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Differential Modulation of NF-κB in Neurons and Astrocytes Underlies Neuroprotection and Antigliosis Activity of Natural Antioxidant Molecules

Neuroinflammation, a hallmark of chronic neurodegenerative disorders, is characterized by sustained glial activation and the generation of an inflammatory loop, through the release of cytokines and other neurotoxic mediators that cause oxidative stress and limit functional repair of brain parenchyma...

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Autores principales: Martorana, Francesca, Foti, Maria, Virtuoso, Assunta, Gaglio, Daniela, Aprea, Federica, Latronico, Tiziana, Rossano, Rocco, Riccio, Paolo, Papa, Michele, Alberghina, Lilia, Colangelo, Anna Maria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6710787/
https://www.ncbi.nlm.nih.gov/pubmed/31485299
http://dx.doi.org/10.1155/2019/8056904
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author Martorana, Francesca
Foti, Maria
Virtuoso, Assunta
Gaglio, Daniela
Aprea, Federica
Latronico, Tiziana
Rossano, Rocco
Riccio, Paolo
Papa, Michele
Alberghina, Lilia
Colangelo, Anna Maria
author_facet Martorana, Francesca
Foti, Maria
Virtuoso, Assunta
Gaglio, Daniela
Aprea, Federica
Latronico, Tiziana
Rossano, Rocco
Riccio, Paolo
Papa, Michele
Alberghina, Lilia
Colangelo, Anna Maria
author_sort Martorana, Francesca
collection PubMed
description Neuroinflammation, a hallmark of chronic neurodegenerative disorders, is characterized by sustained glial activation and the generation of an inflammatory loop, through the release of cytokines and other neurotoxic mediators that cause oxidative stress and limit functional repair of brain parenchyma. Dietary antioxidants may protect against neurodegenerative diseases by counteracting chronic neuroinflammation and reducing oxidative stress. Here, we describe the effects of a number of natural antioxidants (polyphenols, carotenoids, and thiolic molecules) in rescuing astrocytic function and neuronal viability following glial activation by reducing astrocyte proliferation and restoring astrocytic and neuronal survival and basal levels of reactive oxygen species (ROS). All antioxidant molecules are also effective under conditions of oxidative stress and glutamate toxicity, two maladaptive components of neuroinflammatory processes. Moreover, it is remarkable that their antioxidant and anti-inflammatory activity occurs through differential modulation of NF-κB binding activity in neurons and astrocytes. In fact, we show that inflammatory stimuli promote a significant induction of NF-κB binding activity in astrocytes and its concomitant reduction in neurons. These changes are prevented in astrocytes and neurons pretreated with the antioxidant molecules, suggesting that NF-κB plays a key role in the modulation of survival and anti-inflammatory responses. Finally, we newly demonstrate that effective antigliosis and neuroprotective activity is achieved with a defined cocktail of four natural antioxidants at very low concentrations, suggesting a promising strategy to reduce inflammatory and oxidative damage in neurodegenerative diseases with limited side effects.
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spelling pubmed-67107872019-09-04 Differential Modulation of NF-κB in Neurons and Astrocytes Underlies Neuroprotection and Antigliosis Activity of Natural Antioxidant Molecules Martorana, Francesca Foti, Maria Virtuoso, Assunta Gaglio, Daniela Aprea, Federica Latronico, Tiziana Rossano, Rocco Riccio, Paolo Papa, Michele Alberghina, Lilia Colangelo, Anna Maria Oxid Med Cell Longev Research Article Neuroinflammation, a hallmark of chronic neurodegenerative disorders, is characterized by sustained glial activation and the generation of an inflammatory loop, through the release of cytokines and other neurotoxic mediators that cause oxidative stress and limit functional repair of brain parenchyma. Dietary antioxidants may protect against neurodegenerative diseases by counteracting chronic neuroinflammation and reducing oxidative stress. Here, we describe the effects of a number of natural antioxidants (polyphenols, carotenoids, and thiolic molecules) in rescuing astrocytic function and neuronal viability following glial activation by reducing astrocyte proliferation and restoring astrocytic and neuronal survival and basal levels of reactive oxygen species (ROS). All antioxidant molecules are also effective under conditions of oxidative stress and glutamate toxicity, two maladaptive components of neuroinflammatory processes. Moreover, it is remarkable that their antioxidant and anti-inflammatory activity occurs through differential modulation of NF-κB binding activity in neurons and astrocytes. In fact, we show that inflammatory stimuli promote a significant induction of NF-κB binding activity in astrocytes and its concomitant reduction in neurons. These changes are prevented in astrocytes and neurons pretreated with the antioxidant molecules, suggesting that NF-κB plays a key role in the modulation of survival and anti-inflammatory responses. Finally, we newly demonstrate that effective antigliosis and neuroprotective activity is achieved with a defined cocktail of four natural antioxidants at very low concentrations, suggesting a promising strategy to reduce inflammatory and oxidative damage in neurodegenerative diseases with limited side effects. Hindawi 2019-08-14 /pmc/articles/PMC6710787/ /pubmed/31485299 http://dx.doi.org/10.1155/2019/8056904 Text en Copyright © 2019 Francesca Martorana et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Martorana, Francesca
Foti, Maria
Virtuoso, Assunta
Gaglio, Daniela
Aprea, Federica
Latronico, Tiziana
Rossano, Rocco
Riccio, Paolo
Papa, Michele
Alberghina, Lilia
Colangelo, Anna Maria
Differential Modulation of NF-κB in Neurons and Astrocytes Underlies Neuroprotection and Antigliosis Activity of Natural Antioxidant Molecules
title Differential Modulation of NF-κB in Neurons and Astrocytes Underlies Neuroprotection and Antigliosis Activity of Natural Antioxidant Molecules
title_full Differential Modulation of NF-κB in Neurons and Astrocytes Underlies Neuroprotection and Antigliosis Activity of Natural Antioxidant Molecules
title_fullStr Differential Modulation of NF-κB in Neurons and Astrocytes Underlies Neuroprotection and Antigliosis Activity of Natural Antioxidant Molecules
title_full_unstemmed Differential Modulation of NF-κB in Neurons and Astrocytes Underlies Neuroprotection and Antigliosis Activity of Natural Antioxidant Molecules
title_short Differential Modulation of NF-κB in Neurons and Astrocytes Underlies Neuroprotection and Antigliosis Activity of Natural Antioxidant Molecules
title_sort differential modulation of nf-κb in neurons and astrocytes underlies neuroprotection and antigliosis activity of natural antioxidant molecules
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6710787/
https://www.ncbi.nlm.nih.gov/pubmed/31485299
http://dx.doi.org/10.1155/2019/8056904
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