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A novel inhibitor of p75-neurotrophin receptor improves functional outcomes in two models of traumatic brain injury

The p75 neurotrophin receptor is important in multiple physiological actions including neuronal survival and neurite outgrowth during development, and after central nervous system injury. We have discovered a novel piperazine-derived compound, EVT901, which interferes with p75 neurotrophin receptor...

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Autores principales: Delbary-Gossart, Sandrine, Lee, Sangmi, Baroni, Marco, Lamarche, Isabelle, Arnone, Michele, Canolle, Benoit, Lin, Amity, Sacramento, Jeffrey, Salegio, Ernesto A., Castel, Marie-Noelle, Delesque-Touchard, Nathalie, Alam, Antoine, Laboudie, Patricia, Ferzaz, Badia, Savi, Pierre, Herbert, Jean-Marc, Manley, Geoffrey T., Ferguson, Adam R., Bresnahan, Jacqueline C., Bono, Françoise, Beattie, Michael S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4892754/
https://www.ncbi.nlm.nih.gov/pubmed/27084575
http://dx.doi.org/10.1093/brain/aww074
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author Delbary-Gossart, Sandrine
Lee, Sangmi
Baroni, Marco
Lamarche, Isabelle
Arnone, Michele
Canolle, Benoit
Lin, Amity
Sacramento, Jeffrey
Salegio, Ernesto A.
Castel, Marie-Noelle
Delesque-Touchard, Nathalie
Alam, Antoine
Laboudie, Patricia
Ferzaz, Badia
Savi, Pierre
Herbert, Jean-Marc
Manley, Geoffrey T.
Ferguson, Adam R.
Bresnahan, Jacqueline C.
Bono, Françoise
Beattie, Michael S.
author_facet Delbary-Gossart, Sandrine
Lee, Sangmi
Baroni, Marco
Lamarche, Isabelle
Arnone, Michele
Canolle, Benoit
Lin, Amity
Sacramento, Jeffrey
Salegio, Ernesto A.
Castel, Marie-Noelle
Delesque-Touchard, Nathalie
Alam, Antoine
Laboudie, Patricia
Ferzaz, Badia
Savi, Pierre
Herbert, Jean-Marc
Manley, Geoffrey T.
Ferguson, Adam R.
Bresnahan, Jacqueline C.
Bono, Françoise
Beattie, Michael S.
author_sort Delbary-Gossart, Sandrine
collection PubMed
description The p75 neurotrophin receptor is important in multiple physiological actions including neuronal survival and neurite outgrowth during development, and after central nervous system injury. We have discovered a novel piperazine-derived compound, EVT901, which interferes with p75 neurotrophin receptor oligomerization through direct interaction with the first cysteine-rich domain of the extracellular region. Using ligand binding assays with cysteine-rich domains-fused p75 neurotrophin receptor, we confirmed that EVT901 interferes with oligomerization of full-length p75 neurotrophin receptor in a dose-dependent manner. Here we report that EVT901 reduces binding of pro-nerve growth factor to p75 neurotrophin receptor, blocks pro-nerve growth factor induced apoptosis in cells expressing p75 neurotrophin receptor, and enhances neurite outgrowth in vitro. Furthermore, we demonstrate that EVT901 abrogates p75 neurotrophin receptor signalling by other ligands, such as prion peptide and amyloid-β. To test the efficacy of EVT901 in vivo, we evaluated the outcome in two models of traumatic brain injury. We generated controlled cortical impacts in adult rats. Using unbiased stereological analysis, we found that EVT901 delivered intravenously daily for 1 week after injury, reduced lesion size, protected cortical neurons and oligodendrocytes, and had a positive effect on neurological function. After lateral fluid percussion injury in adult rats, oral treatment with EVT901 reduced neuronal death in the hippocampus and thalamus, reduced long-term cognitive deficits, and reduced the occurrence of post-traumatic seizure activity. Together, these studies provide a new reagent for altering p75 neurotrophin receptor actions after injury and suggest that EVT901 may be useful in treatment of central nervous system trauma and other neurological disorders where p75 neurotrophin receptor signalling is affected.
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spelling pubmed-48927542016-06-07 A novel inhibitor of p75-neurotrophin receptor improves functional outcomes in two models of traumatic brain injury Delbary-Gossart, Sandrine Lee, Sangmi Baroni, Marco Lamarche, Isabelle Arnone, Michele Canolle, Benoit Lin, Amity Sacramento, Jeffrey Salegio, Ernesto A. Castel, Marie-Noelle Delesque-Touchard, Nathalie Alam, Antoine Laboudie, Patricia Ferzaz, Badia Savi, Pierre Herbert, Jean-Marc Manley, Geoffrey T. Ferguson, Adam R. Bresnahan, Jacqueline C. Bono, Françoise Beattie, Michael S. Brain Original Articles The p75 neurotrophin receptor is important in multiple physiological actions including neuronal survival and neurite outgrowth during development, and after central nervous system injury. We have discovered a novel piperazine-derived compound, EVT901, which interferes with p75 neurotrophin receptor oligomerization through direct interaction with the first cysteine-rich domain of the extracellular region. Using ligand binding assays with cysteine-rich domains-fused p75 neurotrophin receptor, we confirmed that EVT901 interferes with oligomerization of full-length p75 neurotrophin receptor in a dose-dependent manner. Here we report that EVT901 reduces binding of pro-nerve growth factor to p75 neurotrophin receptor, blocks pro-nerve growth factor induced apoptosis in cells expressing p75 neurotrophin receptor, and enhances neurite outgrowth in vitro. Furthermore, we demonstrate that EVT901 abrogates p75 neurotrophin receptor signalling by other ligands, such as prion peptide and amyloid-β. To test the efficacy of EVT901 in vivo, we evaluated the outcome in two models of traumatic brain injury. We generated controlled cortical impacts in adult rats. Using unbiased stereological analysis, we found that EVT901 delivered intravenously daily for 1 week after injury, reduced lesion size, protected cortical neurons and oligodendrocytes, and had a positive effect on neurological function. After lateral fluid percussion injury in adult rats, oral treatment with EVT901 reduced neuronal death in the hippocampus and thalamus, reduced long-term cognitive deficits, and reduced the occurrence of post-traumatic seizure activity. Together, these studies provide a new reagent for altering p75 neurotrophin receptor actions after injury and suggest that EVT901 may be useful in treatment of central nervous system trauma and other neurological disorders where p75 neurotrophin receptor signalling is affected. Oxford University Press 2016-06 2016-04-14 /pmc/articles/PMC4892754/ /pubmed/27084575 http://dx.doi.org/10.1093/brain/aww074 Text en © The Author (2016). Published by Oxford University Press on behalf of the Guarantors of Brain. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Original Articles
Delbary-Gossart, Sandrine
Lee, Sangmi
Baroni, Marco
Lamarche, Isabelle
Arnone, Michele
Canolle, Benoit
Lin, Amity
Sacramento, Jeffrey
Salegio, Ernesto A.
Castel, Marie-Noelle
Delesque-Touchard, Nathalie
Alam, Antoine
Laboudie, Patricia
Ferzaz, Badia
Savi, Pierre
Herbert, Jean-Marc
Manley, Geoffrey T.
Ferguson, Adam R.
Bresnahan, Jacqueline C.
Bono, Françoise
Beattie, Michael S.
A novel inhibitor of p75-neurotrophin receptor improves functional outcomes in two models of traumatic brain injury
title A novel inhibitor of p75-neurotrophin receptor improves functional outcomes in two models of traumatic brain injury
title_full A novel inhibitor of p75-neurotrophin receptor improves functional outcomes in two models of traumatic brain injury
title_fullStr A novel inhibitor of p75-neurotrophin receptor improves functional outcomes in two models of traumatic brain injury
title_full_unstemmed A novel inhibitor of p75-neurotrophin receptor improves functional outcomes in two models of traumatic brain injury
title_short A novel inhibitor of p75-neurotrophin receptor improves functional outcomes in two models of traumatic brain injury
title_sort novel inhibitor of p75-neurotrophin receptor improves functional outcomes in two models of traumatic brain injury
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4892754/
https://www.ncbi.nlm.nih.gov/pubmed/27084575
http://dx.doi.org/10.1093/brain/aww074
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