Literature DB >> 17965066

Brain-derived neurotrophic factor amplifies neurotransmitter responses and promotes synaptic communication in the enteric nervous system.

W Boesmans1, P Gomes, J Janssens, J Tack, P Vanden Berghe.   

Abstract

BACKGROUND: Besides its role in neuronal growth and differentiation, brain-derived neurotrophic factor (BDNF) has been implicated in the control of peristalsis where it serves to enhance gastrointestinal motility. AIM: To unravel the cellular mechanisms governing BDNF's effect on motility.
METHODS: Studies were performed in primary myenteric neuron cultures and whole-mount preparations derived from guinea pig ileum. Expression of BDNF and its tropomyosin-related kinase B (TrkB) receptor was assessed by immunohistochemistry. Intracellular Ca(2+) concentration ([Ca(2+)](i)) changes in myenteric neurons were monitored using Fluo-4, and neurotransmitter release kinetics at enteric synapses were evaluated with FM1-43 imaging.
RESULTS: Immunohistochemistry revealed the presence of BDNF and TrkB in mucosa, submucosal plexus and myenteric ganglia. Primary cultures also expressed BDNF and TrkB and were used to study the physiological effects of BDNF. None of the neurons studied displayed a [Ca(2+)](i) change when challenged with BDNF. However, BDNF exposure caused an enhancement of Ca(2+) transients induced by serotonin and substance P, which was reversed by the Trk receptor blocker K-252a (0.1 microM). BDNF exposure also resulted in an amplification of spontaneous network activity which was reflected in an increased number of synaptic vesicle clusters. Furthermore, BDNF treatment facilitated FM1-43-labelled vesicle destaining in enteric terminals during field stimulation.
CONCLUSIONS: The findings demonstrate that BDNF is able to enhance rather than directly activate enteric nervous system signalling. Therefore, the promotion of motility by BDNF seems to result from its potent modulating role on enteric neuronal activity and synaptic communication.

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Year:  2007        PMID: 17965066     DOI: 10.1136/gut.2007.131839

Source DB:  PubMed          Journal:  Gut        ISSN: 0017-5749            Impact factor:   23.059


  33 in total

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Authors:  M Al-Qudah; R Alkahtani; H I Akbarali; K S Murthy; J R Grider
Journal:  Neurogastroenterol Motil       Date:  2015-06-18       Impact factor: 3.598

4.  Brain-derived neurotrophic factor enhances cholinergic contraction of longitudinal muscle of rabbit intestine via activation of phospholipase C.

Authors:  M Al-Qudah; C D Anderson; S Mahavadi; Z L Bradley; H I Akbarali; K S Murthy; J R Grider
Journal:  Am J Physiol Gastrointest Liver Physiol       Date:  2013-12-19       Impact factor: 4.052

5.  Diabetes impairs synaptic plasticity in the superior cervical ganglion: possible role for BDNF and oxidative stress.

Authors:  K H Alzoubi; O F Khabour; I A Alhaidar; A M Aleisa; K A Alkadhi
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6.  Brain-Derived Neurotrophic Factor Contributes to Colonic Hypermotility in a Chronic Stress Rat Model.

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7.  Mechanism of hyperphagia contributing to obesity in brain-derived neurotrophic factor knockout mice.

Authors:  E A Fox; J E Biddinger; K R Jones; J McAdams; A Worman
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8.  A defect in Δ6 and Δ5 desaturases may be a factor in the initiation and progression of insulin resistance, the metabolic syndrome and ischemic heart disease in South Asians.

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9.  Reduced intestinal brain-derived neurotrophic factor increases vagal sensory innervation of the intestine and enhances satiation.

Authors:  Jessica E Biddinger; Edward A Fox
Journal:  J Neurosci       Date:  2014-07-30       Impact factor: 6.167

Review 10.  Neurotrophic factors in autonomic nervous system plasticity and dysfunction.

Authors:  Mark P Mattson; Ruiqian Wan
Journal:  Neuromolecular Med       Date:  2008-01-03       Impact factor: 3.843

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