Neurotrophic factors and neuroplasticity pathways in the pathophysiology and treatment of depression
Нейротрофические факторы и пути нейропластичности в патофизиологии и лечении депрессии
2018-06-30
SCID: 54.1/rpz2c6dg
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antidepressant treatmentdepressionneuroplasticityneurotrophic factorsneurotrophin theory
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Abstract (AI)
Depression is a major health problem with a high prevalence and a heavy socioeconomic burden in western societies. It is associated with atrophy and impaired functioning of cortico-limbic regions involved in mood and emotion regulation. It has been suggested that alterations in neurotrophins underlie impaired neuroplasticity, which may be causally related to the development and course of depression. Accordingly, mounting evidence suggests that antidepressant treatment may exert its beneficial effects by enhancing trophic signaling on neuronal and synaptic plasticity. However, current antidepressants still show a delayed onset of action, as well as lack of efficacy. Hence, a deeper understanding of the molecular and cellular mechanisms involved in the pathophysiology of depression, as well as in the action of antidepressants, might provide further insight to drive the development of novel fast-acting and more effective therapies. Here, we summarize the current literature on the involvement of neurotrophic factors in the pathophysiology and treatment of depression. Further, we advocate that future development of antidepressants should be based on the neurotrophin theory.
Key Findings
1
Altered neurotrophin signaling may impair neuroplasticity and contribute causally to the development and progression of depression.
2
Depression is associated with atrophy and impaired functioning of cortico-limbic regions involved in mood and emotion regulation.
3
Evidence suggests antidepressants produce therapeutic effects partly by enhancing neurotrophic signaling that supports neuronal and synaptic plasticity.
4
Existing antidepressants have delayed onset and limited efficacy, highlighting the need for faster-acting and more effective treatments.
5
Future antidepressant development should be guided by the neurotrophin theory and its molecular and cellular mechanisms.
Research Object
Depression and its associated cortico-limbic neuronal and synaptic systems
Research Subject
The role of neurotrophic factors and neuroplasticity pathways in depression pathophysiology and antidepressant treatment, including trophic signaling effects on neuronal and synaptic plasticity
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2018-06-30
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