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Biochemical Pharmacology, ISSN 0006-2952, 2003, Volume 66, Issue 9, pp. 1673 - 1680
Journal Article
Human Molecular Genetics, ISSN 0964-6906, 1/2008, Volume 17, Issue 1, pp. 87 - 97
Journal Article
Journal of Clinical Oncology, ISSN 0732-183X, 01/2017, Volume 35, Issue 1, pp. 14 - 23
Journal Article
American Journal of Medical Genetics Part B: Neuropsychiatric Genetics, ISSN 1552-4841, 03/2010, Volume 153B, Issue 2, pp. 387 - 396
Journal Article
Brain Research, ISSN 0006-8993, 2009, Volume 1288, pp. 69 - 78
Abstract Brainstem monoaminergic nuclei express glucocorticoid receptors ( GR ), and glucocorticoids have been shown to inhibit expression of enzymes involved... 
Neurology | Serotonin | Mineralocorticoid receptor | Glucocorticoid receptor | Tricyclic antidepressant | HPA axis | Norepinephrine | Glucocorticoid | Monoamine oxidase inhibitor | CORTICOTROPIN-RELEASING HORMONE | MALE C57BL/6 MICE | MAJOR DEPRESSION | NEUROSCIENCES | MESSENGER-RNA LEVELS | MODIFIED MOUSE MODELS | VENTRAL TEGMENTAL AREA | PITUITARY-ADRENOCORTICAL ACTIVITY | ATYPICAL DEPRESSION | RAT-BRAIN | Receptors, Mineralocorticoid - genetics | Up-Regulation | Gene Expression - drug effects | Phenelzine - pharmacology | Locus Coeruleus - drug effects | Male | Raphe Nuclei - metabolism | In Situ Hybridization | Monoamine Oxidase Inhibitors - pharmacology | Mice, Inbred C57BL | Tryptophan Hydroxylase - genetics | Adrenalectomy | Tyrosine 3-Monooxygenase - genetics | Animals | Raphe Nuclei - drug effects | Analysis of Variance | Image Processing, Computer-Assisted | Ventral Tegmental Area - metabolism | Receptors, Glucocorticoid - genetics | Adrenergic Uptake Inhibitors - pharmacology | Corticosterone - metabolism | Mice | Imipramine - pharmacology | RNA, Messenger | Locus Coeruleus - metabolism | Oxidases | Tyrosine | Corticosterone | Depression, Mental | Phenelzine | Tryptophan | Gene expression | Imipramine | Phenols | Hydroxylases | Noradrenaline | Antianxiety agents | Steroids | norepinephrine | glucocorticoid receptor | serotonin | tricyclic antidepressant | mineralocorticoid receptor | monoamine oxidase inhibitor
Journal Article
Molecular Psychiatry, ISSN 1359-4184, 07/2012, Volume 17, Issue 7, pp. 694 - 704
Probably the foremost hypothesis of depression is the 5-hydroxytryptamine (5-HT, serotonin) deficiency hypothesis. Accordingly, anomalies in putative 5-HT... 
Tph2 | depression | 5-HT | biomarkers | FREELY MOVING RATS | PSYCHIATRY | ANTIDEPRESSANT TREATMENTS | BIOCHEMISTRY & MOLECULAR BIOLOGY | TRYPTOPHAN-HYDROXYLASE-2 TPH2 | REUPTAKE INHIBITORS | MAJOR DEPRESSION | HEALTHY-HUMAN SUBJECTS | CEREBROSPINAL-FLUID | NEUROSCIENCES | EXTRACELLULAR SEROTONIN | 5-HT1A | SUICIDAL-BEHAVIOR | RECEPTOR-BINDING | 5-HT2A | Receptor, Serotonin, 5-HT2A - genetics | Synaptic Transmission - physiology | Frontal Lobe - metabolism | Synaptic Transmission - genetics | Receptor, Serotonin, 5-HT1A - genetics | Hydroxyindoleacetic Acid - cerebrospinal fluid | Serotonin 5-HT1 Receptor Agonists - pharmacology | Male | Hypothermia - chemically induced | Depression - genetics | Tryptophan Hydroxylase - physiology | Depression - cerebrospinal fluid | Behavior, Animal - drug effects | Female | Synaptic Transmission - drug effects | Corticosterone - blood | Gene Knock-In Techniques - methods | Receptor, Serotonin, 5-HT1A - metabolism | Disease Models, Animal | Biomarkers - metabolism | Serotonergic Neurons - enzymology | Serotonergic Neurons - physiology | Serotonergic Neurons - drug effects | Mice, Inbred C57BL | Behavior, Animal - physiology | Biomarkers - blood | Fenfluramine - pharmacology | Tryptophan Hydroxylase - genetics | Prolactin - blood | Hippocampus - metabolism | Extracellular Fluid - metabolism | Animals | Gene Knock-In Techniques - psychology | Serotonin - metabolism | Mice | Biomarkers - cerebrospinal fluid | Hypothermia - physiopathology | Receptor, Serotonin, 5-HT2A - metabolism | Serotonin - deficiency | Depression - blood | Care and treatment | Serotonin | Depression, Mental | Physiological aspects | Neural transmission | Genetic aspects | Research | Hypothermia | Animal models | Central nervous system | Data processing | Depression | Cerebrospinal fluid | Serotonin S2 receptors | Guanine nucleotide-binding protein | Serotonin S1 receptors | Prolactin | Cortex (frontal) | tryptophan hydroxylase | Receptor mechanisms | Neurotransmission
Journal Article