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In Vitro Antioxidant and Anti-Glycation Activity of Resveratrol and Its Novel Triester with Trolox

Resveratrol (RSV) is well known for its many beneficial activities, but its unfavorable physicochemical properties impair its effectiveness after systemic and topical administration; thus, several strategies have been investigated to improve RSV efficacy. With this aim, in this work, we synthesized...

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Autores principales: Intagliata, Sebastiano, Spadaro, Angelo, Lorenti, Miriam, Panico, Annamaria, Siciliano, Edy A., Barbagallo, Sabrina, Macaluso, Benito, Kamble, Shyam H., Modica, Maria N., Montenegro, Lucia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7823449/
https://www.ncbi.nlm.nih.gov/pubmed/33374280
http://dx.doi.org/10.3390/antiox10010012
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author Intagliata, Sebastiano
Spadaro, Angelo
Lorenti, Miriam
Panico, Annamaria
Siciliano, Edy A.
Barbagallo, Sabrina
Macaluso, Benito
Kamble, Shyam H.
Modica, Maria N.
Montenegro, Lucia
author_facet Intagliata, Sebastiano
Spadaro, Angelo
Lorenti, Miriam
Panico, Annamaria
Siciliano, Edy A.
Barbagallo, Sabrina
Macaluso, Benito
Kamble, Shyam H.
Modica, Maria N.
Montenegro, Lucia
author_sort Intagliata, Sebastiano
collection PubMed
description Resveratrol (RSV) is well known for its many beneficial activities, but its unfavorable physicochemical properties impair its effectiveness after systemic and topical administration; thus, several strategies have been investigated to improve RSV efficacy. With this aim, in this work, we synthesized a novel RSV triester with trolox, an analogue of vitamin E with strong antioxidant activity. The new RSV derivative (RSVTR) was assayed in vitro to evaluate its antioxidant and anti-glycation activity compared to RSV. RSVTR chemical stability was assessed at pH 2.0, 6.8, and 7.2 and different storage temperatures (5 °C, 22 °C, and 37 °C). An influence of pH stronger than that of temperature on RSVTR half-life values was pointed out, and RSVTR greatest stability was observed at pH 7.2 and 5 °C. RSVTR showed a lower antioxidant ability compared to RSV (determined by the oxygen radical absorbance capacity assay) while its anti-glycation activity (evaluated using the Maillard reaction) was significantly greater than that of RSV. The improved ability to inhibit the glycation process was attributed to a better interaction of RSVTR with albumin owing to its increased topological polar surface area value and H-bond acceptor number compared to RSV. Therefore, RSVTR could be regarded as a promising anti-glycation agent worthy of further investigations.
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spelling pubmed-78234492021-01-24 In Vitro Antioxidant and Anti-Glycation Activity of Resveratrol and Its Novel Triester with Trolox Intagliata, Sebastiano Spadaro, Angelo Lorenti, Miriam Panico, Annamaria Siciliano, Edy A. Barbagallo, Sabrina Macaluso, Benito Kamble, Shyam H. Modica, Maria N. Montenegro, Lucia Antioxidants (Basel) Article Resveratrol (RSV) is well known for its many beneficial activities, but its unfavorable physicochemical properties impair its effectiveness after systemic and topical administration; thus, several strategies have been investigated to improve RSV efficacy. With this aim, in this work, we synthesized a novel RSV triester with trolox, an analogue of vitamin E with strong antioxidant activity. The new RSV derivative (RSVTR) was assayed in vitro to evaluate its antioxidant and anti-glycation activity compared to RSV. RSVTR chemical stability was assessed at pH 2.0, 6.8, and 7.2 and different storage temperatures (5 °C, 22 °C, and 37 °C). An influence of pH stronger than that of temperature on RSVTR half-life values was pointed out, and RSVTR greatest stability was observed at pH 7.2 and 5 °C. RSVTR showed a lower antioxidant ability compared to RSV (determined by the oxygen radical absorbance capacity assay) while its anti-glycation activity (evaluated using the Maillard reaction) was significantly greater than that of RSV. The improved ability to inhibit the glycation process was attributed to a better interaction of RSVTR with albumin owing to its increased topological polar surface area value and H-bond acceptor number compared to RSV. Therefore, RSVTR could be regarded as a promising anti-glycation agent worthy of further investigations. MDPI 2020-12-24 /pmc/articles/PMC7823449/ /pubmed/33374280 http://dx.doi.org/10.3390/antiox10010012 Text en © 2020 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
Intagliata, Sebastiano
Spadaro, Angelo
Lorenti, Miriam
Panico, Annamaria
Siciliano, Edy A.
Barbagallo, Sabrina
Macaluso, Benito
Kamble, Shyam H.
Modica, Maria N.
Montenegro, Lucia
In Vitro Antioxidant and Anti-Glycation Activity of Resveratrol and Its Novel Triester with Trolox
title In Vitro Antioxidant and Anti-Glycation Activity of Resveratrol and Its Novel Triester with Trolox
title_full In Vitro Antioxidant and Anti-Glycation Activity of Resveratrol and Its Novel Triester with Trolox
title_fullStr In Vitro Antioxidant and Anti-Glycation Activity of Resveratrol and Its Novel Triester with Trolox
title_full_unstemmed In Vitro Antioxidant and Anti-Glycation Activity of Resveratrol and Its Novel Triester with Trolox
title_short In Vitro Antioxidant and Anti-Glycation Activity of Resveratrol and Its Novel Triester with Trolox
title_sort in vitro antioxidant and anti-glycation activity of resveratrol and its novel triester with trolox
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7823449/
https://www.ncbi.nlm.nih.gov/pubmed/33374280
http://dx.doi.org/10.3390/antiox10010012
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