Release and effect ofγ-Aminobutyric acid (GABA) on rat pineal melatonin productionin vitro
暂无分享,去创建一个
[1] D. Cardinali,et al. Cellular and molecular mechanisms controlling melatonin release by mammalian pineal glands , 1987, Cellular and Molecular Neurobiology.
[2] A. Carvalho,et al. Compartmentation and release of exogenous GABA in sheep brain synaptosomes , 1987, Neurochemical Research.
[3] M. Caron,et al. Identification of the Subunit Structure of Rat Pineal Adrenergic Receptors by Photoaffinity Labeling , 1986, Journal of neurochemistry.
[4] D. Klein,et al. Pinealocyte projections into the mammalian brain revealed with S-antigen antiserum. , 1986, Science.
[5] D. Klein,et al. Ovine pineal alpha 1-adrenoceptors: characterization and evidence for a functional role in the regulation of serum melatonin. , 1985, Endocrinology.
[6] R. Quirion. High density of [3H]Ro 5-4864 'peripheral' benzodiazepine binding sites in the pineal gland. , 1984, European journal of pharmacology.
[7] A. Guidotti,et al. Intrinsic GABAergic system of adrenal chromaffin cells. , 1984, Proceedings of the National Academy of Sciences of the United States of America.
[8] A. Foldes,et al. Sheep pineal beta-adrenoceptor function--interaction with gamma-aminobutyric acid. , 1984, Neuroendocrinology.
[9] E. Zimmerman,et al. Benzodiazepines: rat pinealocyte binding sites and augmentation of norepinephrine-stimulated N-acetyltransferase activity. , 1984, The Journal of pharmacology and experimental therapeutics.
[10] D. Klein,et al. Rat Pineal α1-Adrenoceptors: Identification and Characterization Using [125I]Iodo-2-[β-(4-Hydroxyphenyl)-Ethylaminomethyl]Tetralone , 1984 .
[11] F. V. Defeudis,et al. Do different populations of GABA-receptors exist in the vertebrate CNS? , 1983, Neurochemistry International.
[12] D. Cardinali,et al. Role of prostaglandins in rat pineal neuroeffector junction. Changes in melatonin and norepinephrine release in vitro. , 1982, Endocrinology.
[13] I. Mefford. Application of high performance liquid chromatography with electrochemical detection to neurochemical analysis: measurement of catecholamines, serotonin and metabolites in rat brain , 1981, Journal of Neuroscience Methods.
[14] D. Cardinali,et al. Dihydroergocryptine binding sites in bovine and rat pineal glands. , 1980, Journal of the autonomic nervous system.
[15] F. Orrego. Criteria for the identification of central neurotransmitters, and their application to studies with some nerve tissue preparations in vitro , 1979, Neuroscience.
[16] W. Löscher,et al. GABA in plasma and cerebrospinal fluid of different species. Effects of γ‐acetylenic GABA, γ‐vinyl GABA and sodium valproate , 1979 .
[17] R. Caprioli,et al. Measurement of gamma-aminobutyric acid (GABA) in blood. , 1978, Life sciences.
[18] A. Suria,et al. Alterations in gamma-aminobutyric acid content in the rat superior cervical ganglion and pineal gland. , 1977, Life sciences.
[19] D. Klein,et al. On GABA function and physiology in the pineal gland , 1976, Brain Research.
[20] R. Krstić. Ultracytochemistry of the synaptic ribbons in the rat pineal organ , 1976, Cell and Tissue Research.
[21] M. Minchin,et al. COMPARTMENTATION OF AMINO ACID METABOLISM IN THE RAT POSTERIOR PITUITARY , 1975, Journal of neurochemistry.
[22] J. Kelly,et al. On GABA metabolism in the gliocyte cells of the rat pineal gland , 1975, Brain Research.
[23] L. Iversen,et al. RELEASE OF [3H]GAMMA‐AMINOBUTYRIC ACID FROM GLIAL CELLS IN RAT DORSAL ROOT GANGLIA. , 1974, Journal of neurochemistry.
[24] D. A. Brown,et al. Autoradiographic localization of sites of (3H)gamma-aminobutyric acid accumulation in peripheral autonomic ganglia. , 1973, Brain research.
[25] U. Trendelenburg,et al. The influence of denervation and of decentralization on the alpha and beta effects of isoproterenol on the nictitating membrane of the pithed cat. , 1968, The Journal of pharmacology and experimental therapeutics.
[26] D. Cardinali,et al. Neuroendocrine integrative mechanisms in mammalian pineal gland: effects of steroid and adenohypophysial hormones on melatonin synthesis in vitro. , 1987, Journal of steroid biochemistry.
[27] D. Cardinali,et al. Benzodiazepines decrease norepinephrine release from rat pineal nerves by acting on peripheral type binding sites. , 1985, Acta physiologica et pharmacologica latinoamericana : organo de la Asociacion Latinoamericana de Ciencias Fisiologicas y de la Asociacion Latinoamericana de Farmacologia.
[28] J. Tallman,et al. The GABA-ergic system: a locus of benzodiazepine action. , 1985, Annual review of neuroscience.
[29] L. Vollrath. Mammalian pinealocytes: ultrastructural aspects and innervation. , 1985, Ciba Foundation symposium.
[30] W. Walz. Uptake and Release of Amino Acid Neurotransmitters , 1985 .
[31] J. van Benthem,et al. The influence of GABA on the synthesis of N-acetylserotonin, melatonin, O-acetyl-5-hydroxytryptophol and O-acetyl-5-methoxytryptophol in the pineal gland of the male Wistar rat. , 1983, Reproduction, nutrition, developpement.
[32] J. Palacios,et al. GABA and glycine receptors in rat brain: autoradiographic localization. , 1981, Advances in biochemical psychopharmacology.