Cargando…

Lipoic/Capsaicin-Related Amides: Synthesis and Biological Characterization of New TRPV1 Agonists Endowed with Protective Properties against Oxidative Stress

α-Lipoic acid is a sulfur-containing nutrient endowed with pleiotropic actions and a safe biological profile selected to replace the unsaturated alkyl acid of capsaicin with the aim of obtaining lipoic amides potentially active as a TRPV1 ligand and with significant antioxidant properties. Thus, nin...

Descripción completa

Detalles Bibliográficos
Autores principales: Brizzi, Antonella, Maramai, Samuele, Aiello, Francesca, Baratto, Maria Camilla, Corelli, Federico, Mugnaini, Claudia, Paolino, Marco, Scorzelli, Francesco, Aldinucci, Carlo, De Petrocellis, Luciano, Signorini, Cinzia, Pessina, Federica
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9658705/
https://www.ncbi.nlm.nih.gov/pubmed/36362364
http://dx.doi.org/10.3390/ijms232113580
_version_ 1784830017303216128
author Brizzi, Antonella
Maramai, Samuele
Aiello, Francesca
Baratto, Maria Camilla
Corelli, Federico
Mugnaini, Claudia
Paolino, Marco
Scorzelli, Francesco
Aldinucci, Carlo
De Petrocellis, Luciano
Signorini, Cinzia
Pessina, Federica
author_facet Brizzi, Antonella
Maramai, Samuele
Aiello, Francesca
Baratto, Maria Camilla
Corelli, Federico
Mugnaini, Claudia
Paolino, Marco
Scorzelli, Francesco
Aldinucci, Carlo
De Petrocellis, Luciano
Signorini, Cinzia
Pessina, Federica
author_sort Brizzi, Antonella
collection PubMed
description α-Lipoic acid is a sulfur-containing nutrient endowed with pleiotropic actions and a safe biological profile selected to replace the unsaturated alkyl acid of capsaicin with the aim of obtaining lipoic amides potentially active as a TRPV1 ligand and with significant antioxidant properties. Thus, nine compounds were obtained in good yields following a simple synthetic procedure and tested for their functional TRPV1 activity and radical-scavenger activity. The safe biological profile together with the protective effect against hypoxia damage as well as the in vitro antioxidant properties were also evaluated. Although less potent than capsaicin, almost all lipoic amides were found to be TRPV1 agonists and, specifically, compound 4, the lipoic analogue of capsaicin, proved to be the best ligand in terms of efficacy and potency. EPR experiments and in vitro biological assays suggested the potential protective role against oxidative stress of the tested compounds and their safe biological profile. Compounds 4, 5 and 9 significantly ameliorated the mitochondrial membrane potential caused by hypoxia condition and decreased F2-isoprostanes, known markers of oxidative stress. Thus, the experimental results encourage further investigation of the therapeutic potential of these lipoic amides.
format Online
Article
Text
id pubmed-9658705
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-96587052022-11-15 Lipoic/Capsaicin-Related Amides: Synthesis and Biological Characterization of New TRPV1 Agonists Endowed with Protective Properties against Oxidative Stress Brizzi, Antonella Maramai, Samuele Aiello, Francesca Baratto, Maria Camilla Corelli, Federico Mugnaini, Claudia Paolino, Marco Scorzelli, Francesco Aldinucci, Carlo De Petrocellis, Luciano Signorini, Cinzia Pessina, Federica Int J Mol Sci Article α-Lipoic acid is a sulfur-containing nutrient endowed with pleiotropic actions and a safe biological profile selected to replace the unsaturated alkyl acid of capsaicin with the aim of obtaining lipoic amides potentially active as a TRPV1 ligand and with significant antioxidant properties. Thus, nine compounds were obtained in good yields following a simple synthetic procedure and tested for their functional TRPV1 activity and radical-scavenger activity. The safe biological profile together with the protective effect against hypoxia damage as well as the in vitro antioxidant properties were also evaluated. Although less potent than capsaicin, almost all lipoic amides were found to be TRPV1 agonists and, specifically, compound 4, the lipoic analogue of capsaicin, proved to be the best ligand in terms of efficacy and potency. EPR experiments and in vitro biological assays suggested the potential protective role against oxidative stress of the tested compounds and their safe biological profile. Compounds 4, 5 and 9 significantly ameliorated the mitochondrial membrane potential caused by hypoxia condition and decreased F2-isoprostanes, known markers of oxidative stress. Thus, the experimental results encourage further investigation of the therapeutic potential of these lipoic amides. MDPI 2022-11-05 /pmc/articles/PMC9658705/ /pubmed/36362364 http://dx.doi.org/10.3390/ijms232113580 Text en © 2022 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
Brizzi, Antonella
Maramai, Samuele
Aiello, Francesca
Baratto, Maria Camilla
Corelli, Federico
Mugnaini, Claudia
Paolino, Marco
Scorzelli, Francesco
Aldinucci, Carlo
De Petrocellis, Luciano
Signorini, Cinzia
Pessina, Federica
Lipoic/Capsaicin-Related Amides: Synthesis and Biological Characterization of New TRPV1 Agonists Endowed with Protective Properties against Oxidative Stress
title Lipoic/Capsaicin-Related Amides: Synthesis and Biological Characterization of New TRPV1 Agonists Endowed with Protective Properties against Oxidative Stress
title_full Lipoic/Capsaicin-Related Amides: Synthesis and Biological Characterization of New TRPV1 Agonists Endowed with Protective Properties against Oxidative Stress
title_fullStr Lipoic/Capsaicin-Related Amides: Synthesis and Biological Characterization of New TRPV1 Agonists Endowed with Protective Properties against Oxidative Stress
title_full_unstemmed Lipoic/Capsaicin-Related Amides: Synthesis and Biological Characterization of New TRPV1 Agonists Endowed with Protective Properties against Oxidative Stress
title_short Lipoic/Capsaicin-Related Amides: Synthesis and Biological Characterization of New TRPV1 Agonists Endowed with Protective Properties against Oxidative Stress
title_sort lipoic/capsaicin-related amides: synthesis and biological characterization of new trpv1 agonists endowed with protective properties against oxidative stress
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9658705/
https://www.ncbi.nlm.nih.gov/pubmed/36362364
http://dx.doi.org/10.3390/ijms232113580
work_keys_str_mv AT brizziantonella lipoiccapsaicinrelatedamidessynthesisandbiologicalcharacterizationofnewtrpv1agonistsendowedwithprotectivepropertiesagainstoxidativestress
AT maramaisamuele lipoiccapsaicinrelatedamidessynthesisandbiologicalcharacterizationofnewtrpv1agonistsendowedwithprotectivepropertiesagainstoxidativestress
AT aiellofrancesca lipoiccapsaicinrelatedamidessynthesisandbiologicalcharacterizationofnewtrpv1agonistsendowedwithprotectivepropertiesagainstoxidativestress
AT barattomariacamilla lipoiccapsaicinrelatedamidessynthesisandbiologicalcharacterizationofnewtrpv1agonistsendowedwithprotectivepropertiesagainstoxidativestress
AT corellifederico lipoiccapsaicinrelatedamidessynthesisandbiologicalcharacterizationofnewtrpv1agonistsendowedwithprotectivepropertiesagainstoxidativestress
AT mugnainiclaudia lipoiccapsaicinrelatedamidessynthesisandbiologicalcharacterizationofnewtrpv1agonistsendowedwithprotectivepropertiesagainstoxidativestress
AT paolinomarco lipoiccapsaicinrelatedamidessynthesisandbiologicalcharacterizationofnewtrpv1agonistsendowedwithprotectivepropertiesagainstoxidativestress
AT scorzellifrancesco lipoiccapsaicinrelatedamidessynthesisandbiologicalcharacterizationofnewtrpv1agonistsendowedwithprotectivepropertiesagainstoxidativestress
AT aldinuccicarlo lipoiccapsaicinrelatedamidessynthesisandbiologicalcharacterizationofnewtrpv1agonistsendowedwithprotectivepropertiesagainstoxidativestress
AT depetrocellisluciano lipoiccapsaicinrelatedamidessynthesisandbiologicalcharacterizationofnewtrpv1agonistsendowedwithprotectivepropertiesagainstoxidativestress
AT signorinicinzia lipoiccapsaicinrelatedamidessynthesisandbiologicalcharacterizationofnewtrpv1agonistsendowedwithprotectivepropertiesagainstoxidativestress
AT pessinafederica lipoiccapsaicinrelatedamidessynthesisandbiologicalcharacterizationofnewtrpv1agonistsendowedwithprotectivepropertiesagainstoxidativestress