Haddjeri, Nasser, 19..-....
Nasser Haddjeri researcher
VIAF ID: 209003051 (Personal)
Permalink: http://viaf.org/viaf/209003051
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Works
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A 5-HT3 receptor antagonist potentiates the behavioral, neurochemical and electrophysiological actions of an SSRI antidepressant. |
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The allosteric citalopram binding site differentially interferes with neuronal firing rate and SERT trafficking in serotonergic neurons. |
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Asenapine modulates mood-related behaviors and 5-HT1A/7 receptors-mediated neurotransmission. |
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[Astroglial modulation of deep brain stimulation in depression] |
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Differential control of dopamine ascending pathways by serotonin2B receptor antagonists: New opportunities for the treatment of schizophrenia. |
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Effect of the multimodal acting antidepressant vortioxetine on rat hippocampal plasticity and recognition memory |
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Étude préclinique des propriétés pseudo-antidépressives des antagonistes des récepteurs 5-HT7 : vers une nouvelle classe d'antidépresseurs plus efficaces |
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GABAergic network activation of glial cells underlies hippocampal heterosynaptic depression. |
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Genetic and pharmacological inactivation of astroglial connexin 43 differentially influences the acute response of antidepressant and anxiolytic drugs |
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Inducing a long-term potentiation in the dentate gyrus is sufficient to produce rapid antidepressant-like effects. |
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Involvement of 5-HT₇ receptors in vortioxetine's modulation of circadian rhythms and episodic memory in rodents. |
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Involvment of Insulin Resistance of the Serotonergic System in Type-2 Diabetes Associated Mood Disorders. |
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Lu AA21004, a novel multimodal antidepressant, produces regionally selective increases of multiple neurotransmitters--a rat microdialysis and electrophysiology study. |
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New antidepressive response augmentation : focus on SERT and 5-HT3 receptors blockade. |
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The novel atypical antipsychotic cariprazine demonstrates dopamine D2 receptor-dependent partial agonist actions on rat mesencephalic dopamine neuronal activity. |
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Opposite control of mesocortical and mesoaccumbal dopamine pathways by serotonin2B receptor blockade: Involvement of medial prefrontal cortex serotonin1A receptors |
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The peptidic antidepressant spadin interacts with prefrontal 5-HT(4) and mGluR(2) receptors in the control of serotonergic function. |
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Potentialisation de la réponse antidépressive par la lumière : étude préclinique |
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Protein kinase C regulates mood-related behaviors and adult hippocampal cell proliferation in rats. |
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Protein Kinases Alter the Allosteric Modulation of the Serotonin Transporter In Vivo and In Vitro. |
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The rapid recovery of 5-HT cell firing induced by the antidepressant vortioxetine involves 5-HT(3) receptor antagonism. |
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Résistance à l'Insuline du Système Sérotoninergique : Implication dans les Troubles de l'Humeur Comorbides au Diabete De Type 2 |
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Rôle du récepteur 5-HT3 dans la physiopathologie de la dépression et son traitement |
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A role for the PKC signaling system in the pathophysiology and treatment of mood disorders: involvement of a functional imbalance? |
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Role of 5-HT3 receptor in depression and its treatment. |
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Serotonergic and non-serotonergic targets of SSRIs : in vivo Pharmacological and Genetic approaches in mice. |
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Stimulation du cortex préfrontal : Mécanismes neurobiologiques de son effet antidépresseur |
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La stimulation transcrânienne par courant continu (tDCS) dans la dépression : ses effets comportementaux et les modifications physiologiques qui les sous-tendent chez l'animal |
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Stress Models of Depression: A Question of Bad Timing. |
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Task- and Treatment Length-Dependent Effects of Vortioxetine on Scopolamine-Induced Cognitive Dysfunction and Hippocampal Extracellular Acetylcholine in Rats |
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Transcranial Direct Current Stimulation (tDCS) in depression : Its behavioral effects and the underlying physiological modifications in animal. |
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Trigeminal central sensitization and neuron/astrocyte interactions in a model of chronic migraine. |
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The use of light to potentiate antidepressant medication : preclinical evidence. |
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Vulnérabilité au stress post-traumatique suite à un traumatisme crânien : marqueurs neuroanatomiques, neurotrophiques et épigénétiques |
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