Neurotrophic Factor BDNF, Physiological Functions and Therapeutic Potential in Depression, Neurodegeneration and Brain Cancer
Нейротрофический фактор BDNF: физиологические функции и терапевтический потенциал при депрессии, нейродегенерации и раке головного мозга
2020-10-21
SCID: 54.1/q8u22u3n
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Brain-derived neurotrophic factor (BDNF)GlioblastomaNeurodegenerationSynaptic plasticityTrkB receptor signaling
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Abstract (AI)
Brain-derived neurotrophic factor (BDNF) is one of the most distributed and extensively studied neurotrophins in the mammalian brain. BDNF signals through the tropomycin receptor kinase B (TrkB) and the low affinity p75 neurotrophin receptor (p75NTR). BDNF plays an important role in proper growth, development, and plasticity of glutamatergic and GABAergic synapses and through modulation of neuronal differentiation, it influences serotonergic and dopaminergic neurotransmission. BDNF acts as paracrine and autocrine factor, on both pre-synaptic and post-synaptic target sites. It is crucial in the transformation of synaptic activity into long-term synaptic memories. BDNF is considered an instructive mediator of functional and structural plasticity in the central nervous system (CNS), influencing dendritic spines and, at least in the hippocampus, the adult neurogenesis. Changes in the rate of adult neurogenesis and in spine density can influence several forms of learning and memory and can contribute to depression-like behaviors. The possible roles of BDNF in neuronal plasticity highlighted in this review focus on the effect of antidepressant therapies on BDNF-mediated plasticity. Moreover, we will review data that illustrate the role of BDNF as a potent protective factor that is able to confer protection against neurodegeneration, in particular in Alzheimer's disease. Finally, we will give evidence of how the involvement of BDNF in the pathogenesis of brain glioblastoma has emerged, thus opening new avenues for the treatment of this deadly cancer.
Key Findings
1
Altered adult neurogenesis and spine density linked to BDNF can affect learning and memory and contribute to depression-like behaviors.
2
Antidepressant therapies may exert therapeutic effects by enhancing or modulating BDNF-mediated neural plasticity.
3
BDNF functions as a neuroprotective factor in neurodegeneration, particularly Alzheimer’s disease, while its involvement in glioblastoma pathogenesis suggests potential therapeutic opportunities.
4
BDNF mediates functional and structural CNS plasticity, including dendritic spine remodeling, hippocampal adult neurogenesis, and conversion of synaptic activity into long-term memory.
5
BDNF signals through TrkB and p75NTR receptors to regulate neuronal growth, differentiation, synaptic development, and neurotransmission.
Research Object
Brain-derived neurotrophic factor (BDNF) signaling and functions in the mammalian central nervous system, including its involvement in depression, neurodegeneration, and brain glioblastoma
Research Subject
BDNF-mediated synaptic and neuronal plasticity, neuroprotective effects, and pathogenic and therapeutic roles across depression, neurodegeneration, and brain cancer
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2020-10-21
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