GABAergic Deafferentation Hypothesis of Brain Aging and Alzheimer’s Disease Revisited
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[1] J. Krieg,et al. Enlargement of cerebrospinal fluid spaces in long-term benzodiazepine abusers , 1987, Psychological Medicine.
[2] Carlyle Smith,et al. Sleep states and learning: A review of the animal literature , 1985, Neuroscience & Biobehavioral Reviews.
[3] M. Ticku,et al. Chronic ethanol treatment upregulates the GABA receptor β subunit expression , 1994 .
[4] T. Kosaka,et al. Coexistence of immunoreactivities for glutamate decar☐ylase and tyrosine hydroxylase in some neurons in the periglomerular region of the rat main olfactory bulb: possible coexistence of gamma-aminobutyric acid (GABA) and dopamine , 1985, Brain Research.
[5] F. Gage,et al. Age-related impairments in spatial memory are independent of those in sensorimotor skills , 1989, Neurobiology of Aging.
[6] B. Sakmann,et al. Functional properties of recombinant rat GABAA receptors depend upon subunit composition , 1990, Neuron.
[7] T. Marczynski,et al. GABAergic Deafferentation Hypothesis of Brain Aging and Alzheimer's Disease; Pharmacologic Profile of the Benzodiazepine Antagonist, Flumazenil , 1995, Reviews in the neurosciences.
[8] Arthur H. Smith. Principles of Biochemistry , 1955 .
[9] A. Datta,et al. Nature of recombinants produced by the RecBC and the RecF pathways in Escherichia coli , 1977, Nature.
[10] I. Black,et al. Environmental regulation of brain trophic interactions , 1993, International Journal of Developmental Neuroscience.
[11] J. Trojanowski,et al. Biopsy-derived adult human brain tau is phosphorylated at many of the same sites as Alzheimer's disease paired helical filament tau , 1994, Neuron.
[12] P. Andersen,et al. Two different responses of hippocampal pyramidal cells to application of gamma‐amino butyric acid. , 1980, The Journal of physiology.
[13] T. Verdoorn,et al. Prenatal ontogeny of the gabaergic system in the rat brain: An immunocytochemical study , 1986, Neuroscience.
[14] W. Sieghart,et al. Binding of γ‐Aminobutyric AcidA Receptors to Tubulin , 1994 .
[15] P. Tyrer. Benzodiazepines on trial. , 1984, British medical journal.
[16] C. Braestrup,et al. Ontogenetic development of benzodiazepine receptors in the rat brain , 1978, Brain Research.
[17] T. Marczynski,et al. Perinatal upregulation of benzodiazepine receptor ontogenesis: "fearless" and more efficient goal-directed behavior of adult rat progenies. , 1988, Neurotoxicology and teratology.
[18] B. Ghetti,et al. A mutation in the amyloid precursor protein associated with hereditary Alzheimer's disease. , 1991, Science.
[19] B. Hempstead,et al. p75 and Trk: A two-receptor system , 1995, Trends in Neurosciences.
[20] P. L. Broadhurst,et al. PSYCHOGENETICS OF EMOTIONALITY IN THE RAT * , 1969, Annals of the New York Academy of Sciences.
[21] Y. Ihara. Massive somatodendritic sprouting of cortical neurons in Alzheimer's disease , 1988, Brain Research.
[22] T. Murphy,et al. Rapid Communication: Oxidative Stress Induces Apoptosis in Embryonic Cortical Neurons , 1994, Journal of neurochemistry.
[23] N. A. Lassen,et al. Brain work. The coupling of function, metabolism and blood flow in the brain. , 1975 .
[24] G. T. Livezey,et al. Sleep and purposive behavior: Inverse deviations from randomness of neuronal firing patterns in the feline thalamus A new form of homeostasis? , 1984, Brain Research.
[25] G. Lees. Contributory mechanisms in the causation of neurodegenerative disorders , 1993, Neuroscience.
[26] Jang-Yen Wu,et al. Brain L-Glutamate Decarboxylase , 1995, The Journal of Biological Chemistry.
[27] J. Luebke,et al. Serotonin hyperpolarizes cholinergic low-threshold burst neurons in the rat laterodorsal tegmental nucleus in vitro. , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[28] L. Hertz. Is Alzheimer's disease an anterograde degeneration, originating in the brainstem, and disrupting metabolic and functional interactions between neurons and glial cells? , 1989, Brain Research Reviews.
[29] I. Silver,et al. ATP and Brain Function , 1989, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[30] H. Komiskey,et al. Aging: Effect on the interaction of ethanol and pentobarbital with the benzodiazepine-GABA receptor-ionophore complex , 1985, Brain Research.
[31] C. Park,et al. Benzodiazepines and peptides stimulate pregnenolone synthesis in brain mitochondria. , 1995, European journal of pharmacology.
[32] M. Chesselet,et al. Distribution of glutamic acid decarboxylase (Mr 67 000) in the basal ganglia of the rat: an immunohistochemical study with a selective cDNA-generated polyclonal antibody , 1991, Journal of neurocytology.
[33] C. Cash. Gammahydroxybutyrate: An overview of the pros and cons for it being a neurotransmitter and/or a useful therapeutic agent , 1994, Neuroscience & Biobehavioral Reviews.
[34] M. Zigmond,et al. Animal models of parkinsonism using selective neurotoxins: clinical and basic implications. , 1989, International review of neurobiology.
[35] H. Manji. G proteins: implications for psychiatry. , 1992, The American journal of psychiatry.
[36] B. McNaughton,et al. Reactivation of hippocampal ensemble memories during sleep. , 1994, Science.
[37] Laurent Descarries,et al. Structural Basis of Cortical Monoamine Function , 1988 .
[38] P. Lavie,et al. Agonist-like effects of the benzodiazepine receptor antagonist RO 15-1788. , 1987, Neuropsychobiology.
[39] G. Zucco,et al. Olfactory Deficits in down Subjects: A Link with Alzheimer Disease , 1994, Perceptual and motor skills.
[40] M. Simmonds. Depolarizing responses to glycine, β‐alanine and muscimol in isolated optic nerve and cuneate nucleus , 1983, British journal of pharmacology.
[41] S. Antelman,et al. Interchangeability of stress and amphetamine in sensitization. , 1980, Science.
[42] V M Pickel,et al. Ultrastructural localization of tyrosine hydroxylase in the rat ventral tegmental area: relationship between immunolabeling density and neuronal associations , 1990, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[43] G. Reynolds,et al. A disorder of cortical GABAergic innervation in Alzheimer's disease , 1987, Neuroscience Letters.
[44] Louis Sokoloff,et al. Activity‐dependent Energy Metabolism in Rat Posterior Pituitary Primarily Reflects Sodium Pump Activity , 1980, Journal of neurochemistry.
[45] J. Barker,et al. Embryonic and early postnatal hippocampal cells respond to nanomolar concentrations of muscimol. , 1990, Brain research. Developmental brain research.
[46] P. Li,et al. RAPID EFFECTS OF VERATRIDINE, TETRODOTOXIN, GRAMICIDIN D, VALINOMYCIN AND NaCN ON THE NA+, K+ AND ATP CONTENTS OF SYNAPTOSOMES , 1977, Journal of neurochemistry.
[47] L. Goodman,et al. The Pharmacological Basis of Therapeutics , 1941 .
[48] S. Ishibashi,et al. Barbiturates suppress glucose utilization by inhibition of hexokinase in neuroblastoma cells. , 1992, Biochemical and biophysical research communications.
[49] D. Salmon,et al. Physical basis of cognitive alterations in alzheimer's disease: Synapse loss is the major correlate of cognitive impairment , 1991, Annals of neurology.
[50] M. Majewska,et al. Neurosteroids: Endogenous bimodal modulators of the GABAA receptor mechanism of action and physiological significance , 1992, Progress in Neurobiology.
[51] R. Mckernan,et al. Which GABAA-receptor subtypes really occur in the brain? , 1996, Trends in Neurosciences.
[52] T. Marczynski,et al. Chronic exposure to Ro 15-1788: differential effect on flunitrazepam binding to cortex and hippocampus. , 1989, European journal of pharmacology.
[53] M. Fillenz,et al. The role of pre-synaptic GABA and benzodiazepine receptors in the control of noradrenaline release in rat hippocampus , 1983, Neuroscience Letters.
[54] A. Schousboe,et al. Trophic actions of GABA on the development of physiologically active GABA receptors. , 1983, Advances in biochemical psychopharmacology.
[55] S. Gauthier,et al. Tetrahydroaminoacridine-lecithin combination treatment in patients with intermediate-stage Alzheimer's disease. Results of a Canadian double-blind, crossover, multicenter study. , 1990, The New England journal of medicine.
[56] W Wisden,et al. The distribution of thirteen GABAA receptor subunit mRNAs in the rat brain. III. Embryonic and postnatal development , 1992, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[57] T. Collier,et al. Schwann Cells as a Source of Neurotrophic Activity for Dopamine Neurons , 1993, Experimental Neurology.
[58] E. London,et al. The neurosteroid dehydroepiandrosterone sulfate is an allosteric antagonist of the GABAA receptor , 1990, Brain Research.
[59] M. F. Goy,et al. A cyclic GMP-stimulated cyclic nucleotide phosphodiesterase gene is highly expressed in the limbic system of the rat brain , 1993, Neuroscience.
[60] B. Driscoll,et al. Carbon Dioxide Fixation in Neuronal and Astroglial Cells in Culture , 1992, Journal of neurochemistry.
[61] M. Laakso,et al. A post-mortem study of noradrenergic, serotonergic and GABAergic neurons in Alzheimer's disease , 1988, Journal of the Neurological Sciences.
[62] H. Yeh,et al. Detection of NGF-like activity in human brain tissue: increased levels in Alzheimer's disease , 1993, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[63] R. Hevner,et al. Coordination of ATP production and consumption in brain: Parallel regulation of cytochrome oxidase and Na+, K+-ATPase , 1992, Neuroscience Letters.
[64] C. Kellogg. Benzodiazepines: influence on the developing brain. , 1988, Progress in brain research.
[65] Kaoru Sakatani,et al. Transient presence of GABA in astrocytes of the developing optic nerve , 1993, Glia.
[66] R. Wong,et al. GABAA receptor function is regulated by phosphorylation in acutely dissociated guinea‐pig hippocampal neurones. , 1990, The Journal of physiology.
[67] D. Murchison,et al. Enhancement of GABA-activated membrane currents in aged Fischer 344 rat basal forebrain neurons [published erratum appears in J Neurosci 1995 Jul;15(7):following table of contents] , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[68] S. File. The use of social interaction as a method for detecting anxiolytic activity of chlordiazepoxide-like drugs , 1980, Journal of Neuroscience Methods.
[69] S. Golombok,et al. Computed axial brain tomograms in long-term benzodiazepine users , 1993, Psychiatry Research.
[70] J. Hardy,et al. Alzheimer's disease: Molecular genetics and transgenic animal models , 1993, Behavioural Brain Research.
[71] Gerhard Trube,et al. The effect of subunit composition of rat brain GABAA receptors on channel function , 1990, Neuron.
[72] E. Masliah,et al. Quantitative synaptic alterations in the human neocortex during normal aging , 1993, Neurology.
[73] K. H. Backus,et al. γ-Aminobutyric acid opens Cl-channels in cultured astrocytes , 1987, Brain Research.
[74] S. Takeda,et al. G Protein-Mediated Neuronal DNA Fragmentation Induced by Familial Alzheimer's Disease-Associated Mutants of APP , 1996, Science.
[75] M. Ticku,et al. Aging related alterations in GABAA receptor subunit mRNA levels in Fischer rats. , 1992, Brain research. Molecular brain research.
[76] T. Marczynski,et al. Prenatal diazepam: chronic anxiety and deficits in brain receptors in mature rat progeny. , 1986, Neurobehavioral toxicology and teratology.
[77] M. Forster,et al. Flumazenil improves active avoidance performance in aging NZB/B1NJ and C57BL/6NNia mice , 1990, Pharmacology Biochemistry and Behavior.
[78] K. Williams. Subunit-specific potentiation of recombinant N-methyl-D-aspartate receptors by histamine. , 1994, Molecular pharmacology.
[79] G. Barrett,et al. The p75 nerve growth factor receptor mediates survival or death depending on the stage of sensory neuron development. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[80] R. Terry,et al. Senile dementia of the Alzheimer type , 1983, Annals of neurology.
[81] J. Rossier,et al. Convulsions induced by submaximal dose of pentylenetetrazol in mice are antagonized by the benzodiazepine antagonist Ro 15-1788. , 1983, Life sciences.
[82] D. Price,et al. Catecholaminergic neurites in senile plaques in prefrontal cortex of aged nonhuman primates , 1985, Neuroscience.
[83] J. McManaman,et al. Tyrosine kinase phosphorylation of GABAA receptors. , 1995, Brain research. Molecular brain research.
[84] D. Neary,et al. Presynaptic Cholinergic Dysfunction in Patients with Dementia , 1983, Journal of neurochemistry.
[85] A. Hamberger,et al. The neurotoxicity of ouabain, a sodium-potassium ATPase inhibitor, in the rat hippocampus , 1990, Neuroscience Letters.
[86] E. Giacobini,et al. Norepinephrine uptake in aging adrenergic nerve terminals , 1980, Neurobiology of Aging.
[87] F E Bloom,et al. Central catecholamine neuron systems: anatomy and physiology of the norepinephrine and epinephrine systems. , 1979, Annual review of neuroscience.
[88] A. Herz,et al. Specific changes in local cerebral glucose utilization in the rat brain induced by acute and chronic diazepam , 1985, Brain Research.
[89] M. Pericak-Vance,et al. Segregation of a missense mutation in the amyloid precursor protein gene with familial Alzheimer's disease , 1991, Nature.
[90] J. Flood,et al. Effects of dehydroepiandrosterone and its sulfate on brain tissue in culture and on memory in mice , 1987, Brain Research.
[91] M. Kupersmith,et al. Dementia in Parkinson disease , 1979, Annals of neurology.
[92] J. Kocsis,et al. Gabapentin increases GABA-induced depolarization in rat neonatal optic nerve , 1994, Neuroscience Letters.
[93] S. Stone-Elander,et al. Feasibility of reversing benzodiazepine tolerance with flumazenil , 1991, The Lancet.
[94] G. L. Coleman,et al. Pathological Changes During Aging in, Barrier-Reared Fischer 344 Male Rats1 , 1977, Journal of gerontology.
[95] P. Greengard,et al. Quantitation of nerve terminal populations: Synaptic vesicle‐associated proteins as markers for synaptic density in the rat neostriatum , 1988, Synapse.
[96] B. Hyman,et al. Blockade of 1-methyl-4-phenylpyridinium ion (MPP+) nigral toxicity in the rat by prior decortication or MK-801 treatment: A stereological estimate of neuronal loss , 1993, Neurobiology of Aging.
[97] K. Rimvall,et al. Regulation of γ‐Aminobutyric Acid Synthesis in the Brain , 1993 .
[98] C. Houser,et al. Somatostatin neurons are a subpopulation of GABA neurons in the rat dentate gyrus: Evidence from colocalization of pre-prosomatostatin and glutamate decar☐ylase messenger RNAs , 1995, Neuroscience.
[99] F Benfenati,et al. Synaptic vesicle phosphoproteins and regulation of synaptic function. , 1993, Science.
[100] M. Vitiello,et al. Alzheimer's disease. Sleep and sleep/wake patterns. , 1989, Clinics in geriatric medicine.
[101] E. Roberts. Some thoughts about GABA and the basal ganglia. , 1976, Research publications - Association for Research in Nervous and Mental Disease.
[102] P. Magistretti,et al. Neurotransmitters regulate energy metabolism in astrocytes: implications for the metabolic trafficking between neural cells. , 1993, Developmental neuroscience.
[103] J. Engele,et al. The neurotrophic effects of fibroblast growth factors on dopaminergic neurons in vitro are mediated by mesencephalic glia [published erratum appears in J Neurosci 1992 Mar;12(3):685] , 1991, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[104] S. Rapoport,et al. Differential expression of cytochrome oxidase (COX) genes in different regions of monkey brain , 1992, Journal of neuroscience research.
[105] N. Tillakaratne,et al. Independent cellular and ontogenetic expression of mRNAS encoding three α polypeptides of the rat GABAA receptor , 1991, Neuroscience.
[106] P. Seeburg,et al. Importance of a novel GABAA receptor subunit for benzodiazepine pharmacology , 1989, Nature.
[107] T. Marczynski,et al. Chronic exposure to flumazenil: Anxiolytic effect and increased exploratory behavior , 1990, Pharmacology Biochemistry and Behavior.
[108] R. K. Miller,et al. Prenatal exposure to diazepam alters central and peripheral responses to stress in adult rat offspring , 1984, Brain Research.
[109] T. Tabira,et al. Stress induces neuronal death in the hippocampus of castrated rats , 1992, Neuroscience Letters.
[110] P. L. Carlton. Brain acetylcholine and habituation. , 1968, Progress in brain research.
[111] S. A. Shefner,et al. gamma‐Aminobutyric acid responses in rat locus coeruleus neurones in vitro: a current‐clamp and voltage‐clamp study. , 1990, The Journal of physiology.
[112] L. Heimer,et al. GABAergic input to cholinergic forebrain neurons: An ultrastructural study using retrograde tracing of HRP and double immunolabeling , 1986, The Journal of comparative neurology.
[113] B. Hyman,et al. Age‐Dependent Striatal Excitotoxic Lesions Produced by the Endogenous Mitochondrial Inhibitor Malonate , 1993, Journal of neurochemistry.
[114] C. Grady,et al. Topographical analysis of glucose metabolism, as measured with positron emission tomography, in dementia of the Alzheimer type: use of linear histograms. , 1987, The International journal of neuroscience.
[115] A. Cuello. Nonclassical neuronal communications. , 1983, Federation proceedings.
[116] S. Snyder,et al. Nitric oxide: a neural messenger. , 1995, Annual review of cell and developmental biology.
[117] Mcgrew Ea,et al. Prenatal exposure to diazepam: late postnatal teratogenic effect. , 1986 .
[118] M. Memo,et al. Brain benzodiazepine receptor changes during ageing , 1981, The Journal of pharmacy and pharmacology.
[119] R. Katzman.,et al. Senile Dementia of the Alzheimer Type Without Neocortical Neurofibrillary Tangles , 1987, Journal of neuropathology and experimental neurology.
[120] J. Sackellares,et al. The Effect of Diazepam Sedation on Cerebral Glucose Metabolism in Alzheimer's Disease as Measured Using Positron Emission Tomography , 1987, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[121] T. J. Walsh,et al. Anatomical specificity and time-dependence of chlordiazepoxide-induced spatial memory impairments. , 1995, Behavioral neuroscience.
[122] R. Harris,et al. GABAA receptor phosphorylation: multiple sites, actions and artifacts. , 1991, Trends in pharmacological sciences.
[123] J. Yesavage,et al. REM latency in Alzheimer's disease , 1989, Biological Psychiatry.
[124] J. Medina,et al. Changes in benzodiazepine receptors by acute stress: different effect of chronic diazepam or RO 15-1788 treatment. , 1983, European journal of pharmacology.
[125] V. Haroutunian,et al. Using the subcortically lesioned rat cortex to understand the physiological role of amyloid precursor protein , 1993, Behavioural Brain Research.
[126] M. Wong-Riley,et al. Mitochondrial and nuclear gene expression for cytochrome oxidase subunits are disproportionately regulated by functional activity in neurons , 1993, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[127] J. Konorski. Integrative activity of the brain , 1967 .
[128] J. Glowinski,et al. Release of dopamine in vivo from cat substantia nigra , 1977, Nature.
[129] T. A. Pitler,et al. Brain aging correlates: retardation by hormonal-pharmacological treatments. , 1981, Science.
[130] D. Choi. Ionic dependence of glutamate neurotoxicity , 1987, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[131] Rhonda,et al. Overlapping and distinct actions of the neurotrophins BDNF, NT-3, and NT-4/5 on cultured dopaminergic and GABAergic neurons of the ventral mesencephalon , 1994, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[132] R. Nicoll,et al. Pharmacological evidence for two kinds of GABA receptors on rat hippocampal pyramidal cells studied in vitro , 1982, The Journal of physiology.
[133] Stanley J. Wiegand,et al. Neurotrophic factors: from molecule to man , 1994, Trends in Neurosciences.
[134] I. Black,et al. Neurotransmitter plasticity at the molecular level. , 1984, Science.
[135] T. Marczynski,et al. Chronic flumazenil (Ro 15-1788) facilitates acquisition and retention of a swim-escape response in rats. , 1990, Neuropsychobiology.
[136] K. Rimvall,et al. The Level of GAD67 Protein Is Highly Sensitive to Small Increases in Intraneuronal γ‐Aminobutyric Acid Levels , 1994, Journal of neurochemistry.
[137] T. Marczynski,et al. Chronic Ro 15–1788 treatment increases REM sleep in rats , 1991, Brain Research Bulletin.
[138] Mortimer Mamelak. Neurodegeneration, Sleep, and Cerebral Energy Metabolism: A Testable Hypothesis , 1997, Journal of geriatric psychiatry and neurology.
[139] G. A. Kerkut,et al. THE ACTION OF GAMMA‐HYDROXYBUTYRIC ACID ON CEREBRAL GLUCOSE METABOLISM , 1972, Journal of neurochemistry.
[140] M. Alexander,et al. Principles of Neural Science , 1981 .
[141] M. Santi,et al. Distinct Developmental Patterns of Expression of Rat α1, α5, γ2S, andα12Lγ‐Aminobutyric AcidA Receptor Subunit mRNAs In Vivo and In Vitro , 1992 .
[142] G. Biggio,et al. Functional interaction between benzodiazepine and GABA recognition sites in aged rats , 1981, Neurobiology of Aging.
[143] J. Hubbard,et al. Reinvestigation of the effects of gamma-hydroxybutyrate on the sleep cycle of the unrestrained intact cat. , 1971, Electroencephalography and Clinical Neurophysiology.
[144] J. Meek,et al. Evidence for a tonic GABAergic control of serotonin neurons in the median raphe nucleus , 1981, Brain Research.
[145] Thaddeus J. Marczynski,et al. Empirically derived model of the role of sleep in associative learning and recuperative processes , 1992, Neural Networks.
[146] Purification and characterization of a novel form of brain L-glutamate decarboxylase. A Ca(2+)-dependent peripheral membrane protein. , 1994, The Journal of biological chemistry.
[147] Douglas L. Jones,et al. From motivation to action: Functional interface between the limbic system and the motor system , 1980, Progress in Neurobiology.
[148] A. Rotter,et al. Expression of GABAA/benzodiazepine receptor alpha 1-subunit mRNA and [3H]flunitrazepam binding sites during postnatal development of the mouse cerebellum. , 1991, Brain research. Developmental brain research.
[149] P. Seeburg,et al. Two novel GABAA receptor subunits exist in distinct neuronal subpopulations , 1989, Neuron.
[150] R. Nicoll,et al. The pharmacology and ionic dependency of amino acid responses in the frog spinal cord , 1973, The Journal of physiology.
[151] B. Winblad,et al. Tacrine restores cholinergic nicotinic receptors and glucose metabolism in alzheimer patients as visualized by positron emission tomography , 1992, Neurobiology of Aging.
[152] P. Skolnick,et al. The pathogenesis and treatment of hepatic encephalopathy: evidence for the involvement of benzodiazepine receptor ligands. , 1991, Pharmacological reviews.
[153] Nancy J. Woolf,et al. Cholinergic systems in mammalian brain and spinal cord , 1991, Progress in Neurobiology.
[154] A. Guidotti,et al. Co-localization and co-release of GABA and putative allosteric modulators of GABA receptor , 1987, Neuropharmacology.
[155] D. Gallager,et al. Persistent reversal of tolerance to anticonvulsant effects and GABAergic subsensitivity by a single exposure to benzodiazepine antagonist during chronic benzodiazepine administration. , 1988, The Journal of pharmacology and experimental therapeutics.
[156] D. Kupfer,et al. Clinical Significance of Sleep‐Disordered Breathing in Alzheimer's Disease , 1989, Journal of the American Geriatrics Society.
[157] P. Dutar,et al. Basal forebrain neurons projecting to the rat frontoparietal cortex: Electrophysiological and pharmacological properties , 1986, Brain Research.
[158] K. Sakatani,et al. Transient presence and functional interaction of endogenous GABA and GABAA receptors in developing rat optic nerve , 1992, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[159] A. Guidotti,et al. Benzodiazepines on trial: a research strategy for their rehabilitation. , 1996, Trends in pharmacological sciences.
[160] G. Biggio,et al. Enhanced sensitivity to β-carboline inverse agonists in rats chronically treated with FG 7142 , 1987, Brain Research Bulletin.
[161] L. Iacovitti. Centrally active differentiation factors in the nervous system. , 1994, Pharmacology & therapeutics.
[162] V. Notario,et al. Transplants of fetal substantia nigra regulate glutamic acid decarboxylase gene expression in host striatal neurons. , 1991, Brain research. Molecular brain research.
[163] T. R. Gordon,et al. Trophic influence of the distal nerve segment on GABAA receptor expression in axotomized adult sensory neurons , 1990, Experimental Neurology.
[164] L. Swanson,et al. Structural Evidence for Functional Domains in the Rat Hippocampus , 1996, Science.
[165] J. Flood,et al. Dehydroepiandrosterone sulfate improves memory in aging mice , 1988, Brain Research.
[166] E. Masliah,et al. Synaptic and neuritic alterations during the progression of Alzheimer's disease , 1994, Neuroscience Letters.
[167] B. Hyman,et al. Do defecs in mitochondrial energy metabolism underlie the pathology of neurodegenerative diseases? , 1993, Trends in Neurosciences.
[168] R. Olsen,et al. GABA Alters GABAA Receptor mRNAs and Increases Ligand Binding , 1993, Journal of neurochemistry.
[169] L. Pellegrino,et al. stereotaxic atlas of the rat brain , 1967 .
[170] P. Greengard,et al. A 38,000-dalton membrane protein (p38) present in synaptic vesicles. , 1985, Proceedings of the National Academy of Sciences of the United States of America.
[171] P. Halász. Runs of rapid spikes in sleep: a characteristic EEG expression of generalized malignant epileptic encephalopathies. A conceptual review with new pharmacological data. , 1991, Epilepsy research. Supplement.
[172] The magnitude of post-reinforcement EEG synchronization (PRS) in cats reflects learning ability , 1981, Brain Research.
[173] T. Turský. Inhibition of brain glutamate decarboxylase by adenosine triphosphate. , 1970, European journal of biochemistry.
[174] C. Gall,et al. Expression of Neurotrophins by Midbrain Dopaminergic Neurons , 1993, Experimental Neurology.
[175] T. J. Walsh,et al. Chlordiazepoxide-induced working memory impairments: site specificity and reversal by flumazenil (RO15-1788). , 1992, Behavioral and neural biology.
[176] W. Burkard,et al. Benzodiazepine Antagonist Ro 15–1788: Binding Characteristics and Interaction with Drug‐Induced Changes in Dopamine Turnover and Cerebellar cGMP Levels , 1982, Journal of neurochemistry.
[177] Pierre Drapeau,et al. From contact to connection: early events during synaptogenesis , 1995, Trends in Neurosciences.
[178] J. Rinne,et al. Dopamine uptake sites in Parkinson's disease and in dementia of the Alzheimer type , 1994, Brain Research.
[179] F. V. Defeudis,et al. CNS receptors : from molecular pharmacology to behavior , 1983 .
[180] T. Murphy,et al. Glutamate toxicity in a neuronal cell line involves inhibition of cystine transport leading to oxidative stress , 1989, Neuron.
[181] K. E. Moore,et al. Histaminergic neurons mediate restraint stress-induced activation of central 5-hydroxytryptaminergic neurons in the rat. , 1994, European journal of pharmacology.
[182] D. Mann,et al. A quantitative morphometric analysis of the neuronal and synaptic content of the frontal and temporal cortex in patients with Alzheimer's disease , 1987, Journal of the Neurological Sciences.
[183] I. Izquierdo,et al. GABAA receptor modulation of memory: the role of endogenous benzodiazepines. , 1991, Trends in pharmacological sciences.
[184] Ivan Divac,et al. The basal ganglia and the control of movement Levels of motor planning Cognition and the control of movement , 1981, Trends in Neurosciences.
[185] P. Somogyi,et al. Enrichment of cholinergic synaptic terminals on GABAergic neurons and coexistence of immunoreactive GABA and choline acetyltransferase in the same synaptic terminals in the striate cortex of the cat , 1991, The Journal of comparative neurology.
[186] R. Nicoll,et al. Functional comparison of neurotransmitter receptor subtypes in mammalian central nervous system. , 1990, Physiological reviews.
[187] J. Walters,et al. EFFECTS OF DEPOLARIZATION ON COFACTOR REGULATION OF GLUTAMIC ACID DECARBOXYLASE IN SUBSTANTIA NIGRA SYNAPTOSOMES , 1979, Journal of neurochemistry.
[188] M. Radulovački,et al. Prenatal exposure to diazepam results in enduring reductions in brain receptors and deep slow wave sleep , 1985, Brain Research.
[189] S. Rapoport,et al. Localization of cytochrome oxidase (COX) activity and COX mRNA in the hippocampus and entorhinal cortex of the monkey brain: correlation with specific neuronal pathways , 1992, Brain Research.
[190] G. Scollo-Lavizzari. The clinical anti-convulsant effects of flumazenil, a benzodiazepine antagonist. , 1988, European journal of anaesthesiology. Supplement.
[191] D. Price,et al. Somatostatinergic neurites in senile plaques of aged non-human primates , 1984, Brain Research.
[192] H. Gundersen,et al. Unbiased stereological estimation of the number of neurons in the human hippocampus , 1990, The Journal of comparative neurology.
[193] I. Hindmarch,et al. Benzodiazepine Receptor Ligands, Memory and Information Processing , 1988, Psychopharmacology Series.
[194] M. Collins,et al. The control of apoptosis in mammalian cells. , 1993, Trends in biochemical sciences.
[195] J. Barker,et al. Neuroepithelial cells in the rat spinal cord express glutamate decarboxylase immunoreactivity in vivo and in vitro , 1992, The Journal of comparative neurology.
[196] J. Barker,et al. GABA stimulates chemotaxis and chemokinesis of embryonic cortical neurons via calcium-dependent mechanisms , 1996, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[197] T. Marczynski,et al. Chronic administration of flumazenil (Ro 15-1788) enhances non-appetitive exploratory behavior of rats , 1991, Neuropharmacology.
[198] G. Shepherd. Neurobiology, 2nd ed. , 1988 .
[199] H. Kettenmann,et al. Pharmacological properties of gamma-aminobutyric acid-, glutamate-, and aspartate-induced depolarizations in cultured astrocytes , 1985, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[200] S. File,et al. Pharmacokinetic studies on Ro 15-1788, a benzodiazepine receptor ligand, in the brain of the rat , 1984, Brain Research.
[201] S. Rothman. The neurotoxicity of excitatory amino acids is produced by passive chloride influx , 1985, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[202] R. Sapolsky. Potential behavioral modification of glucocorticoid damage to the hippocampus , 1993, Behavioural Brain Research.
[203] Donald Voet,et al. Biochemistry, 2nd ed. , 1995 .
[204] L. Mucke,et al. Alzheimer-type neuropathology in transgenic mice overexpressing V717F β-amyloid precursor protein , 1995, Nature.
[205] G. White. GABAA-receptor-activated current in dorsal root ganglion neurons freshly isolated from adult rats. , 1990, Journal of neurophysiology.
[206] J. Wolff,et al. GABA accelerates excitotoxic cell death in cortical cultures: protection by blockers of GABA-gated chloride channels , 1991, Brain Research.
[207] W. Oertel,et al. Immunohistochemical evidence for the coexistence of histidine decarboxylase-like and glutamate decarboxylase-like immunoreactivities in nerve cells of the magnocellular nucleus of the posterior hypothalamus of rats. , 1984, Proceedings of the National Academy of Sciences of the United States of America.
[208] M. Mamelak,et al. Gammahydroxybutyrate: An endogenous regulator of energy metabolism , 1989, Neuroscience & Biobehavioral Reviews.
[209] T. Deerinck,et al. Re‐Evaluation of the Structural Organization of Neuritic Plaques in Alzheimer's Disease , 1993 .
[210] L. Záborszky,et al. Catecholaminergic-cholinergic interaction in the basal forebrain. , 1993, Progress in brain research.
[211] T. Marczynski,et al. Neurochemical Interpretation of Cortical Slow Potentials as they Relate to Cognitive Processes and a Parsimonious Model of Mammalian Brain , 1993 .
[212] P. Kalivas. Neurotransmitter regulation of dopamine neurons in the ventral tegmental area , 1993, Brain Research Reviews.
[213] L L Iversen,et al. The retrograde axonal transport of nerve growth factor. , 1974, Brain research.
[214] L. Mucke,et al. Synaptotrophic effects of human amyloid β protein precursors in the cortex of transgenic mice , 1994, Brain Research.
[215] J. Blass,et al. Alzheimer's disease. A metabolic systems degeneration? , 1984, Neurochemical pathology.
[216] A. Novelli,et al. Glutamate becomes neurotoxic via the N-methyl-d-aspartate receptor when intracellular energy levels are reduced , 1988, Brain Research.
[217] M. Sarter,et al. Beta-carbolines as tools in memory research: animal data and speculations. , 1988, Psychopharmacology series.
[218] Bertram Wiedenmann,et al. Identification and localization of synaptophysin, an integral membrane glycoprotein of Mr 38,000 characteristic of presynaptic vesicles , 1985, Cell.
[219] N. Lambert,et al. The mechanism of biphasic GABA responses , 1995, Science.
[220] F. Hefti,et al. Intraventricular nerve growth factor administration prevents lesion-induced loss of septal cholinergic neurons in aging rats , 1989, Neurobiology of Aging.
[221] M. Viitanen,et al. Serum dehydroepiandrosterone sulfate in Alzheimer's disease and in multi-infarct dementia , 1991, Biological Psychiatry.
[222] M. Ticku. Benzodiazepine-GABA receptor-ionophore complex Current concepts , 1983, Neuropharmacology.
[223] J. Gaillard,et al. Effect of the benzodiazepine antagonist Ro 15-1788 on flunitrazepam-induced sleep changes. , 1983, British journal of clinical pharmacology.
[224] R. Martínez-Murillo,et al. Molecular and cellular aspects of neurotransmission and neuromodulation. , 1994, International review of cytology.
[225] A. Guidotti,et al. Purification and Characterization of Naturally Occurring Benzodiazepine Receptor Ligands in Rat and Human Brain , 1992, Journal of neurochemistry.
[226] A. Wauquier,et al. The benzodiazepine antagonist, Ro 15-1788, increases REM and slow wave sleep in the dog , 1984, Brain Research.
[227] M. Ebert,et al. The Biochemical Basis of Neuropharmacology, 7th ed , 1998 .
[228] M. Patel,et al. THE RELATIVE SIGNIFICANCE OF CO2‐FIXING ENZYMES IN THE METABOLISM OF RAT BRAIN , 1974, Journal of neurochemistry.
[229] I. Izquierdo,et al. Habituation and inhibitory avoidance training alter brain regional levels of benzodiazepine-like molecules and are affected by intracerebral flumazenil microinjection , 1991, Brain Research.
[230] J. Champagnat,et al. Somatostatin depresses excitability in neurons of the solitary tract complex through hyperpolarization and augmentation of IM, a non-inactivating voltage-dependent outward current blocked by muscarinic agonists. , 1988, Proceedings of the National Academy of Sciences of the United States of America.
[231] M. Rossor. Parkinson's disease and Alzheimer's disease as disorders of the isodendritic core. , 1981, British medical journal.
[232] K. Staley,et al. Ionic mechanisms of neuronal excitation by inhibitory GABAA receptors , 1995, Science.
[233] M. Frosch,et al. Non-uniform distribution of GABA activated chloride channels in cultured cortical neurons , 1992, Neuroscience Letters.
[234] A. Santucci,et al. Cholinergic marker deficits induced by lesions of the nucleus basalis of Meynert are attenuated by nerve growth factor in young, but not in aged, F344 rats , 1993, Brain Research.
[235] T. Kaneko,et al. Glutamate-synthesizing enzymes in gabaergic neurons of the neocortex: A double immunofluorescence study in the rat , 1994, Neuroscience.
[236] J. Glowinski,et al. Dendritic release of dopamine in the substantia nigra , 1981, Nature.
[237] A. Gopher,et al. Cerebral metabolic compartmentation. Estimation of glucose flux via pyruvate carboxylase/pyruvate dehydrogenase by 13C NMR isotopomer analysis of D-[U-13C]glucose metabolites. , 1994, The Journal of biological chemistry.
[238] R. Shank,et al. Analysis of [1-13C]D-glucose metabolism in cultured astrocytes and neurons using nuclear magnetic resonance spectroscopy. , 1993, Developmental neuroscience.
[239] M. Erlander,et al. Two genes encode distinct glutamate decarboxylases , 1991, Neuron.
[240] Y. Ben-Ari,et al. GABA: an excitatory transmitter in early postnatal life , 1991, Trends in Neurosciences.
[241] D. Gallager. Benzodiazepines: potentiation of a GABA inhibitory response in the dorsal raphe nucleus. , 1978, European journal of pharmacology.
[242] B. Hyman,et al. Functional alterations in neural circuits in Alzheimer's disease , 1995, Neurobiology of Aging.
[243] K. E. Moore,et al. Effects of histamine on 5-hydroxytryptaminergic neuronal activity in the rat hypothalamus. , 1994, European journal of pharmacology.
[244] P. Goldman-Rakic,et al. Modulation of memory fields by dopamine Dl receptors in prefrontal cortex , 1995, Nature.
[245] T. J. Walsh,et al. Intraseptal injection of GABA and benzodiazepine receptor ligands alters highaffinity choline transport in the hippocampus , 1993, Brain Research Bulletin.
[246] E. Baulieu,et al. Pregnenolone sulfate antagonizes barbiturate-induced hypnosis , 1989, Pharmacology Biochemistry and Behavior.
[247] D. O'Malley,et al. Co-release of acetylcholine and GABA by the starburst amacrine cells , 1992, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[248] D. Price,et al. Evidence for cholinergic neurites in senile plaques. , 1984, Science.
[249] R. A. Davidoff,et al. γ‐Hydroxybutyric acid is not a GABA‐mimetic agent in the spinal cord , 1979, Annals of neurology.
[250] J. Kerr. Definition and incidence of apoptosis : A historical perspective , 1991 .
[251] O. Snead,et al. Gamma-hydroxybutyric acid binding sites in rat and human brain synaptosomal membranes. , 1984, Biochemical pharmacology.
[252] S. Zhang,et al. GABA-activated chloride channels in secretory nerve endings. , 1993, Science.
[253] L. Iversen,et al. Dopamine selectively increases 3H-GABA release from slices of rat substantia nigra in vitro , 1977, Nature.
[254] J. Gaillard,et al. Intrinsic Activity of the Benzodiazepine Antagonist Ro 15-1788 in Man: An Electrophysiological Investigation , 1984, Pharmacopsychiatry.
[255] S. Korsching,et al. The neurotrophic factor concept: a reexamination , 1993, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[256] L. Butcher,et al. Induction of apoptosis by the low-affinity NGF receptor. , 1993, Science.
[257] C. Houser,et al. Two Forms of the γ‐Aminobutyric Acid Synthetic Enzyme Glutamate Decarboxylase Have Distinct Intraneuronal Distributions and Cofactor Interactions , 1991, Journal of neurochemistry.
[258] E. Roberts,et al. Glutamic acid decarboxylase in brain. , 1951, The Journal of biological chemistry.
[259] K. Davis,et al. Amyloid precursor protein in the cerebral cortex is rapidly and persistently induced by loss of subcortical innervation. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[260] E. Perry,et al. Extensive loss of choline acetyltransferase activity is not reflected by neuronal loss in the nucleus of meynert in Alzheimer's disease , 1982, Neuroscience Letters.
[261] D. Fitzpatrick,et al. GABAergic neurons of mammalian cerebral cortex: Widespread subclass defined by somatostatin content , 1984, Neuroscience Letters.
[262] B. Marczynska,et al. Chronic administration of flumazenil increases life span and protects rats from age-related loss of cognitive functions: A benzodiazepine/GABAergic hypothesis of brain aging , 1994, Neurobiology of Aging.
[263] S. Sprang,et al. How G proteins work: a continuing story. , 1996, Trends in biochemical sciences.
[264] R. Wong,et al. Excitatory synaptic responses mediated by GABAA receptors in the hippocampus , 1991, Science.
[265] T. Kosaka,et al. GABAergic neurons containing CCK‐8‐like and/or VIP‐like immunoreactivities in the rat hippocampus and dentate gyrus , 1985, The Journal of comparative neurology.
[266] C. Pavlides,et al. Influences of hippocampal place cell firing in the awake state on the activity of these cells during subsequent sleep episodes , 1989, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[267] Eugene Roberts,et al. What do GABA neurons really do? They make possible variability generation in relation to demand , 1986, Experimental Neurology.
[268] M. Forster,et al. Enhancement of learning and memory in mice by a benzodiazepine antagonist , 1988, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[269] A. Guidotti,et al. Endogenous benzodiazepine receptor ligands in idiopathic recurring stupor , 1992, The Lancet.
[270] K. H. Backus,et al. Effect of benzodiazepines and pentobarbital on the GABA‐induced depolarization in cultured astrocytes , 1988, Glia.
[271] S G Waxman,et al. Low density of sodium channels supports action potential conduction in axons of neonatal rat optic nerve. , 1989, Proceedings of the National Academy of Sciences of the United States of America.
[272] D. Nutt,et al. Benzodiazepine receptor function in anxiety disorders. , 1995, Advances in biochemical psychopharmacology.
[273] M. Descheˆnes,et al. Axonal branch diameter and spacing of nodes in the terminal arborization of identified thalamic and cortical neurons , 1980, Brain Research.
[274] M. Kuskowski,et al. Dementia in Parkinson disease: A neuropsychological analysis , 1982, Brain and Cognition.
[275] N. Lindefors. Dopaminergic regulation of glutamic acid decarboxylase mRNA expression and GABA release in the striatum: A review , 1993, Progress in Neuro-Psychopharmacology and Biological Psychiatry.
[276] R. Olsen,et al. Molecular biology of GABAA receptors , 1990, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[277] J. Morley,et al. Memory-enhancing effects in male mice of pregnenolone and steroids metabolically derived from it. , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[278] K. Meguro,et al. Effects of thioperamide, a histamine H3 antagonist, on the step-through passive avoidance response and histidine decarboxylase activity in senescence-accelerated mice , 1995, Pharmacology Biochemistry and Behavior.
[279] J. Szerb. Storage and release of endogenous and labelled GABA formed from [3H]Glutamine and [14C]Glucose in hippocampal slices: Effect of depolarization , 1984, Brain Research.
[280] L. Miller,et al. STUDIES ON THE REGULATION OF GABA SYNTHESIS: THE INTERACTION OF ADENINE NUCLEOTIDES AND GLUTAMATE WITH BRAIN GLUTAMATE DECARBOXYLASE , 1978, Journal of neurochemistry.
[281] P. Panula,et al. Distribution of histamine‐, 5‐hydroxytryptamine‐, and tyrosine hydroxylase‐immunoreactive neurons and nerve fibers in developing rat brain , 1994, The Journal of comparative neurology.
[282] S. H. Curry,et al. Slow Potential Changes in the Human Brain , 1993, NATO ASI Series.
[283] A. Björklund,et al. Fetal mesencephalic neurons survive and extend long axons across peripheral nervous system grafts inserted into the adult rat striatum , 1984, Neuroscience Letters.