G. Aghajanian,et al. Effects of chlorimipramine and lysergic acid diethylamide on efflux of precursor-formed 3-H-serotonin: correlations with serotonergic impulse flow. , 1975, The Journal of pharmacology and experimental therapeutics.
[24] P. Knott,et al. EFFECT OF INCREASED RAT BRAIN TRYPTOPHAN ON 5‐HYDROXYTRYPTAMINE AND 5‐HYDROXYINDOLYL ACETIC ACID IN THE HYPOTHALAMUS AND OTHER BRAIN REGIONS , 1974, Journal of neurochemistry.
[25] R. Wurtman,et al. Brain Serotonin Content: Physiological Dependence on Plasma Tryptophan Levels , 1971, Science.
[26] L. Iversen,et al. REGIONAL STUDIES OF CATECHOLAMINES IN THE RAT BRAIN‐I , 1966, Journal of neurochemistry.
[27] D. Eccleston,et al. 5‐HYDROXYINDOLE METABOLISM IN RAT BRAIN. A STUDY OF INTERMEDIATE METABOLISM USING THE TECHNIQUE OF TRYPTOPHAN LOADING–I METHODS , 1965, Journal of neurochemistry.