The serotonin-dopamine interaction is critical for fast-onset action of antidepressant treatment: in vivo studies in an animal model of depression.
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Summary
It is concluded that the 5-HT-dopamine interaction is critical to the fast-onset action of antidepressant treatment and is correlated with the improvement of depressive-like behavior.
- Type
- article
- Published
- 2004-01-01
- Cited by
- 99
- References
- 38
- OpenAlex
- https://openalex.org/W2013650626
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:33050833
Keywords
Antidepressant, Depression (economics), Dopamine, Serotonin, Action (physics)
References
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- Estimation of striatal dopamine spillover and metabolism in vivo
- High Serotonin and 5‐Hydroxyindoleacetic Acid Levels in Limbic Brain Regions in a Rat Model of Depression; Normalization by Chronic Antidepressant Treatment
- Elucidation of the neurobiology of depression: insights from a novel genetic animal model.
- Bupropion occupancy of the dopamine transporter is low during clinical treatment
- Administration of antidepressants, diazepam and psychomotor stimulants further confirms the utility of Flinders Sensitive Line rats as an animal model of depression
- Fast onset: an open study of the treatment of major depressive disorder with nefazodone and pindolol combination therapy
- Antidepressant treatments in the 21st century.
- Antidepressant Use in the Elderly
- Role of norepinephrine in the pathophysiology and treatment of mood disorders.
- Effectiveness of pindolol with selected antidepressant drugs in the treatment of major depression.
- Screening for new antidepressants with fast onset and long‐lasting action
- How does pindolol improve antidepressant action?
- Association between depressive behavior and absence of serotonin–dopamine interaction in the nucleus accumbens
Cited by
- Depression, Anhedonia, and Psychomotor Symptoms: The Role of Dopaminergic Neurocircuitry
- Links between depression and substance abuse in adolescents: neurobiological mechanisms.
- The neuropsychology and functional anatomy of timing
- Dynamics of the dopaminergic system as a key component to the understanding of depression.
- Serotonin control of central dopaminergic function: focus on in vivo microdialysis studies.
- Rolle des zentralen dopaminergen Systems bei psychiatrischen Erkrankungen
- An investigation into the antidepressant–like profile of pioglitazone in a genetic rat model of depression
- Reduced Stress-Sensitivity or Increased Reward Experience: The Psychological Mechanism of Response to Antidepressant Medication
- A history of human-like dieting alters serotonergic control of feeding and neurochemical balance in a rat model of binge-eating.
- Brain 5-HT synthesis in the Flinders Sensitive Line rat model of depression: an autoradiographic study.
- Abnormality of VTA local field potential in an animal model of depression was restored by patterned DBS treatment.
- Investigation of Effects of L-Theanine on PTSD-induced Changes in Rat Neurobehavior
- Evidence for the involvement of 5-HT1A receptor in the acute antidepressant-like effect of creatine in mice.
- Simultaneous determination of dopamine and serotonin by use of covalent modification of 5-hydroxytryptophan on glassy carbon electrode
- Quantitative structure-activity relationship of phenoxyphenyl-methanamine compounds with 5HT2A, SERT, and hERG activities.
- Variability of the mesolimbic neuronal activity in a rat model of depression
- Serotonin-2C antagonism augments the effect of citalopram on serotonin and dopamine levels in the ventral tegmental area and nucleus accumbens.
- DHEA Lessens Depressive-Like Behavior via GABA-ergic Modulation of the Mesolimbic System
- Simultaneous Determination of Catecholamines and Serotonin on Poly(3,4-ethylene dioxythiophene) Modified Pt Electrode in Presence of Sodium Dodecyl Sulfate
- Antidepressant-like properties of phosphodiesterase type 5 inhibitors and cholinergic dependency in a genetic rat model of depression
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