2015

Contained in: Nat. Rev. Neurosci., 2015: 16, 377-388

Stress-related synaptic plasticity in the hypothalamus

Authors: Bains, J.S., Wamsteeker Cusulin J.I., Inoue W.

  Stress and hypothalamic synaptic plasticity - Review
  Bains, J.S., Wamsteeker Cusulin J.I., Inoue W. - 2015

  γ-AMINO-BUTYRIC ACID (GABA)   GLUTAMATE   HYPOTHALAMUS   N-METHYL-D-ASPARTATE (NMDA)   NEUROGENESIS AND PLASTICITY   REVIEWS AND COMMENTARIES   STRESS
Contained in: Behav. Brain Res., 2015: 283, 11-15

Antidepressant dose of taurine increases mRNA expression of GABAA receptor α2 subunit and BDNF in the hippocampus of diabetic rats

Authors: Caletti, G., Borges Almeida F., Agnes G., Schuler Nin M., Tannhauser Barros H.M., Gomez R.

  Taurine on hippocampal GABA-Aα2 receptor and brain-derived neurotrophic factor expression and object recognition in diabetic by streptozotocin and control rats
  Caletti, G., Borges Almeida F., Agnes G., Schuler Nin M., Tannhauser Barros H.M., Gomez R. - 2015

  γ-AMINO-BUTYRIC ACID (GABA)   HIPPOCAMPUS, FORNIX AND SUBICULUM   NEUROTROPHIC FACTORS
Contained in: Eur. J. Neurosci., 2015: 42, 1830-1838

Sustained activation of GABAA receptors in the suprachiasmatic nucleus mediates light-induced phase delays of the circadian clock: a novel function of ionotropic receptors

Authors: Hummer, D.L., Ehlen J.C., Larkin T.E. II, McNeill J.K. IV, Pamplin J.R. II, Walker C.A., Walker P.V. II, Dhanraj D.R., Albers H.E.

  Suprachiasmatic nuclei GABA-A receptor role in circadian phase induction in hamsters
  Hummer, D.L., Ehlen J.C., Larkin T.E. II, McNeill J.K. IV, Pamplin J.R. II, Walker C.A., Walker P.V. II, Dhanraj D.R., Albers H.E. - 2015

  γ-AMINO-BUTYRIC ACID (GABA)   LUMINANCE AND VISION   HYPOTHALAMUS   CIRCADIAN RHYTHMS
Contained in: Neuropharmacology, 2015: 88, 24-35

Altered expression of δGABAA receptors in health and disease

Authors: Whissell, P.D., Lecker I., Wang D.-S., Yu J., Orser B.A.

  Brain δGABA-A receptor expression - Review
  Whissell, P.D., Lecker I., Wang D.-S., Yu J., Orser B.A. - 2015

  γ-AMINO-BUTYRIC ACID (GABA)   REVIEWS AND COMMENTARIES
Contained in: Neuropharmacology, 2015: 88, 55-62

Ambient GABA modulates septo-hippocampal inhibitory terminals via presynaptic GABAb receptors

Authors: Turi, G.F., Wittmann G., Lechan R.M., Losonczy A.

  Septo-hippocampal pathway GABAergic inhibition in mice
  Turi, G.F., Wittmann G., Lechan R.M., Losonczy A. - 2015

  γ-AMINO-BUTYRIC ACID (GABA)   HIPPOCAMPUS, FORNIX AND SUBICULUM   SEPTUM   ELECTRIC/MAGNETIC CENTRAL NERVOUS SYSTEM STIMULATION
Contained in: J. Neurosci., 2015: 35, 64-73

Sleep slow wave-related homo and heterosynaptic LTD of intrathalamic GABAAergic synapses: involvement of T-type Ca2+ channels and metabotropic glutamnate receptors

Authors: Pigeat, R., Chausson P., Dreyfus F.M., Leresche N., Lambert R.C.

  Thalamic slow-wave activity in rats: GABAergic and glutamatergic modulation
  Pigeat, R., Chausson P., Dreyfus F.M., Leresche N., Lambert R.C. - 2015

  γ-AMINO-BUTYRIC ACID (GABA)   GLUTAMATE   SHORT- AND LONG-TERM POTENTIATION AND DEPRESSION   SLEEP   UNSPECIFIC ASCENDING ACTIVATING SYSTEM PROJECTION   ELECTRIC/MAGNETIC CENTRAL NERVOUS SYSTEM STIMULATION
Contained in: Neuroscience, 2015: 308, 134-143

Long-term effects of neonatal exposure to MK-801 on recognition memory and excitatory-inhibitory balance in rat hippocampus

Authors: Li, J.-T., Zhao Y.-Y., Wang H.-L., Wang X.-D., Su Y.-A., Si T.-M.

  Neonatal MK-801 exposure on object recognition and hippocampal excitability in adult rats
  Li, J.-T., Zhao Y.-Y., Wang H.-L., Wang X.-D., Su Y.-A., Si T.-M. - 2015

  γ-AMINO-BUTYRIC ACID (GABA)   GLUTAMATE   HIPPOCAMPUS, FORNIX AND SUBICULUM   N-METHYL-D-ASPARTATE (NMDA)
Contained in: J. Neurosci., 2015: 35, 7600-7615

Activation of metabotropic glutamate receptor 7 is required for induction of long-term potentiation at SC-CA1 synapses in the hippocampus

Authors: Klar, R., Walker A.G., Ghose D., Grueter B.A., Engers D.W., Hopkins C.R., Lindsley C.W., Xiang Z., Conn P.J., Niswender C.M.

  mGluR7 modulation of hippocampal neuron excitability in mice
  Klar, R., Walker A.G., Ghose D., Grueter B.A., Engers D.W., Hopkins C.R., Lindsley C.W., Xiang Z., Conn P.J., Niswender C.M. - 2015

  γ-AMINO-BUTYRIC ACID (GABA)   GLUTAMATE   HIPPOCAMPUS, FORNIX AND SUBICULUM   SHORT- AND LONG-TERM POTENTIATION AND DEPRESSION   ELECTRIC/MAGNETIC CENTRAL NERVOUS SYSTEM STIMULATION
Contained in: J. Neurosci., 2015: 35, 9707-9716

Etomidate impairs long-term potentiation in vitro by targeting α5-subunit containing GABAA receptors on nonpyramidal cells

Authors: Rodgers, F.C., Zarnowska E.D., Laha K.T., Zeller A., Keist R., Rudolph U., Pearce R.A.

  α5-GABA-A receptor role in hippocampal long-term potentiation in mice
  Rodgers, F.C., Zarnowska E.D., Laha K.T., Zeller A., Keist R., Rudolph U., Pearce R.A. - 2015

  γ-AMINO-BUTYRIC ACID (GABA)   HIPPOCAMPUS, FORNIX AND SUBICULUM   SHORT- AND LONG-TERM POTENTIATION AND DEPRESSION

2014

Contained in: Pharmacol. Biochem. Behav., 2014: 217, 137-143

Nitric oxide in the dorsal hippocampal area is involved on muscimol state-dependent memory in the step-down passive avoidance test

Authors: Jafari-Sabet, M., Khodadadnejad M.-A., Ghoraba S., Ataee R.

  Intra-hippocampal post-training muscimol and pre-test muscimol, L-arginine and L-NAME on passive avoidance retention in mice: state-dependent effects
  Jafari-Sabet, M., Khodadadnejad M.-A., Ghoraba S., Ataee R. - 2014

  NEURAL REVERSIBLE INACTIVATIONS   AVOIDANCE   γ-AMINO-BUTYRIC ACID (GABA)   HIPPOCAMPUS, FORNIX AND SUBICULUM   NITRIC AND NITROUS OXIDE   STATE-DEPENDENT LEARNING   CONSOLIDATION
Contained in: Nat. Neurosci., 2014: 17, 577-585

Designer receptors show role for ventral pallidum input to ventral tegmental area in cocaine seeking

Authors: Mahler, S.V., Vazey E.M., Beckely J.T., Keistler C.R., McGlinchey E.M., Kaufling J., Wilson S.P., Deisseroth K., Woodward J.J., Aston-Jones G.

  Ventral pallidum role on cocaine self-administration reinstatement in rats: ventral tegmental area and substantia nigra modulation
  Mahler, S.V., Vazey E.M., Beckely J.T., Keistler C.R., McGlinchey E.M., Kaufling J., Wilson S.P., Deisseroth K., Woodward J.J., Aston-Jones G. - 2014

  NEURAL REVERSIBLE INACTIVATIONS   LATERALITY AND ASYMMETRICAL INTERVENTIONS   OPERANT CONDITIONING   DOPAMINE   EXTINCTION   γ-AMINO-BUTYRIC ACID (GABA)   RECALL AND RECONSOLIDATION   PROTEINS AND GENES   UNSPECIFIC ASCENDING ACTIVATING SYSTEM PROJECTION   STRIATUM   SUBSTANTIA NIGRA
Contained in: Exp. Brain Res., 2014: 232, 723-738

The role of serotonin in memory: interactions with neurotransmitters and downstream signaling

Authors: Seyedabadi, M., Fakhfouri G., Ramezani V., Mehr S.E., Rahimian R.

  Serotonin in learning and memory - Review
  Seyedabadi, M., Fakhfouri G., Ramezani V., Mehr S.E., Rahimian R. - 2014

  ACETYLCHOLINE   DOPAMINE   γ-AMINO-BUTYRIC ACID (GABA)   GLUTAMATE   REVIEWS AND COMMENTARIES   SEROTONIN
Contained in: Proc. Natl. Acad. Sci. USA, 2014: 111, E2741 –E2750

Postsynaptic actvity reverses the sign of the acetylcholine-induced long-term plasticity of GABA A inhibition

Authors: Dominguez, S., Fernandez de Sevilla D., Buno W.

  Acetylcholine and GABA receptor role in the modulation of hippocampal long-term potentiation in rats
  Dominguez, S., Fernandez de Sevilla D., Buno W. - 2014

  ACETYLCHOLINE   γ-AMINO-BUTYRIC ACID (GABA)   HIPPOCAMPUS, FORNIX AND SUBICULUM   SHORT- AND LONG-TERM POTENTIATION AND DEPRESSION   ELECTRIC/MAGNETIC CENTRAL NERVOUS SYSTEM STIMULATION
Contained in: J. Neurosci., 2014: 34, 506-514

Medial septum-diagonal band of Broca (MSDB) GABAergic regulation of hippocampal acetylcholine efflux is dependent on cognitive demands

Authors: Roland, J.J., Stewart A.L., Janke K.L., Gielow M.R., Kostek J.A., Savage L.M., Servatius R.J., Pang K.C.H.

  Medial septum-diagonal band GABAergic lesions on basal and spatial learning-induced hippocampal acetylcholine release in the rat
  Roland, J.J., Stewart A.L., Janke K.L., Gielow M.R., Kostek J.A., Savage L.M., Servatius R.J., Pang K.C.H. - 2014

  ACETYLCHOLINE   CENTRAL NERVOUS SYSTEM LESIONS   SPATIAL ORIENTATION AND SPATIAL MEMORY   γ-AMINO-BUTYRIC ACID (GABA)   HIPPOCAMPUS, FORNIX AND SUBICULUM   SEPTUM
Contained in: Learn. Mem., 2014: 21, 263-271

Regulation of persistent activity in hippocampal mossy cells by inhibitory synaptic potentials

Authors: Anderson, R.W., Strowbridge B.W.

  Cholinergic hippocampal mossy cells excitability of rats: glutamate and GABA modulation
  Anderson, R.W., Strowbridge B.W. - 2014

  ACETYLCHOLINE   γ-AMINO-BUTYRIC ACID (GABA)   GLUTAMATE   HIPPOCAMPUS, FORNIX AND SUBICULUM   N-METHYL-D-ASPARTATE (NMDA)   ELECTRIC/MAGNETIC CENTRAL NERVOUS SYSTEM STIMULATION
Contained in: Neuroscience, 2014: 282, 86-100

Role of nicotinic acetylcholine receptors in regulating dopamine neuron activity

Authors: Faure, P., Tolu S., Valverde S., Naudé J.

  Nicotinic acetylcholine receptors on dopaminergic neuron activity - Review
  Faure, P., Tolu S., Valverde S., Naudé J. - 2014

  ACETYLCHOLINE   EXPLORATORY ACTIVITY   LOCOMOTOR ACTIVITY   DOPAMINE   γ-AMINO-BUTYRIC ACID (GABA)   REVIEWS AND COMMENTARIES   UNSPECIFIC ASCENDING ACTIVATING SYSTEM PROJECTION
Contained in: Neuroscience, 2014: 257, 149-157

Expression of β1- and β2-adrenoceptors in different subtypes of interneurons in the medial prefrontal cortex of mice

Authors: Liu, Y., Liang X., Ren W.-W., Li B.-M.

  β1- and β2-adrenoceptor expression in medial prefrontal GABAergic neurons of mice
  Liu, Y., Liang X., Ren W.-W., Li B.-M. - 2014

  EPINEPHRINE AND NOREPINEPHRINE   CEREBRAL CORTEX   γ-AMINO-BUTYRIC ACID (GABA)
Contained in: Psychopharmacology, 2014: 231, 521-531

Noradrenergic α2A-receptor stimulation in the ventral hippocampus reduces impulsive decision-making

Authors: Abela, A.R., Chudasama Y.

  Intra-hippocampal α2A-adrenergic agnosts, D1 antagonists and muscimol on appetitive operant conditioning in rats
  Abela, A.R., Chudasama Y. - 2014

  EPINEPHRINE AND NOREPINEPHRINE   NEURAL REVERSIBLE INACTIVATIONS   OPERANT CONDITIONING   DOPAMINE   γ-AMINO-BUTYRIC ACID (GABA)   HIPPOCAMPUS, FORNIX AND SUBICULUM
Contained in: Physiol. Behav., 2014: 128, 60-69

Individual differences in the forced swimming test and neurochemical kinetics in the rat brain

Authors: Sequeira-Cordero, A., Mora-Gallegos A., Cuenca-Berger P., Fornaguera-Trias J.

  Forced swim test on neurotransmitters, brain-derived neurotrophic factor and corticotropin-releasing factor expression in the rat brain
  Sequeira-Cordero, A., Mora-Gallegos A., Cuenca-Berger P., Fornaguera-Trias J. - 2014

  EPINEPHRINE AND NOREPINEPHRINE   CEREBRAL CORTEX   CORTICO-RELEASING-FACTOR (CRF)   DOPAMINE   γ-AMINO-BUTYRIC ACID (GABA)   GLUTAMATE   HIPPOCAMPUS, FORNIX AND SUBICULUM   NEUROTROPHIC FACTORS   NUCLEUS ACCUMBENS   SEROTONIN   STRESS
Contained in: Brain Res. Bull., 2014: 105, 46-60

Can fear extinction be enhanced? A review of pharmacological and behavioral findings

Authors: Fitzgerald, P.J., Seemann J.R., Maren S.
Contained in: Brain Res., 2014: 1572, 1-10

Nicotine-stimulated release of [3H]norepinephrine is reduce in the hippocampus of an animal model of attention-deficit/hyperactivity disorder, the spontaneously hypertensive rat

Authors: Sterley, T.-L., Howells F.M., Russell V.A.

  Hippocampal nicotine-stimulated norepinephrine release in rats of different strains: AMPA and GABA-A receptor modulation
  Sterley, T.-L., Howells F.M., Russell V.A. - 2014

  EPINEPHRINE AND NOREPINEPHRINE   ACETYLCHOLINE   STRAIN   γ-AMINO-BUTYRIC ACID (GABA)   GLUTAMATE   HIPPOCAMPUS, FORNIX AND SUBICULUM
Contained in: Behav. Brain Res., 2014: 270, 326-329

Urocortin 3 administration impairs fear motivated learning in mice is mediated by transmitters

Authors: Telegdy, G., Foris L., Jaszberenyi M.

  Urocortin 3 on passive avoidance consolidation in mice: nitric oxide, cholinergic, dopaminergic, α1-adrenergic and GABAergic receptor modulation
  Telegdy, G., Foris L., Jaszberenyi M. - 2014

  EPINEPHRINE AND NOREPINEPHRINE   AVOIDANCE   ACETYLCHOLINE   CORTICO-RELEASING-FACTOR (CRF)   DOPAMINE   γ-AMINO-BUTYRIC ACID (GABA)   NITRIC AND NITROUS OXIDE   CONSOLIDATION
Contained in: Behav. Brain Res., 2014: 272, 1-7

The action of orexin B on passive avoidance learning. Involvement of neurotransmitters

Authors: Palotai, M., Telegdy G., Ekwerike A., Jaszberenyi M.

  Orexin B on passive avoidance in rats: GABAergic, α/β-adrenergic, nitric oxide and opioid modulation
  Palotai, M., Telegdy G., Ekwerike A., Jaszberenyi M. - 2014

  EPINEPHRINE AND NOREPINEPHRINE   AVOIDANCE   DOPAMINE   γ-AMINO-BUTYRIC ACID (GABA)   OPIOIDS   NEUROPEPTIDES   NITRIC AND NITROUS OXIDE   CONSOLIDATION
Contained in: Behav. Brain Res., 2014: 259, 142-151

Prefrontal cognitive deficits in mice with altered cerebral cortical GABAergic interneurons

Authors: Bissonette, G.B., Bae M.H., Suresh T., Jaffe D.E., Powell E.M.

  Prefrontal cortex, basolateral amygdala and hippocampus GABAergic interneuron role in Morris water maze and fear conditioninjg performance of mice
  Bissonette, G.B., Bae M.H., Suresh T., Jaffe D.E., Powell E.M. - 2014

  AMYGDALA   SPATIAL ORIENTATION AND SPATIAL MEMORY   CEREBRAL CORTEX   EXTINCTION   FEAR AND RELATED BEHAVIORS   γ-AMINO-BUTYRIC ACID (GABA)   HIPPOCAMPUS, FORNIX AND SUBICULUM
Contained in: Behav. Brain Res., 2014: 260, 92-100

The GABA-synthetic enzyme GAD65 controls circadian activation of conditioned fear pathways

Authors: Bergado-Acosta, J., Muller I., Richter-Levin G., Stork O.

  Circadian fluctuation o exploratory activity, fear conditioning and related brain c-fos expression in mice: GABA modulation
  Bergado-Acosta, J., Muller I., Richter-Levin G., Stork O. - 2014

  AMYGDALA   EXPLORATORY ACTIVITY   FEAR AND RELATED BEHAVIORS   γ-AMINO-BUTYRIC ACID (GABA)   HYPOTHALAMUS   HIPPOCAMPUS, FORNIX AND SUBICULUM   CIRCADIAN RHYTHMS   PROTEINS AND GENES   STATE-DEPENDENT LEARNING
Contained in: Neuroscience, 2014: 258, 147-161

Unpredictable neonatal stress enhances adult anxiety and alters amygdala gene expression related to serotonin and GABA

Authors: Sarro, E.C., Sullivan R.M., Barr G.

  Neonatal stress on dark-light box test and amygdalar serotonin and GABA receptor expression in adult rats
  Sarro, E.C., Sullivan R.M., Barr G. - 2014

  AMYGDALA   DARK/LIGHT CONTEXT   γ-AMINO-BUTYRIC ACID (GABA)   SEROTONIN   STRESS
Contained in: Curr. Opin. Neurobiol., 2014: 26, 110-116

GABAergic cell type diversity in the basolateral amvgdala

Authors: Capogna, M.

  Basolateral amygdala GABAergic neurons - Review
  Capogna, M. - 2014

  AMYGDALA   γ-AMINO-BUTYRIC ACID (GABA)   REVIEWS AND COMMENTARIES
Contained in: Pharmacol. Biochem. Behav., 2014: 118, 79-86

Excitatory/inhibitoryequilibrium of the central amygdala nucleus gates anti-depressive and anxiolytic states in the hamster

Authors: Alò, R., Avolio E., Mele M., Storino F., Canonaco A., Carelli A., Canonaco M.

  Intra-amygdala AMPA antagonist and GABA-A agonist on response to stress and exploratory activity in hamsters
  Alò, R., Avolio E., Mele M., Storino F., Canonaco A., Carelli A., Canonaco M. - 2014

  AMYGDALA   ANXIOLYTIC DRUGS   EXPLORATORY ACTIVITY   γ-AMINO-BUTYRIC ACID (GABA)   GLUTAMATE   STRESS
Contained in: Behav. Brain Res., 2014: 269, 164-174

Gamma-hydroxybutyrate (GHB) induces cognitive deficits and affects GABAB receptors and IGF-1 receptors in male rats

Authors: Johansson, J., Gronbladh A., Hallberg M.

  Gamma-hydroxybutyrate effect on Morris water maze performance and brain GABA and insulin-like growth factor-1 receptors expression in rats
  Johansson, J., Gronbladh A., Hallberg M. - 2014

  AMYGDALA   CENTRAL NERVOUS SYSTEM LESIONS   SPATIAL ORIENTATION AND SPATIAL MEMORY   CEREBRAL CORTEX   γ-AMINO-BUTYRIC ACID (GABA)   HYPOTHALAMUS   HIPPOCAMPUS, FORNIX AND SUBICULUM   UNSPECIFIC ASCENDING ACTIVATING SYSTEM PROJECTION   STRIATUM   SUBSTANTIA NIGRA
Contained in: J. Neurosci., 2014: 34, 363-372

Restraint stress alters nociceptin/orphanin FQ and CRF systems in the rat central amygdala: significance for anxiety-like behaviors

Authors: Ciccocioppo, R., de Guglielmo G., Hansson A.C., Ubaldi M., Kallupi M., Cruz M.T., Oleata C.S., Heilig M., Roberto M.

  Restraint stress on amygdalar neuron excitability, corticotropin-releasing factor and nociceptin/orphanin peptide expression in rats: GABAergic modulation and intra-amygdala peptide injection effects on exploratory activity
  Ciccocioppo, R., de Guglielmo G., Hansson A.C., Ubaldi M., Kallupi M., Cruz M.T., Oleata C.S., Heilig M., Roberto M. - 2014

  AMYGDALA   EXPLORATORY ACTIVITY   CORTICO-RELEASING-FACTOR (CRF)   γ-AMINO-BUTYRIC ACID (GABA)   OPIOIDS   NEUROPEPTIDES   ELECTRIC/MAGNETIC CENTRAL NERVOUS SYSTEM STIMULATION   STRESS