Cargando…

A Novel Resveratrol-Induced Pathway Increases Neuron-Derived Cell Resilience against Oxidative Stress

A promising therapeutic strategy to delay and/or prevent the onset of neurodegenerative diseases (NDs) could be to restore neuroprotective pathways physiologically triggered by neurons against stress injury. Recently, we identified the accumulation of neuroglobin (NGB) in neuronal cells, induced by...

Descripción completa

Detalles Bibliográficos
Autores principales: Cracco, Patrizio, Montalesi, Emiliano, Parente, Martina, Cipolletti, Manuela, Iucci, Giovanna, Battocchio, Chiara, Venditti, Iole, Fiocchetti, Marco, Marino, Maria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10058936/
https://www.ncbi.nlm.nih.gov/pubmed/36982977
http://dx.doi.org/10.3390/ijms24065903
_version_ 1785016754725978112
author Cracco, Patrizio
Montalesi, Emiliano
Parente, Martina
Cipolletti, Manuela
Iucci, Giovanna
Battocchio, Chiara
Venditti, Iole
Fiocchetti, Marco
Marino, Maria
author_facet Cracco, Patrizio
Montalesi, Emiliano
Parente, Martina
Cipolletti, Manuela
Iucci, Giovanna
Battocchio, Chiara
Venditti, Iole
Fiocchetti, Marco
Marino, Maria
author_sort Cracco, Patrizio
collection PubMed
description A promising therapeutic strategy to delay and/or prevent the onset of neurodegenerative diseases (NDs) could be to restore neuroprotective pathways physiologically triggered by neurons against stress injury. Recently, we identified the accumulation of neuroglobin (NGB) in neuronal cells, induced by the 17β-estradiol (E2)/estrogen receptor β (ERβ) axis, as a protective response that increases mitochondria functionality and prevents the activation of apoptosis, increasing neuron resilience against oxidative stress. Here, we would verify if resveratrol (Res), an ERβ ligand, could reactivate NGB accumulation and its protective effects against oxidative stress in neuronal-derived cells (i.e., SH-SY5Y cells). Our results demonstrate that ERβ/NGB is a novel pathway triggered by low Res concentrations that lead to rapid and persistent NGB accumulation in the cytosol and in mitochondria, where the protein contributes to reducing the apoptotic death induced by hydrogen peroxide (H(2)O(2)). Intriguingly, Res conjugation with gold nanoparticles increases the stilbene efficacy in enhancing neuron resilience against oxidative stress. As a whole, ERβ/NGB axis regulation is a novel mechanism triggered by low concentration of Res to regulate, specifically, the neuronal cell resilience against oxidative stress reducing the triggering of the apoptotic cascade.
format Online
Article
Text
id pubmed-10058936
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-100589362023-03-30 A Novel Resveratrol-Induced Pathway Increases Neuron-Derived Cell Resilience against Oxidative Stress Cracco, Patrizio Montalesi, Emiliano Parente, Martina Cipolletti, Manuela Iucci, Giovanna Battocchio, Chiara Venditti, Iole Fiocchetti, Marco Marino, Maria Int J Mol Sci Article A promising therapeutic strategy to delay and/or prevent the onset of neurodegenerative diseases (NDs) could be to restore neuroprotective pathways physiologically triggered by neurons against stress injury. Recently, we identified the accumulation of neuroglobin (NGB) in neuronal cells, induced by the 17β-estradiol (E2)/estrogen receptor β (ERβ) axis, as a protective response that increases mitochondria functionality and prevents the activation of apoptosis, increasing neuron resilience against oxidative stress. Here, we would verify if resveratrol (Res), an ERβ ligand, could reactivate NGB accumulation and its protective effects against oxidative stress in neuronal-derived cells (i.e., SH-SY5Y cells). Our results demonstrate that ERβ/NGB is a novel pathway triggered by low Res concentrations that lead to rapid and persistent NGB accumulation in the cytosol and in mitochondria, where the protein contributes to reducing the apoptotic death induced by hydrogen peroxide (H(2)O(2)). Intriguingly, Res conjugation with gold nanoparticles increases the stilbene efficacy in enhancing neuron resilience against oxidative stress. As a whole, ERβ/NGB axis regulation is a novel mechanism triggered by low concentration of Res to regulate, specifically, the neuronal cell resilience against oxidative stress reducing the triggering of the apoptotic cascade. MDPI 2023-03-21 /pmc/articles/PMC10058936/ /pubmed/36982977 http://dx.doi.org/10.3390/ijms24065903 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cracco, Patrizio
Montalesi, Emiliano
Parente, Martina
Cipolletti, Manuela
Iucci, Giovanna
Battocchio, Chiara
Venditti, Iole
Fiocchetti, Marco
Marino, Maria
A Novel Resveratrol-Induced Pathway Increases Neuron-Derived Cell Resilience against Oxidative Stress
title A Novel Resveratrol-Induced Pathway Increases Neuron-Derived Cell Resilience against Oxidative Stress
title_full A Novel Resveratrol-Induced Pathway Increases Neuron-Derived Cell Resilience against Oxidative Stress
title_fullStr A Novel Resveratrol-Induced Pathway Increases Neuron-Derived Cell Resilience against Oxidative Stress
title_full_unstemmed A Novel Resveratrol-Induced Pathway Increases Neuron-Derived Cell Resilience against Oxidative Stress
title_short A Novel Resveratrol-Induced Pathway Increases Neuron-Derived Cell Resilience against Oxidative Stress
title_sort novel resveratrol-induced pathway increases neuron-derived cell resilience against oxidative stress
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10058936/
https://www.ncbi.nlm.nih.gov/pubmed/36982977
http://dx.doi.org/10.3390/ijms24065903
work_keys_str_mv AT craccopatrizio anovelresveratrolinducedpathwayincreasesneuronderivedcellresilienceagainstoxidativestress
AT montalesiemiliano anovelresveratrolinducedpathwayincreasesneuronderivedcellresilienceagainstoxidativestress
AT parentemartina anovelresveratrolinducedpathwayincreasesneuronderivedcellresilienceagainstoxidativestress
AT cipollettimanuela anovelresveratrolinducedpathwayincreasesneuronderivedcellresilienceagainstoxidativestress
AT iuccigiovanna anovelresveratrolinducedpathwayincreasesneuronderivedcellresilienceagainstoxidativestress
AT battocchiochiara anovelresveratrolinducedpathwayincreasesneuronderivedcellresilienceagainstoxidativestress
AT vendittiiole anovelresveratrolinducedpathwayincreasesneuronderivedcellresilienceagainstoxidativestress
AT fiocchettimarco anovelresveratrolinducedpathwayincreasesneuronderivedcellresilienceagainstoxidativestress
AT marinomaria anovelresveratrolinducedpathwayincreasesneuronderivedcellresilienceagainstoxidativestress
AT craccopatrizio novelresveratrolinducedpathwayincreasesneuronderivedcellresilienceagainstoxidativestress
AT montalesiemiliano novelresveratrolinducedpathwayincreasesneuronderivedcellresilienceagainstoxidativestress
AT parentemartina novelresveratrolinducedpathwayincreasesneuronderivedcellresilienceagainstoxidativestress
AT cipollettimanuela novelresveratrolinducedpathwayincreasesneuronderivedcellresilienceagainstoxidativestress
AT iuccigiovanna novelresveratrolinducedpathwayincreasesneuronderivedcellresilienceagainstoxidativestress
AT battocchiochiara novelresveratrolinducedpathwayincreasesneuronderivedcellresilienceagainstoxidativestress
AT vendittiiole novelresveratrolinducedpathwayincreasesneuronderivedcellresilienceagainstoxidativestress
AT fiocchettimarco novelresveratrolinducedpathwayincreasesneuronderivedcellresilienceagainstoxidativestress
AT marinomaria novelresveratrolinducedpathwayincreasesneuronderivedcellresilienceagainstoxidativestress