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      뇌유래신경영양인자와 뇌 신경가소성: 비약물적 개입 = Brain-Derived Neurotrophic Factor and Brain Plasticity: Non-Pharmacological Intervention

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      https://www.riss.kr/link?id=A108566767

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      다국어 초록 (Multilingual Abstract)

      Many psychiatric disorders are associated with brain functional dysfunctions and neuronal degeneration. According to the research so far, enhanced brain plasticity reduces neurodegeneration and recovers neuronal damage. Brain-derived neurotrophic factor (BDNF) is one of the most extensively studied neurotrophins in the mammalian brain that plays major roles in neuronal survival, development, growth, and maintenance of neurons in brain circuits related to emotion and cognitive function. Also, BDNF plays an important role in brain plasticity, influencing dendritic spines in the hippocampus neurogenesis. Changes in neurogenesis and dendritic density can improve psychiatric symptoms and cognitive functions. BDNF has potent effects on brain plasticity through biochemical mechanisms, cellular signal pathways, and epigenetic changes. There are pharmacological and non-pharmacological interventions to increase the expression of BDNF and enhance brain plasticity. Non-pharmacological interventions such as physical exercise, nutritional change, environmental enrichment, and neuromodulation have biological mechanisms that increase the expression of BDNF and brain plasticity. Non-pharmacological interventions are cost-effective and safe ways to improve psychiatric symptoms.
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      Many psychiatric disorders are associated with brain functional dysfunctions and neuronal degeneration. According to the research so far, enhanced brain plasticity reduces neurodegeneration and recovers neuronal damage. Brain-derived neurotrophic fact...

      Many psychiatric disorders are associated with brain functional dysfunctions and neuronal degeneration. According to the research so far, enhanced brain plasticity reduces neurodegeneration and recovers neuronal damage. Brain-derived neurotrophic factor (BDNF) is one of the most extensively studied neurotrophins in the mammalian brain that plays major roles in neuronal survival, development, growth, and maintenance of neurons in brain circuits related to emotion and cognitive function. Also, BDNF plays an important role in brain plasticity, influencing dendritic spines in the hippocampus neurogenesis. Changes in neurogenesis and dendritic density can improve psychiatric symptoms and cognitive functions. BDNF has potent effects on brain plasticity through biochemical mechanisms, cellular signal pathways, and epigenetic changes. There are pharmacological and non-pharmacological interventions to increase the expression of BDNF and enhance brain plasticity. Non-pharmacological interventions such as physical exercise, nutritional change, environmental enrichment, and neuromodulation have biological mechanisms that increase the expression of BDNF and brain plasticity. Non-pharmacological interventions are cost-effective and safe ways to improve psychiatric symptoms.

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      참고문헌 (Reference)

      1 Chase HW, "Transcranial direct current stimulation : a roadmap for research, from mechanism of action to clinical implementation" 25 : 397-407, 2020

      2 Selman A, "The role of obesity and diabetes in dementia" 23 : 9267-, 2022

      3 Kang MJY, "The mechanisms behind rapid antidepressant effects of ketamine : a systematic review with a focus on molecular neuroplasticity" 13 : 860882-, 2022

      4 Wu A, "The interplay between oxidative stress and brain-derived neurotrophic factor modulates the outcome of a saturated fat diet on synaptic plasticity and cognition" 19 : 1699-1707, 2004

      5 Abdanipour A, "The effect of lithium chloride on BDNF, NT3, and their receptor mRNA levels in the spinal contusion rat models" 41 : 577-583, 2019

      6 Deinhardt K, "Shaping neurons : long and short range effects of mature and proBDNF signalling upon neuronal structure" 76 (76): 603-609, 2014

      7 Zaks N, "Reprint of : elemental dysregulation in psychotic spectrum disorders : a review and research synthesis" 247 : 33-40, 2022

      8 McNerney MW, "Repetitive transcranial magnetic stimulation improves brain-derived neurotrophic factor and cholinergic signaling in the 3xTgAD mouse model of Alzheimer’s disease" 86 : 499-507, 2022

      9 Wang HY, "Repetitive transcranial magnetic stimulation enhances BDNF-TrkB signaling in both brain and lymphocyte" 31 : 11044-11054, 2011

      10 Azman KF, "Recent advances on the role of brain-derived neurotrophic factor(BDNF)in neurodegenerative diseases" 23 : 6827-, 2022

      1 Chase HW, "Transcranial direct current stimulation : a roadmap for research, from mechanism of action to clinical implementation" 25 : 397-407, 2020

      2 Selman A, "The role of obesity and diabetes in dementia" 23 : 9267-, 2022

      3 Kang MJY, "The mechanisms behind rapid antidepressant effects of ketamine : a systematic review with a focus on molecular neuroplasticity" 13 : 860882-, 2022

      4 Wu A, "The interplay between oxidative stress and brain-derived neurotrophic factor modulates the outcome of a saturated fat diet on synaptic plasticity and cognition" 19 : 1699-1707, 2004

      5 Abdanipour A, "The effect of lithium chloride on BDNF, NT3, and their receptor mRNA levels in the spinal contusion rat models" 41 : 577-583, 2019

      6 Deinhardt K, "Shaping neurons : long and short range effects of mature and proBDNF signalling upon neuronal structure" 76 (76): 603-609, 2014

      7 Zaks N, "Reprint of : elemental dysregulation in psychotic spectrum disorders : a review and research synthesis" 247 : 33-40, 2022

      8 McNerney MW, "Repetitive transcranial magnetic stimulation improves brain-derived neurotrophic factor and cholinergic signaling in the 3xTgAD mouse model of Alzheimer’s disease" 86 : 499-507, 2022

      9 Wang HY, "Repetitive transcranial magnetic stimulation enhances BDNF-TrkB signaling in both brain and lymphocyte" 31 : 11044-11054, 2011

      10 Azman KF, "Recent advances on the role of brain-derived neurotrophic factor(BDNF)in neurodegenerative diseases" 23 : 6827-, 2022

      11 Rostamzadeh A, "Psychotherapeutic interventions in individuals at risk for Alzheimer’s dementia : a systematic review" 14 : 18-, 2022

      12 Cheng CM, "Predictive roles of brain-derived neurotrophic factor Val66Met polymorphism on antidepressant efficacy of different forms of prefrontal brain stimulation monotherapy : a randomized, double-blind, shamcontrolled study" 297 : 353-359, 2022

      13 Mahalakshmi B, "Possible neuroprotective mechanisms of physical exercise in neurodegeneration" 21 : 5895-, 2020

      14 Fernandes J, "Physical exercise as an epigenetic modulator of brain plasticity and cognition" 80 : 443-456, 2017

      15 Szarowicz CA, "New frontiers in neurodegeneration and regeneration associated with brain-derived neurotrophic factor and the rs6265 single nucleotide polymorphism" 23 : 8011-, 2022

      16 Burke SN, "Neural plasticity in the ageing brain" 7 : 30-40, 2006

      17 Takeda A, "Movement of zinc and its functional significance in the brain" 34 : 137-148, 2000

      18 Chen SD, "More insight into BDNF against neurodegeneration : anti-apoptosis, anti-oxidation, and suppression of autophagy" 18 : 545-, 2017

      19 Martens L, "Met carriers of the BDNF Val66Met polymorphism show reduced Glx/NAA in the pregenual ACC in two independent cohorts" 11 : 6742-, 2021

      20 Zhao C, "Mechanisms and functional implications of adult neurogenesis" 132 : 645-660, 2008

      21 Sarris J, "Lifestyle medicine for depression" 14 : 107-, 2014

      22 Rovio S, "Leisure-time physical activity at midlife and the risk of dementia and Alzheimer’s disease" 4 : 705-711, 2005

      23 Mehrpouya S, "Iron administration prevents BDNF decrease and depressive-like behavior following chronic stress" 1596 : 79-87, 2015

      24 Seidler K, "Intermittent fasting and cognitive performance – Targeting BDNF as potential strategy to optimise brain health" 65 : 100971-, 2022

      25 Cecerska-Heryć E, "Importance of oxidative stress in the pathogenesis, diagnosis, and monitoring of patients with neuropsychiatric disorders, a review" 153 : 105269-, 2022

      26 Tong J, "Impact of repetitive transcranial magnetic stimulation(rTMS)on theory of mind and executive function in major depressive disorder and its correlation with brain-derived neurotrophic factor(BDNF) : a randomized, double-blind, sham-controlled trial" 11 : 765-, 2021

      27 Denham J, "Genome-wide sperm DNA methylation changes after 3 months of exercise training in humans" 7 : 717-731, 2015

      28 Conquer JA, "Fatty acid analysis of blood plasma of patients with Alzheimer’s disease, other types of dementia, and cognitive impairment" 35 : 1305-1312, 2000

      29 Short AK, "Exercise alters mouse sperm small noncoding RNAs and induces a transgenerational modification of male offspring conditioned fear and anxiety" 7 : e1114-, 2017

      30 Branchi I, "Epigenetic control of neurobehavioural plasticity : the role of neurotrophins" 15 : 353-362, 2004

      31 Rule L, "Environmental enrichment rescues survival and function of adult-born neurons following early life stress" 26 : 1898-1908, 2021

      32 Cutuli D, "Environmental enrichment effects on the brain-derived neurotrophic factor expression in healthy condition, Alzheimer’s disease, and other neurodegenerative disorders" 85 : 975-992, 2022

      33 Ohline SM, "Environmental enrichment effects on synaptic and cellular physiology of hippocampal neurons" 145 (145): 3-12, 2019

      34 Sparling JE, "Environmental enrichment and its influence on rodent offspring and maternal behaviours, a scoping style review of indices of depression and anxiety" 197 : 172997-, 2020

      35 Ortega RM, "Effects of omega 3 fatty acids supplementation in behavior and non-neurodegenerative neuropsychiatric disorders" 107 (107): S261-S270, 2012

      36 Pieramico V, "Effects of non-pharmacological or pharmacological interventions on cognition and brain plasticity of aging individuals" 8 : 153-, 2014

      37 Mosiołek A, "Effects of antidepressant treatment on neurotrophic factors(BDNF and IGF-1)in patients with major depressive disorder(MDD)" 10 : 3377-, 2021

      38 Lee J, "Dietary restriction increases the number of newly generated neural cells, and induces BDNF expression, in the dentate gyrus of rats" 15 : 99-108, 2000

      39 Gomez-Pinilla F, "Diet and cognition : interplay between cell metabolism and neuronal plasticity" 16 : 726-733, 2013

      40 Carter AR, "Brain-derived neurotrophic factor modulates cerebellar plasticity and synaptic ultrastructure" 22 : 1316-1327, 2002

      41 Balaratnasingam S, "Brain derived neurotrophic factor : a novel neurotrophin involved in psychiatric and neurological disorders" 134 : 116-124, 2012

      42 Guo Z, "Beneficial effects of dietary restriction on cerebral cortical synaptic terminals : preservation of glucose and glutamate transport and mitochondrial function after exposure to amyloid beta-peptide, iron, and 3-nitropropionic acid" 75 : 314-320, 2000

      43 Wang CS, "BDNF signaling in context : from synaptic regulation to psychiatric disorders" 185 : 62-76, 2022

      44 Waterhouse EG, "BDNF promotes differentiation and maturation of adult-born neurons through GABAergic transmission" 32 : 14318-14330, 2012

      45 Patel AV, "BDNF is required for the survival of differentiated geniculate ganglion neurons" 340 : 419-429, 2010

      46 Yang JL, "BDNF and exercise enhance neuronal DNA repair by stimulating CREB-mediated production of apurinic/apyrimidinic endonuclease 1" 16 : 161-174, 2014

      47 Abellaneda-Pérez K, "BDNF Val66Met gene polymorphism modulates brain activity following rTMS-induced memory impairment" 12 : 176-, 2022

      48 Pathak P, "Association of serum BDNF level and Val66Met polymorphism with response to treatment in patients of major depressive disease : a step towards personalized therapy" 430 : 113931-, 2022

      49 Podda MV, "Anodal transcranial direct current stimulation boosts synaptic plasticity and memory in mice via epigenetic regulation of Bdnf expression" 6 : 22180-, 2016

      50 Wayman GA, "An activity-regulated microRNA controls dendritic plasticity by down-regulating p250GAP" 105 : 9093-9098, 2008

      51 Ludyga S, "Acute effects of moderate aerobic exercise on specific aspects of executive function in different age and fitness groups : a meta-analysis" 53 : 1611-1626, 2016

      52 Gao J, "A novel pathway regulates memory and plasticity via SIRT1 and miR-134" 466 : 1105-1109, 2010

      53 Fitzgerald PB, "A negative pilot study of daily bimodal transcranial direct current stimulation in schizophrenia" 7 : 813-816, 2014

      54 Molteni R, "A high-fat, refined sugar diet reduces hippocampal brain-derived neurotrophic factor, neuronal plasticity, and learning" 112 : 803-814, 2002

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