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Structural Design, Synthesis and Antioxidant, Antileishmania, Anti-Inflammatory and Anticancer Activities of a Novel Quercetin Acetylated Derivative

Quercetin (Q) is a bioflavonoid with biological potential; however, poor solubility in water, extensive enzymatic metabolism and a reduced bioavailability limit its biopharmacological use. The aim of this study was to perform structural modification in Q by acetylation, thus, obtaining the quercetin...

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Autores principales: da Silva, Saul Vislei Simões, Barboza, Orlando Maia, Souza, Jéssica Teles, Soares, Érica Novaes, dos Santos, Cleonice Creusa, Pacheco, Luciano Vasconcellos, Santos, Ivanilson Pimenta, Magalhães, Tatiana Barbosa dos Santos, Soares, Milena Botelho Pereira, Guimarães, Elisalva Teixeira, Meira, Cássio Santana, Costa, Silvia Lima, da Silva, Victor Diógenes Amaral, de Santana, Lourenço Luís Botelho, de Freitas Santos Júnior, Aníbal
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8623808/
https://www.ncbi.nlm.nih.gov/pubmed/34834016
http://dx.doi.org/10.3390/molecules26226923
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author da Silva, Saul Vislei Simões
Barboza, Orlando Maia
Souza, Jéssica Teles
Soares, Érica Novaes
dos Santos, Cleonice Creusa
Pacheco, Luciano Vasconcellos
Santos, Ivanilson Pimenta
Magalhães, Tatiana Barbosa dos Santos
Soares, Milena Botelho Pereira
Guimarães, Elisalva Teixeira
Meira, Cássio Santana
Costa, Silvia Lima
da Silva, Victor Diógenes Amaral
de Santana, Lourenço Luís Botelho
de Freitas Santos Júnior, Aníbal
author_facet da Silva, Saul Vislei Simões
Barboza, Orlando Maia
Souza, Jéssica Teles
Soares, Érica Novaes
dos Santos, Cleonice Creusa
Pacheco, Luciano Vasconcellos
Santos, Ivanilson Pimenta
Magalhães, Tatiana Barbosa dos Santos
Soares, Milena Botelho Pereira
Guimarães, Elisalva Teixeira
Meira, Cássio Santana
Costa, Silvia Lima
da Silva, Victor Diógenes Amaral
de Santana, Lourenço Luís Botelho
de Freitas Santos Júnior, Aníbal
author_sort da Silva, Saul Vislei Simões
collection PubMed
description Quercetin (Q) is a bioflavonoid with biological potential; however, poor solubility in water, extensive enzymatic metabolism and a reduced bioavailability limit its biopharmacological use. The aim of this study was to perform structural modification in Q by acetylation, thus, obtaining the quercetin pentaacetate (Q5) analogue, in order to investigate the biological potentials (antioxidant, antileishmania, anti-inflammatory and cytotoxicity activities) in cell cultures. Q5 was characterized by FTIR, (1)H and (13)C NMR spectra. The antioxidant potential was evaluated against the radical ABTS(•+). The anti-inflammatory potential was evaluated by measuring the pro-inflammatory cytokine tumor necrosis factor (TNF) and the production of nitric oxide (NO) in peritoneal macrophages from BALB/c mice. Cytotoxicity tests were performed using the AlamarBlue method in cancer cells HepG2 (human hepatocarcinoma), HL-60 (promyelocytic leukemia) and MCR-5 (healthy human lung fibroblasts) as well as the MTT method for C6 cell cultures (rat glioma). Q and Q5 showed antioxidant activity of 29% and 18%, respectively, which is justified by the replacement of hydroxyls by acetyl groups. Q and Q5 showed concentration-dependent reductions in NO and TNF production (p < 0.05); Q and Q5 showed higher activity at concentrations > 40µM when compared to dexamethasone (20 µM). For the HL-60 lineage, Q5 demonstrated selectivity, inducing death in cancer cells, when compared to the healthy cell line MRC-5 (IC(50) > 80 µM). Finally, the cytotoxic superiority of Q5 was verified (IC(50) = 11 µM), which, at 50 µM for 24 h, induced changes in the morphology of C6 glioma cells characterized by a round body shape (not yet reported in the literature). The analogue Q5 had potential biological effects and may be promising for further investigations against other cell cultures, particularly neural ones.
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spelling pubmed-86238082021-11-27 Structural Design, Synthesis and Antioxidant, Antileishmania, Anti-Inflammatory and Anticancer Activities of a Novel Quercetin Acetylated Derivative da Silva, Saul Vislei Simões Barboza, Orlando Maia Souza, Jéssica Teles Soares, Érica Novaes dos Santos, Cleonice Creusa Pacheco, Luciano Vasconcellos Santos, Ivanilson Pimenta Magalhães, Tatiana Barbosa dos Santos Soares, Milena Botelho Pereira Guimarães, Elisalva Teixeira Meira, Cássio Santana Costa, Silvia Lima da Silva, Victor Diógenes Amaral de Santana, Lourenço Luís Botelho de Freitas Santos Júnior, Aníbal Molecules Article Quercetin (Q) is a bioflavonoid with biological potential; however, poor solubility in water, extensive enzymatic metabolism and a reduced bioavailability limit its biopharmacological use. The aim of this study was to perform structural modification in Q by acetylation, thus, obtaining the quercetin pentaacetate (Q5) analogue, in order to investigate the biological potentials (antioxidant, antileishmania, anti-inflammatory and cytotoxicity activities) in cell cultures. Q5 was characterized by FTIR, (1)H and (13)C NMR spectra. The antioxidant potential was evaluated against the radical ABTS(•+). The anti-inflammatory potential was evaluated by measuring the pro-inflammatory cytokine tumor necrosis factor (TNF) and the production of nitric oxide (NO) in peritoneal macrophages from BALB/c mice. Cytotoxicity tests were performed using the AlamarBlue method in cancer cells HepG2 (human hepatocarcinoma), HL-60 (promyelocytic leukemia) and MCR-5 (healthy human lung fibroblasts) as well as the MTT method for C6 cell cultures (rat glioma). Q and Q5 showed antioxidant activity of 29% and 18%, respectively, which is justified by the replacement of hydroxyls by acetyl groups. Q and Q5 showed concentration-dependent reductions in NO and TNF production (p < 0.05); Q and Q5 showed higher activity at concentrations > 40µM when compared to dexamethasone (20 µM). For the HL-60 lineage, Q5 demonstrated selectivity, inducing death in cancer cells, when compared to the healthy cell line MRC-5 (IC(50) > 80 µM). Finally, the cytotoxic superiority of Q5 was verified (IC(50) = 11 µM), which, at 50 µM for 24 h, induced changes in the morphology of C6 glioma cells characterized by a round body shape (not yet reported in the literature). The analogue Q5 had potential biological effects and may be promising for further investigations against other cell cultures, particularly neural ones. MDPI 2021-11-17 /pmc/articles/PMC8623808/ /pubmed/34834016 http://dx.doi.org/10.3390/molecules26226923 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
da Silva, Saul Vislei Simões
Barboza, Orlando Maia
Souza, Jéssica Teles
Soares, Érica Novaes
dos Santos, Cleonice Creusa
Pacheco, Luciano Vasconcellos
Santos, Ivanilson Pimenta
Magalhães, Tatiana Barbosa dos Santos
Soares, Milena Botelho Pereira
Guimarães, Elisalva Teixeira
Meira, Cássio Santana
Costa, Silvia Lima
da Silva, Victor Diógenes Amaral
de Santana, Lourenço Luís Botelho
de Freitas Santos Júnior, Aníbal
Structural Design, Synthesis and Antioxidant, Antileishmania, Anti-Inflammatory and Anticancer Activities of a Novel Quercetin Acetylated Derivative
title Structural Design, Synthesis and Antioxidant, Antileishmania, Anti-Inflammatory and Anticancer Activities of a Novel Quercetin Acetylated Derivative
title_full Structural Design, Synthesis and Antioxidant, Antileishmania, Anti-Inflammatory and Anticancer Activities of a Novel Quercetin Acetylated Derivative
title_fullStr Structural Design, Synthesis and Antioxidant, Antileishmania, Anti-Inflammatory and Anticancer Activities of a Novel Quercetin Acetylated Derivative
title_full_unstemmed Structural Design, Synthesis and Antioxidant, Antileishmania, Anti-Inflammatory and Anticancer Activities of a Novel Quercetin Acetylated Derivative
title_short Structural Design, Synthesis and Antioxidant, Antileishmania, Anti-Inflammatory and Anticancer Activities of a Novel Quercetin Acetylated Derivative
title_sort structural design, synthesis and antioxidant, antileishmania, anti-inflammatory and anticancer activities of a novel quercetin acetylated derivative
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8623808/
https://www.ncbi.nlm.nih.gov/pubmed/34834016
http://dx.doi.org/10.3390/molecules26226923
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