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Eugenia sulcata (Myrtaceae) Nanoemulsion Enhances the Inhibitory Activity of the Essential Oil on P2X7R and Inflammatory Response In Vivo

P2X7R is a purinergic receptor with broad expression throughout the body, especially in immune system cells. P2X7R activation causes inflammatory mediators to release, including interleukin-1β (IL-1β), the processing and release of which are critically dependent on this ion channel activation. P2X7R...

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Autores principales: Magalhães, Bettina Quintanilha, Machado, Francisco P., Sanches, Paola S., Lima, Bárbara, Falcão, Deborah Quintanilha, von Ranke, Natalia, Bello, Murilo Lamim, Rodrigues, Carlos Rangel, Santos, Marcelo Guerra, Rocha, Leandro, Faria, Robson X.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9148016/
https://www.ncbi.nlm.nih.gov/pubmed/35631497
http://dx.doi.org/10.3390/pharmaceutics14050911
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author Magalhães, Bettina Quintanilha
Machado, Francisco P.
Sanches, Paola S.
Lima, Bárbara
Falcão, Deborah Quintanilha
von Ranke, Natalia
Bello, Murilo Lamim
Rodrigues, Carlos Rangel
Santos, Marcelo Guerra
Rocha, Leandro
Faria, Robson X.
author_facet Magalhães, Bettina Quintanilha
Machado, Francisco P.
Sanches, Paola S.
Lima, Bárbara
Falcão, Deborah Quintanilha
von Ranke, Natalia
Bello, Murilo Lamim
Rodrigues, Carlos Rangel
Santos, Marcelo Guerra
Rocha, Leandro
Faria, Robson X.
author_sort Magalhães, Bettina Quintanilha
collection PubMed
description P2X7R is a purinergic receptor with broad expression throughout the body, especially in immune system cells. P2X7R activation causes inflammatory mediators to release, including interleukin-1β (IL-1β), the processing and release of which are critically dependent on this ion channel activation. P2X7R’s therapeutic potential augments the discovery of new antagonistic compounds. Thus, we investigated whether the Eugenia sulcata essential oil could block P2X7R activity. The essential oil (ESO) dose-dependently inhibited ATP-promoted PI uptake and IL-1β release with an IC(50) of 113.3 ± 3.7 ng/mL and 274 ± 91 ng/mL, respectively, and the essential oil nanoemulsion (ESON) improved the ESO inhibitory effect with an IC(50) of 81.4 ± 7.2 ng/mL and 62 ± 2 ng/mL, respectively. ESO and ESON reversed the carrageenan-activated peritonitis in mice, and ESON exhibited an efficacy higher than ESO. The majority substance from essential oil, β-caryophyllene, impaired the ATP-evoked PI uptake and IL-1β release with an IC(50) value of 26 ± 0.007 ng/mL and 97 ± 0.012 ng/mL, respectively. Additionally, β-caryophyllene reduced carrageenan-induced peritonitis, and the molecular modeling and computational simulation predicted the intermolecular interactions in the P2X7R situs. In silico, results indicated β-caryophyllene as a potent allosteric P2X7R antagonist, although this substance may present toxic effects for humans. These data confirm the nanoemulsion of essential oil from E. sulcata as a promisor biotechnology strategy for impaired P2X7R functions and the inflammatory response.
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spelling pubmed-91480162022-05-29 Eugenia sulcata (Myrtaceae) Nanoemulsion Enhances the Inhibitory Activity of the Essential Oil on P2X7R and Inflammatory Response In Vivo Magalhães, Bettina Quintanilha Machado, Francisco P. Sanches, Paola S. Lima, Bárbara Falcão, Deborah Quintanilha von Ranke, Natalia Bello, Murilo Lamim Rodrigues, Carlos Rangel Santos, Marcelo Guerra Rocha, Leandro Faria, Robson X. Pharmaceutics Article P2X7R is a purinergic receptor with broad expression throughout the body, especially in immune system cells. P2X7R activation causes inflammatory mediators to release, including interleukin-1β (IL-1β), the processing and release of which are critically dependent on this ion channel activation. P2X7R’s therapeutic potential augments the discovery of new antagonistic compounds. Thus, we investigated whether the Eugenia sulcata essential oil could block P2X7R activity. The essential oil (ESO) dose-dependently inhibited ATP-promoted PI uptake and IL-1β release with an IC(50) of 113.3 ± 3.7 ng/mL and 274 ± 91 ng/mL, respectively, and the essential oil nanoemulsion (ESON) improved the ESO inhibitory effect with an IC(50) of 81.4 ± 7.2 ng/mL and 62 ± 2 ng/mL, respectively. ESO and ESON reversed the carrageenan-activated peritonitis in mice, and ESON exhibited an efficacy higher than ESO. The majority substance from essential oil, β-caryophyllene, impaired the ATP-evoked PI uptake and IL-1β release with an IC(50) value of 26 ± 0.007 ng/mL and 97 ± 0.012 ng/mL, respectively. Additionally, β-caryophyllene reduced carrageenan-induced peritonitis, and the molecular modeling and computational simulation predicted the intermolecular interactions in the P2X7R situs. In silico, results indicated β-caryophyllene as a potent allosteric P2X7R antagonist, although this substance may present toxic effects for humans. These data confirm the nanoemulsion of essential oil from E. sulcata as a promisor biotechnology strategy for impaired P2X7R functions and the inflammatory response. MDPI 2022-04-21 /pmc/articles/PMC9148016/ /pubmed/35631497 http://dx.doi.org/10.3390/pharmaceutics14050911 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
Magalhães, Bettina Quintanilha
Machado, Francisco P.
Sanches, Paola S.
Lima, Bárbara
Falcão, Deborah Quintanilha
von Ranke, Natalia
Bello, Murilo Lamim
Rodrigues, Carlos Rangel
Santos, Marcelo Guerra
Rocha, Leandro
Faria, Robson X.
Eugenia sulcata (Myrtaceae) Nanoemulsion Enhances the Inhibitory Activity of the Essential Oil on P2X7R and Inflammatory Response In Vivo
title Eugenia sulcata (Myrtaceae) Nanoemulsion Enhances the Inhibitory Activity of the Essential Oil on P2X7R and Inflammatory Response In Vivo
title_full Eugenia sulcata (Myrtaceae) Nanoemulsion Enhances the Inhibitory Activity of the Essential Oil on P2X7R and Inflammatory Response In Vivo
title_fullStr Eugenia sulcata (Myrtaceae) Nanoemulsion Enhances the Inhibitory Activity of the Essential Oil on P2X7R and Inflammatory Response In Vivo
title_full_unstemmed Eugenia sulcata (Myrtaceae) Nanoemulsion Enhances the Inhibitory Activity of the Essential Oil on P2X7R and Inflammatory Response In Vivo
title_short Eugenia sulcata (Myrtaceae) Nanoemulsion Enhances the Inhibitory Activity of the Essential Oil on P2X7R and Inflammatory Response In Vivo
title_sort eugenia sulcata (myrtaceae) nanoemulsion enhances the inhibitory activity of the essential oil on p2x7r and inflammatory response in vivo
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9148016/
https://www.ncbi.nlm.nih.gov/pubmed/35631497
http://dx.doi.org/10.3390/pharmaceutics14050911
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