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Anti-Inflammatory Derivatives with Dual Mechanism of Action from the Metabolomic Screening of Poincianella pluviosa

Metabolomics approaches have become fundamental strategies for the analysis of complex mixtures, guiding the isolation of target compounds by focusing on unpublished or promising pharmacological properties. The discovery of novel anti-inflammatory agents is important due to several limitations regar...

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Autores principales: Domingos, Olívia da S., Alcântara, Bianca G. V., Santos, Mário F. C., Maiolini, Tatiane C. S., Dias, Danielle F., Baldim, João L., Lago, João Henrique G., Soares, Marisi G., Chagas-Paula, Daniela A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6930619/
https://www.ncbi.nlm.nih.gov/pubmed/31795429
http://dx.doi.org/10.3390/molecules24234375
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author Domingos, Olívia da S.
Alcântara, Bianca G. V.
Santos, Mário F. C.
Maiolini, Tatiane C. S.
Dias, Danielle F.
Baldim, João L.
Lago, João Henrique G.
Soares, Marisi G.
Chagas-Paula, Daniela A.
author_facet Domingos, Olívia da S.
Alcântara, Bianca G. V.
Santos, Mário F. C.
Maiolini, Tatiane C. S.
Dias, Danielle F.
Baldim, João L.
Lago, João Henrique G.
Soares, Marisi G.
Chagas-Paula, Daniela A.
author_sort Domingos, Olívia da S.
collection PubMed
description Metabolomics approaches have become fundamental strategies for the analysis of complex mixtures, guiding the isolation of target compounds by focusing on unpublished or promising pharmacological properties. The discovery of novel anti-inflammatory agents is important due to several limitations regarding their potency, efficacy, and adverse effects. Thus, novel anti-inflammatory candidates are essential, aiming to find agents with better mechanisms of action. In this context, extracts from Poincianella pluviosa var. peltophoroides demonstrated significant in vivo anti-inflammatory potential. Thus, metabolomics analysis based on UHPLC-UV-HRFTMS data was performed for the identification of biomarkers with anti-inflammatory properties. Metabolomics-guided chromatographic process led to the isolation of novel compounds 4‴-methoxycaesalpinioflavone and 7-methoxycaesalpinioflavone, as well as known derivatives rhuschalcone VI and caesalpinioflavone. Isolated compounds caused edema inhibition and neutrophil recruitment. Two of them showed better efficacy than reference drugs (indomethacin and dexamethasone). Results of in vivo experiments corroborated those obtained through metabolomics and statistical analyses guiding the isolation of substances of interest.
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spelling pubmed-69306192019-12-26 Anti-Inflammatory Derivatives with Dual Mechanism of Action from the Metabolomic Screening of Poincianella pluviosa Domingos, Olívia da S. Alcântara, Bianca G. V. Santos, Mário F. C. Maiolini, Tatiane C. S. Dias, Danielle F. Baldim, João L. Lago, João Henrique G. Soares, Marisi G. Chagas-Paula, Daniela A. Molecules Article Metabolomics approaches have become fundamental strategies for the analysis of complex mixtures, guiding the isolation of target compounds by focusing on unpublished or promising pharmacological properties. The discovery of novel anti-inflammatory agents is important due to several limitations regarding their potency, efficacy, and adverse effects. Thus, novel anti-inflammatory candidates are essential, aiming to find agents with better mechanisms of action. In this context, extracts from Poincianella pluviosa var. peltophoroides demonstrated significant in vivo anti-inflammatory potential. Thus, metabolomics analysis based on UHPLC-UV-HRFTMS data was performed for the identification of biomarkers with anti-inflammatory properties. Metabolomics-guided chromatographic process led to the isolation of novel compounds 4‴-methoxycaesalpinioflavone and 7-methoxycaesalpinioflavone, as well as known derivatives rhuschalcone VI and caesalpinioflavone. Isolated compounds caused edema inhibition and neutrophil recruitment. Two of them showed better efficacy than reference drugs (indomethacin and dexamethasone). Results of in vivo experiments corroborated those obtained through metabolomics and statistical analyses guiding the isolation of substances of interest. MDPI 2019-11-29 /pmc/articles/PMC6930619/ /pubmed/31795429 http://dx.doi.org/10.3390/molecules24234375 Text en © 2019 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
Domingos, Olívia da S.
Alcântara, Bianca G. V.
Santos, Mário F. C.
Maiolini, Tatiane C. S.
Dias, Danielle F.
Baldim, João L.
Lago, João Henrique G.
Soares, Marisi G.
Chagas-Paula, Daniela A.
Anti-Inflammatory Derivatives with Dual Mechanism of Action from the Metabolomic Screening of Poincianella pluviosa
title Anti-Inflammatory Derivatives with Dual Mechanism of Action from the Metabolomic Screening of Poincianella pluviosa
title_full Anti-Inflammatory Derivatives with Dual Mechanism of Action from the Metabolomic Screening of Poincianella pluviosa
title_fullStr Anti-Inflammatory Derivatives with Dual Mechanism of Action from the Metabolomic Screening of Poincianella pluviosa
title_full_unstemmed Anti-Inflammatory Derivatives with Dual Mechanism of Action from the Metabolomic Screening of Poincianella pluviosa
title_short Anti-Inflammatory Derivatives with Dual Mechanism of Action from the Metabolomic Screening of Poincianella pluviosa
title_sort anti-inflammatory derivatives with dual mechanism of action from the metabolomic screening of poincianella pluviosa
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6930619/
https://www.ncbi.nlm.nih.gov/pubmed/31795429
http://dx.doi.org/10.3390/molecules24234375
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