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Separation and Identification of Resveratrol Butyrate Ester Complexes and Their Bioactivity in HepG2 Cell Models

Resveratrol butyrate ester (RBE) complexes have demonstrated higher antioxidant capacity and anti-fat accumulation activity in previous studies. In this study, silica gel, high-performance liquid chromatography, and 1H nuclear magnetic resonance were used for separation and identification of RBE com...

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Autores principales: Shih, Ming-Kuei, Tain, You-Lin, Cheng, Chiu-Min, Hsu, Chien-Ning, Chen, Yu-Wei, Huang, Hung-Tse, Chang, Chi-I, Hou, Chih-Yao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8703675/
https://www.ncbi.nlm.nih.gov/pubmed/34948341
http://dx.doi.org/10.3390/ijms222413539
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author Shih, Ming-Kuei
Tain, You-Lin
Cheng, Chiu-Min
Hsu, Chien-Ning
Chen, Yu-Wei
Huang, Hung-Tse
Chang, Chi-I
Hou, Chih-Yao
author_facet Shih, Ming-Kuei
Tain, You-Lin
Cheng, Chiu-Min
Hsu, Chien-Ning
Chen, Yu-Wei
Huang, Hung-Tse
Chang, Chi-I
Hou, Chih-Yao
author_sort Shih, Ming-Kuei
collection PubMed
description Resveratrol butyrate ester (RBE) complexes have demonstrated higher antioxidant capacity and anti-fat accumulation activity in previous studies. In this study, silica gel, high-performance liquid chromatography, and 1H nuclear magnetic resonance were used for separation and identification of RBE complex components. With the exception of resveratrol, five different structures of ester derivatives were separated from silica gel: 3,4′-di-O-butanoylresveratrol (ED2, 18.8%), 3-O-butanoylresveratrol (ED4, 35.7%), 4′-O-butanoylresveratrol (ED5, 4.4%), 3,5,4′-tri-O-butanoylresveratrol (ED6, 1.5%), and 3,5-di-O-butanoylresveratrol (ED7, 0.7%). Among the ester derivatives obtained, ED2 and ED4 were the main ester derivatives in the RBE complex. Thus, the cellular antioxidant activities of the RBE mixture, ED2, and ED4 were evaluated. Results showed that the antioxidant capacity of ED2 and ED4 was higher than that of the RBE mixture, demonstrating that the number and position of butyrate esterification sites are related to cell survival rate and antioxidant capacity. This study is the first to report the successful isolation, structural identification, and cellular biological antioxidant activity of RBE complex derivatives, which are key characteristics for the potential practical application of RBE complexes.
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spelling pubmed-87036752021-12-25 Separation and Identification of Resveratrol Butyrate Ester Complexes and Their Bioactivity in HepG2 Cell Models Shih, Ming-Kuei Tain, You-Lin Cheng, Chiu-Min Hsu, Chien-Ning Chen, Yu-Wei Huang, Hung-Tse Chang, Chi-I Hou, Chih-Yao Int J Mol Sci Article Resveratrol butyrate ester (RBE) complexes have demonstrated higher antioxidant capacity and anti-fat accumulation activity in previous studies. In this study, silica gel, high-performance liquid chromatography, and 1H nuclear magnetic resonance were used for separation and identification of RBE complex components. With the exception of resveratrol, five different structures of ester derivatives were separated from silica gel: 3,4′-di-O-butanoylresveratrol (ED2, 18.8%), 3-O-butanoylresveratrol (ED4, 35.7%), 4′-O-butanoylresveratrol (ED5, 4.4%), 3,5,4′-tri-O-butanoylresveratrol (ED6, 1.5%), and 3,5-di-O-butanoylresveratrol (ED7, 0.7%). Among the ester derivatives obtained, ED2 and ED4 were the main ester derivatives in the RBE complex. Thus, the cellular antioxidant activities of the RBE mixture, ED2, and ED4 were evaluated. Results showed that the antioxidant capacity of ED2 and ED4 was higher than that of the RBE mixture, demonstrating that the number and position of butyrate esterification sites are related to cell survival rate and antioxidant capacity. This study is the first to report the successful isolation, structural identification, and cellular biological antioxidant activity of RBE complex derivatives, which are key characteristics for the potential practical application of RBE complexes. MDPI 2021-12-17 /pmc/articles/PMC8703675/ /pubmed/34948341 http://dx.doi.org/10.3390/ijms222413539 Text en © 2021 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
Shih, Ming-Kuei
Tain, You-Lin
Cheng, Chiu-Min
Hsu, Chien-Ning
Chen, Yu-Wei
Huang, Hung-Tse
Chang, Chi-I
Hou, Chih-Yao
Separation and Identification of Resveratrol Butyrate Ester Complexes and Their Bioactivity in HepG2 Cell Models
title Separation and Identification of Resveratrol Butyrate Ester Complexes and Their Bioactivity in HepG2 Cell Models
title_full Separation and Identification of Resveratrol Butyrate Ester Complexes and Their Bioactivity in HepG2 Cell Models
title_fullStr Separation and Identification of Resveratrol Butyrate Ester Complexes and Their Bioactivity in HepG2 Cell Models
title_full_unstemmed Separation and Identification of Resveratrol Butyrate Ester Complexes and Their Bioactivity in HepG2 Cell Models
title_short Separation and Identification of Resveratrol Butyrate Ester Complexes and Their Bioactivity in HepG2 Cell Models
title_sort separation and identification of resveratrol butyrate ester complexes and their bioactivity in hepg2 cell models
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8703675/
https://www.ncbi.nlm.nih.gov/pubmed/34948341
http://dx.doi.org/10.3390/ijms222413539
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