Chapter 5 Amino Acid Neurotransmitter Candidates

[1]  Abel Lajtha,et al.  Handbook of Neurochemistry , 2013, Springer US.

[2]  H. Mclennan,et al.  Kainic acid and the glutamate receptor , 1978, Neuroscience Letters.

[3]  H. Fukushima,et al.  Effects of benzodiazepines and pentobarbitone on the gaba-ergic recurrent inhibition of hippocampal neurons. , 1978, European journal of pharmacology.

[4]  H. Mclennan,et al.  A synthetic, conformationally restricted analogue of L-glutamic acid which acts as a powerful neuronal excitant , 1978, Neuroscience Letters.

[5]  G. Fischbach,et al.  Chlordiazepoxide selectively augments GABA action in spinal cord cell cultures , 1977, Nature.

[6]  R. Hassler,et al.  Effect of frontal cortex ablation on striatal glutamic acid level in rat , 1977, Brain Research.

[7]  P. Mcgeer,et al.  A glutamatergic corticostriatal path? , 1977, Brain Research.

[8]  Solomon H. Snyder,et al.  Influences of Ions, Enzymes, and Detergents on γ-Aminobutyric Acid-Receptor Binding in Synaptic Membranes of Rat Brain , 1977 .

[9]  S. Snyder,et al.  Stereospecificity and structure-activity requirements of GABA receptor binding in rat brain , 1977, Brain Research.

[10]  D. Wong,et al.  Na+-independent binding of GABA to the triton X-100 treated synaptic membranes from cerebellum of rat brain. , 1977, Life sciences.

[11]  S. Enna Neurobiology and pharmacology of Huntington's disease. , 1977, Life sciences.

[12]  D. Grosso,et al.  Taurine and cardiac physiology. , 1976, Biochemical pharmacology.

[13]  S. Snyder,et al.  Gamma-aminobutyric acid (GABA) receptor binding in mammalian retina , 1976, Brain Research.

[14]  P. Mcgeer,et al.  Duplication of biochemical changes of Huntington's chorea by intrastriatal injections of glutamic and kainic acids , 1976, Nature.

[15]  M. Neal Amino acid transmitter substances in the vertebrate retina. , 1976, General pharmacology.

[16]  J. Coyle,et al.  Lesion of striatal neurons with kainic acid provides a model for Huntington's chorea , 1976, Nature.

[17]  R. Prager,et al.  Antagonism of GABA-mediated inhibition in the central nervous system by caprolactam derivatives , 1976, Brain Research.

[18]  D. Felten,et al.  Neurochemical correlates of spasticity. , 1976, Life sciences.

[19]  H. Shinozaki,et al.  Inhibition of quisqualate responses by domoic or kainic acid in crayfish opener muscle , 1976, Brain Research.

[20]  N. Bowery,et al.  Bicyclic phosphorus esters that are potent convulsants and GABA antagonists , 1976, Nature.

[21]  S. Snyder,et al.  Properties of γ-aminobutyric acid (GABA) receptor binding in rat brain synaptic membrane fractions , 1975, Brain Research.

[22]  D. R. Curtis,et al.  STRUCTURE AND BIOLOGICAL ACTIVITY OF A SERIES OF CONFORMATIONALLY RESTRICTED ANALOGUES OF GABA , 1975, Journal of neurochemistry.

[23]  N. Bowery,et al.  TETRAMETHYLENEDISULPHOTETRAMINE: AN INHIBITOR OF γ‐AMINOBUTYRIC ACID INDUCED DEPOLARIZATION OF THE ISOLATED SUPERIOR CERVICAL GANGLION OF THE RAT , 1975, British journal of pharmacology.

[24]  H. Shinozaki,et al.  Potentiation of glutamate-induced depolarization by kainic acid in the crayfish opener muscle. , 1974, Neuropharmacology.

[25]  S. Snyder,et al.  The glycine synaptic receptor: evidence that strychnine binding is associated with the ionic conductance mechanism. , 1974, Proceedings of the National Academy of Sciences of the United States of America.

[26]  E. Roberts Gamma-aminobutyric acid and nervous system function--a perspective. , 1974, Biochemical pharmacology.

[27]  G. Collins The rates of synthesis, uptake and disappearance of (14C)-taurine in eight areas of the rat central nervous system. , 1974, Brain research.

[28]  D. Brown,et al.  DEPOLARIZING ACTIONS OF γ‐AMINOBUTYRIC ACID AND RELATED COMPOUNDS ON RAT SUPERIOR CERVICAL GANGLIA IN VITRO , 1974, British journal of pharmacology.

[29]  D. R. Curtis,et al.  Central actions of shikimin and tutin. , 1973, Brain research.

[30]  S. Snyder,et al.  Strychnine binding associated with glycine receptors of the central nervous system. , 1973, Proceedings of the National Academy of Sciences of the United States of America.

[31]  A. Barbeau,et al.  Taurine in epilepsy. , 1973, Lancet.

[32]  N. M. Gelder Antagonism by taurine of cobalt induced epilepsy in cat and mouse. , 1972, Brain research.

[33]  H. Mclennan,et al.  The antagonistic action of glutamic acid diethylester towards amino acid-induced and synaptic excitations of central neurones. , 1972, Brain research.

[34]  L. Kaczmarek,et al.  UPTAKE AND RELEASE OF TAURINE FROM RAT BRAIN SLICES , 1972, Journal of neurochemistry.

[35]  S. Snyder,et al.  High affinity uptake systems for glycine, glutamic and aspaspartic acids in synaptosomes of rat central nervous tissues. , 1972, Brain research.

[36]  F. Bloom,et al.  Studies of the uptake of 3 H-gaba and ( 3 H)glycine in slices and homogenates of rat brain and spinal cord by electron microscopic autoradiography. , 1972, Brain research.

[37]  M. Uhr,et al.  THE REGIONAL DISTRIBUTION OF d‐GLYCERATE DEHYDROGENASE AND 3‐PHOSPHOGLYCERATE DEHYDROGENASE IN THE CAT CENTRAL NERVOUS SYSTEM: CORRELATION WITH GLYCINE LEVELS , 1972, Journal of neurochemistry.

[38]  H. Mclennan,et al.  The antagonism of the glutamate-induced and synaptic excitations of thalamic neurones. , 1972, Brain research.

[39]  H McLennan,et al.  Antagonism between bicuculline and GABA in the cat brain. , 1971, Brain research.

[40]  D. R. Curtis,et al.  Bicuculline, an antagonist of GABA and synaptic inhibition in the spinal cord of the cat. , 1971, Brain research.

[41]  M. Neal The uptake of [14C]glycine by slices of mammalian spinal cord , 1971, The Journal of physiology.

[42]  H. Bradford Metabolic response of synaptosomes to electrical stimulation: release of amino acids. , 1970, Brain research.

[43]  D. Straughan,et al.  Amino‐acid induced depression of cortical neurones , 1970, British journal of pharmacology.

[44]  E. Peck,et al.  Formation of taurine and isethionic acid in rat brain. , 1967, Biochimica et biophysica acta.

[45]  R. Werman,et al.  DISTRIBUTION OF SOME SYNAPTIC TRANSMITTER SUSPECTS IN CAT SPINAL CORD: GLUTAMIC ACID, ASPARTIC ACID, γ‐AMINOBUTYRIC ACID, GLYCINE, AND GLUTAMINE * , 1967, Journal of neurochemistry.

[46]  R. A. Davidoff,et al.  The inhibitory action of cystathionine. , 1966, Life sciences.

[47]  Bridgers Wf The biosynthesis of serine in mouse brain extracts. , 1965 .

[48]  D. R. Curtis,et al.  The pharmacology of amino acids related to gamma-aminobutyric acid. , 1965, Pharmacological reviews.

[49]  P. Marks,et al.  Control of Hæmoglobin A and F Synthesis: Hæmoglobin Formation in Fœtal and Adult Erythroid Cells , 1964, Nature.

[50]  H. Goodman,et al.  Urinary Excretion of Beta-Amino-Isobutyric Acid and Taurine in Mongolism , 1964, Nature.

[51]  D. R. Curtis,et al.  Acidic amino acids with strong excitatory actions on mammalian neurones , 1963, The Journal of physiology.

[52]  J. Brotherton Studies on the metabolism of the rat retina with special reference to retinitis pigmentosa. II. Amino acid content as shown by chromatography. , 1962, Experimental eye research.

[53]  C. Malhotra,et al.  AMINO ACID CONTENT OF MONKEY BRAIN‐I , 1962 .

[54]  D. R. Curtis,et al.  THE EXCITATION AND DEPRESSION OF SPINAL NEURONES BY STRUCTURALLY RELATED AMINO ACIDS , 1960, Journal of neurochemistry.

[55]  D. R. Curtis,et al.  The chemical excitation of spinal neurones by certain acidic amino acids , 1960, The Journal of physiology.

[56]  F. J. Vinick,et al.  Chapter 4. Agents Affecting GABA in the CNS , 1978 .

[57]  G. Johnston Neuropharmacology of amino acid inhibitory transmitters. , 1978, Annual review of pharmacology and toxicology.

[58]  Eugene Roberts,et al.  GABA in nervous system function , 1976 .

[59]  Neil C. Davidson Neurotransmitter amino acids , 1976 .

[60]  Meldrum Bs Epilepsy and gamma-aminobutyric acid-mediated inhibition. , 1975 .

[61]  R. Mutani,et al.  First clinical experience on the antiepileptic action of taurine. , 1974, European neurology.

[62]  R. A. Davidoff,et al.  Inhibitory of glycine on spinal neurons in the cat. , 1968, Journal of neurophysiology.

[63]  K. Krnjević ACTIONS OF DRUGS ON SINGLE NEURONES IN THE CEREBRAL CORTEX. , 1965, British medical bulletin.