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Fine-Tuning the Biological Profile of Multitarget Mitochondriotropic Antioxidants for Neurodegenerative Diseases

Neurotransmitter depletion and mitochondrial dysfunction are among the multiple pathological events that lead to neurodegeneration. Following our previous studies related with the development of multitarget mitochondriotropic antioxidants, this study aims to evaluate whether the π-system extension o...

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Autores principales: Chavarria, Daniel, Da Silva, Ophelie, Benfeito, Sofia, Barreiro, Sandra, Garrido, Jorge, Cagide, Fernando, Soares, Pedro, Remião, Fernando, Brazzolotto, Xavier, Nachon, Florian, Oliveira, Paulo J., Dias, José, Borges, Fernanda
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7926627/
https://www.ncbi.nlm.nih.gov/pubmed/33672269
http://dx.doi.org/10.3390/antiox10020329
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author Chavarria, Daniel
Da Silva, Ophelie
Benfeito, Sofia
Barreiro, Sandra
Garrido, Jorge
Cagide, Fernando
Soares, Pedro
Remião, Fernando
Brazzolotto, Xavier
Nachon, Florian
Oliveira, Paulo J.
Dias, José
Borges, Fernanda
author_facet Chavarria, Daniel
Da Silva, Ophelie
Benfeito, Sofia
Barreiro, Sandra
Garrido, Jorge
Cagide, Fernando
Soares, Pedro
Remião, Fernando
Brazzolotto, Xavier
Nachon, Florian
Oliveira, Paulo J.
Dias, José
Borges, Fernanda
author_sort Chavarria, Daniel
collection PubMed
description Neurotransmitter depletion and mitochondrial dysfunction are among the multiple pathological events that lead to neurodegeneration. Following our previous studies related with the development of multitarget mitochondriotropic antioxidants, this study aims to evaluate whether the π-system extension on the chemical scaffolds of AntiOXCIN2 and AntiOXCIN3 affects their bioactivity and safety profiles. After the synthesis of four triphenylphosphonium (TPP(+)) conjugates (compounds 2–5), we evaluated their antioxidant properties and their effect on neurotransmitter-metabolizing enzymes. All compounds were potent equine butyrylcholinesterase (eqBChE) and moderate electric eel acetylcholinesterase (eeAChE) inhibitors, with catechols 4 and 5 presenting lower IC(50) values than AntiOXCIN2 and AntiOXCIN3, respectively. However, differences in the inhibition potency and selectivity of compounds 2–5 towards non-human and human cholinesterases (ChEs) were observed. Co-crystallization studies with compounds 2–5 in complex with human ChEs (hChEs) showed that these compounds exhibit different binging modes to hAChE and hBChE. Unlike AntiOXCINs, compounds 2–5 displayed moderate human monoamine oxidase (hMAO) inhibitory activity. Moreover, compounds 4 and 5 presented higher ORAC-FL indexes and lower oxidation potential values than the corresponding AntiOXCINs. Catechols 4 and 5 exhibited broader safety windows in differentiated neuroblastoma cells than benzodioxole derivatives 2 and 3. Compound 4 is highlighted as a safe mitochondria-targeted antioxidant with dual ChE/MAO inhibitory activity. Overall, this work is a contribution for the development of dual therapeutic agents addressing both mitochondrial oxidative stress and neurotransmitter depletion.
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spelling pubmed-79266272021-03-04 Fine-Tuning the Biological Profile of Multitarget Mitochondriotropic Antioxidants for Neurodegenerative Diseases Chavarria, Daniel Da Silva, Ophelie Benfeito, Sofia Barreiro, Sandra Garrido, Jorge Cagide, Fernando Soares, Pedro Remião, Fernando Brazzolotto, Xavier Nachon, Florian Oliveira, Paulo J. Dias, José Borges, Fernanda Antioxidants (Basel) Article Neurotransmitter depletion and mitochondrial dysfunction are among the multiple pathological events that lead to neurodegeneration. Following our previous studies related with the development of multitarget mitochondriotropic antioxidants, this study aims to evaluate whether the π-system extension on the chemical scaffolds of AntiOXCIN2 and AntiOXCIN3 affects their bioactivity and safety profiles. After the synthesis of four triphenylphosphonium (TPP(+)) conjugates (compounds 2–5), we evaluated their antioxidant properties and their effect on neurotransmitter-metabolizing enzymes. All compounds were potent equine butyrylcholinesterase (eqBChE) and moderate electric eel acetylcholinesterase (eeAChE) inhibitors, with catechols 4 and 5 presenting lower IC(50) values than AntiOXCIN2 and AntiOXCIN3, respectively. However, differences in the inhibition potency and selectivity of compounds 2–5 towards non-human and human cholinesterases (ChEs) were observed. Co-crystallization studies with compounds 2–5 in complex with human ChEs (hChEs) showed that these compounds exhibit different binging modes to hAChE and hBChE. Unlike AntiOXCINs, compounds 2–5 displayed moderate human monoamine oxidase (hMAO) inhibitory activity. Moreover, compounds 4 and 5 presented higher ORAC-FL indexes and lower oxidation potential values than the corresponding AntiOXCINs. Catechols 4 and 5 exhibited broader safety windows in differentiated neuroblastoma cells than benzodioxole derivatives 2 and 3. Compound 4 is highlighted as a safe mitochondria-targeted antioxidant with dual ChE/MAO inhibitory activity. Overall, this work is a contribution for the development of dual therapeutic agents addressing both mitochondrial oxidative stress and neurotransmitter depletion. MDPI 2021-02-23 /pmc/articles/PMC7926627/ /pubmed/33672269 http://dx.doi.org/10.3390/antiox10020329 Text en © 2021 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
Chavarria, Daniel
Da Silva, Ophelie
Benfeito, Sofia
Barreiro, Sandra
Garrido, Jorge
Cagide, Fernando
Soares, Pedro
Remião, Fernando
Brazzolotto, Xavier
Nachon, Florian
Oliveira, Paulo J.
Dias, José
Borges, Fernanda
Fine-Tuning the Biological Profile of Multitarget Mitochondriotropic Antioxidants for Neurodegenerative Diseases
title Fine-Tuning the Biological Profile of Multitarget Mitochondriotropic Antioxidants for Neurodegenerative Diseases
title_full Fine-Tuning the Biological Profile of Multitarget Mitochondriotropic Antioxidants for Neurodegenerative Diseases
title_fullStr Fine-Tuning the Biological Profile of Multitarget Mitochondriotropic Antioxidants for Neurodegenerative Diseases
title_full_unstemmed Fine-Tuning the Biological Profile of Multitarget Mitochondriotropic Antioxidants for Neurodegenerative Diseases
title_short Fine-Tuning the Biological Profile of Multitarget Mitochondriotropic Antioxidants for Neurodegenerative Diseases
title_sort fine-tuning the biological profile of multitarget mitochondriotropic antioxidants for neurodegenerative diseases
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7926627/
https://www.ncbi.nlm.nih.gov/pubmed/33672269
http://dx.doi.org/10.3390/antiox10020329
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