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Histamine Is an Inducer of the Heat Shock Response in SOD1-G93A Models of ALS

(1) Background: Amyotrophic lateral sclerosis (ALS) is a multifactorial non-cell autonomous disease where activation of microglia and astrocytes largely contributes to motor neurons death. Heat shock proteins have been demonstrated to promote neuronal survival and exert a strong anti-inflammatory ac...

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Autores principales: Apolloni, Savina, Caputi, Francesca, Pignataro, Annabella, Amadio, Susanna, Fabbrizio, Paola, Ammassari-Teule, Martine, Volonté, Cinzia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6696457/
https://www.ncbi.nlm.nih.gov/pubmed/31382568
http://dx.doi.org/10.3390/ijms20153793
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author Apolloni, Savina
Caputi, Francesca
Pignataro, Annabella
Amadio, Susanna
Fabbrizio, Paola
Ammassari-Teule, Martine
Volonté, Cinzia
author_facet Apolloni, Savina
Caputi, Francesca
Pignataro, Annabella
Amadio, Susanna
Fabbrizio, Paola
Ammassari-Teule, Martine
Volonté, Cinzia
author_sort Apolloni, Savina
collection PubMed
description (1) Background: Amyotrophic lateral sclerosis (ALS) is a multifactorial non-cell autonomous disease where activation of microglia and astrocytes largely contributes to motor neurons death. Heat shock proteins have been demonstrated to promote neuronal survival and exert a strong anti-inflammatory action in glia. Having previously shown that the pharmacological increase of the histamine content in the central nervous system (CNS) of SOD1-G93A mice decreases neuroinflammation, reduces motor neuron death, and increases mice life span, here we examined whether this effect could be mediated by an enhancement of the heat shock response. (2) Methods: Heat shock protein expression was analyzed in vitro and in vivo. Histamine was provided to primary microglia and NSC-34 motor neurons expressing the SOD1-G93A mutation. The brain permeable histamine precursor histidine was chronically administered to symptomatic SOD1-G93A mice. Spine density was measured by Golgi-staining in motor cortex of histidine-treated SOD1-G93A mice. (3) Results: We demonstrate that histamine activates the heat shock response in cultured SOD1-G93A microglia and motor neurons. In SOD1-G93A mice, histidine augments the protein content of GRP78 and Hsp70 in spinal cord and cortex, where the treatment also rescues type I motor neuron dendritic spine loss. (4) Conclusion: Besides the established histaminergic neuroprotective and anti-inflammatory effects, the induction of the heat shock response in the SOD1-G93A model by histamine confirms the importance of this pathway in the search for successful therapeutic solutions to treat ALS.
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spelling pubmed-66964572019-09-05 Histamine Is an Inducer of the Heat Shock Response in SOD1-G93A Models of ALS Apolloni, Savina Caputi, Francesca Pignataro, Annabella Amadio, Susanna Fabbrizio, Paola Ammassari-Teule, Martine Volonté, Cinzia Int J Mol Sci Article (1) Background: Amyotrophic lateral sclerosis (ALS) is a multifactorial non-cell autonomous disease where activation of microglia and astrocytes largely contributes to motor neurons death. Heat shock proteins have been demonstrated to promote neuronal survival and exert a strong anti-inflammatory action in glia. Having previously shown that the pharmacological increase of the histamine content in the central nervous system (CNS) of SOD1-G93A mice decreases neuroinflammation, reduces motor neuron death, and increases mice life span, here we examined whether this effect could be mediated by an enhancement of the heat shock response. (2) Methods: Heat shock protein expression was analyzed in vitro and in vivo. Histamine was provided to primary microglia and NSC-34 motor neurons expressing the SOD1-G93A mutation. The brain permeable histamine precursor histidine was chronically administered to symptomatic SOD1-G93A mice. Spine density was measured by Golgi-staining in motor cortex of histidine-treated SOD1-G93A mice. (3) Results: We demonstrate that histamine activates the heat shock response in cultured SOD1-G93A microglia and motor neurons. In SOD1-G93A mice, histidine augments the protein content of GRP78 and Hsp70 in spinal cord and cortex, where the treatment also rescues type I motor neuron dendritic spine loss. (4) Conclusion: Besides the established histaminergic neuroprotective and anti-inflammatory effects, the induction of the heat shock response in the SOD1-G93A model by histamine confirms the importance of this pathway in the search for successful therapeutic solutions to treat ALS. MDPI 2019-08-03 /pmc/articles/PMC6696457/ /pubmed/31382568 http://dx.doi.org/10.3390/ijms20153793 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Apolloni, Savina
Caputi, Francesca
Pignataro, Annabella
Amadio, Susanna
Fabbrizio, Paola
Ammassari-Teule, Martine
Volonté, Cinzia
Histamine Is an Inducer of the Heat Shock Response in SOD1-G93A Models of ALS
title Histamine Is an Inducer of the Heat Shock Response in SOD1-G93A Models of ALS
title_full Histamine Is an Inducer of the Heat Shock Response in SOD1-G93A Models of ALS
title_fullStr Histamine Is an Inducer of the Heat Shock Response in SOD1-G93A Models of ALS
title_full_unstemmed Histamine Is an Inducer of the Heat Shock Response in SOD1-G93A Models of ALS
title_short Histamine Is an Inducer of the Heat Shock Response in SOD1-G93A Models of ALS
title_sort histamine is an inducer of the heat shock response in sod1-g93a models of als
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6696457/
https://www.ncbi.nlm.nih.gov/pubmed/31382568
http://dx.doi.org/10.3390/ijms20153793
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