Distal axotomy enhances retrograde presynaptic excitability onto injured pyramidal neurons via trans-synaptic signaling

Spinal cord injury can induce synaptic reorganization and remodeling in the brain. Here the authors study how severed distal axons signal back to the cell body to induce hyperexcitability, loss of inhibition and enhanced presynaptic release through netrin-1.

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Autores principales: Tharkika Nagendran, Rylan S. Larsen, Rebecca L. Bigler, Shawn B. Frost, Benjamin D. Philpot, Randolph J. Nudo, Anne Marion Taylor
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/1f87dabee91b461a89a2e1999bf53396
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spelling oai:doaj.org-article:1f87dabee91b461a89a2e1999bf533962021-12-02T15:38:56ZDistal axotomy enhances retrograde presynaptic excitability onto injured pyramidal neurons via trans-synaptic signaling10.1038/s41467-017-00652-y2041-1723https://doaj.org/article/1f87dabee91b461a89a2e1999bf533962017-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-00652-yhttps://doaj.org/toc/2041-1723Spinal cord injury can induce synaptic reorganization and remodeling in the brain. Here the authors study how severed distal axons signal back to the cell body to induce hyperexcitability, loss of inhibition and enhanced presynaptic release through netrin-1.Tharkika NagendranRylan S. LarsenRebecca L. BiglerShawn B. FrostBenjamin D. PhilpotRandolph J. NudoAnne Marion TaylorNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-16 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Tharkika Nagendran
Rylan S. Larsen
Rebecca L. Bigler
Shawn B. Frost
Benjamin D. Philpot
Randolph J. Nudo
Anne Marion Taylor
Distal axotomy enhances retrograde presynaptic excitability onto injured pyramidal neurons via trans-synaptic signaling
description Spinal cord injury can induce synaptic reorganization and remodeling in the brain. Here the authors study how severed distal axons signal back to the cell body to induce hyperexcitability, loss of inhibition and enhanced presynaptic release through netrin-1.
format article
author Tharkika Nagendran
Rylan S. Larsen
Rebecca L. Bigler
Shawn B. Frost
Benjamin D. Philpot
Randolph J. Nudo
Anne Marion Taylor
author_facet Tharkika Nagendran
Rylan S. Larsen
Rebecca L. Bigler
Shawn B. Frost
Benjamin D. Philpot
Randolph J. Nudo
Anne Marion Taylor
author_sort Tharkika Nagendran
title Distal axotomy enhances retrograde presynaptic excitability onto injured pyramidal neurons via trans-synaptic signaling
title_short Distal axotomy enhances retrograde presynaptic excitability onto injured pyramidal neurons via trans-synaptic signaling
title_full Distal axotomy enhances retrograde presynaptic excitability onto injured pyramidal neurons via trans-synaptic signaling
title_fullStr Distal axotomy enhances retrograde presynaptic excitability onto injured pyramidal neurons via trans-synaptic signaling
title_full_unstemmed Distal axotomy enhances retrograde presynaptic excitability onto injured pyramidal neurons via trans-synaptic signaling
title_sort distal axotomy enhances retrograde presynaptic excitability onto injured pyramidal neurons via trans-synaptic signaling
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/1f87dabee91b461a89a2e1999bf53396
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AT rylanslarsen distalaxotomyenhancesretrogradepresynapticexcitabilityontoinjuredpyramidalneuronsviatranssynapticsignaling
AT rebeccalbigler distalaxotomyenhancesretrogradepresynapticexcitabilityontoinjuredpyramidalneuronsviatranssynapticsignaling
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AT benjamindphilpot distalaxotomyenhancesretrogradepresynapticexcitabilityontoinjuredpyramidalneuronsviatranssynapticsignaling
AT randolphjnudo distalaxotomyenhancesretrogradepresynapticexcitabilityontoinjuredpyramidalneuronsviatranssynapticsignaling
AT annemariontaylor distalaxotomyenhancesretrogradepresynapticexcitabilityontoinjuredpyramidalneuronsviatranssynapticsignaling
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