Cargando…

A new insight into purinergic pharmacology: Three fungal species as natural P2X7R antagonists

P2X7 is a purinergic receptor involved in important physiological functions and pathological processes, such as inflammation, neurodegeneration, and pain. Despite its relevance, there is no selective antagonist useful in the treatment of diseases related to this receptor. In this context, research f...

Descripción completa

Detalles Bibliográficos
Autores principales: Soares‐Bezerra, Rômulo José, da Silva Ferreira, Natiele Carla, de Almeida Alves, Tânia Maria, Zani, Carlos Leomar, Rosa, Luiz Henrique, Faria, Robson Xavier, da Silva Frutuoso, Válber, Alves, Luiz Anastacio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6771832/
https://www.ncbi.nlm.nih.gov/pubmed/31264271
http://dx.doi.org/10.1002/ptr.6412
_version_ 1783455777926676480
author Soares‐Bezerra, Rômulo José
da Silva Ferreira, Natiele Carla
de Almeida Alves, Tânia Maria
Zani, Carlos Leomar
Rosa, Luiz Henrique
Faria, Robson Xavier
da Silva Frutuoso, Válber
Alves, Luiz Anastacio
author_facet Soares‐Bezerra, Rômulo José
da Silva Ferreira, Natiele Carla
de Almeida Alves, Tânia Maria
Zani, Carlos Leomar
Rosa, Luiz Henrique
Faria, Robson Xavier
da Silva Frutuoso, Válber
Alves, Luiz Anastacio
author_sort Soares‐Bezerra, Rômulo José
collection PubMed
description P2X7 is a purinergic receptor involved in important physiological functions and pathological processes, such as inflammation, neurodegeneration, and pain. Despite its relevance, there is no selective antagonist useful in the treatment of diseases related to this receptor. In this context, research for a selective, safe, and potent antagonist compound that can be used in clinical therapy has been growing. In this work, we evaluated the potential antagonistic activity of three fungal extracts, namely, Vishniacozyma victoriae, Metschnikowia australis, and Ascomycota sp., which were discovered in a high‐throughput screening campaign to search for new antagonists for P2X7R from natural products. First, the IC(50) values of these fungal extracts were determined in J774.G8 (murine macrophage cell line) and U937 (human monocyte cell line) cells through dye uptake assays. The IC(50) values of V. victoriae were 2.6 and 0.92 μg/mL, M. australis has IC(50) values of 3.8 and 1.5 μg/mL, and Ascomycota sp. showed values of 2.1 and 0.67 μg/mL in J774.G8 and U937 cells, respectively. These extracts also significantly inhibited propidium iodide and Lucifer yellow uptake via P2X7R pore, P2X7R currents in electrophysiology, IL‐1β release, and the production of oxide nitric and reactive oxygen species. The extracts did not cause cytotoxicity within a period of 24 h. The results showed the promising antagonistic activity of these extracts toward P2X7R, thereby indicating that they can be future candidates for phytomedicines with potential clinical applicability.
format Online
Article
Text
id pubmed-6771832
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-67718322019-10-07 A new insight into purinergic pharmacology: Three fungal species as natural P2X7R antagonists Soares‐Bezerra, Rômulo José da Silva Ferreira, Natiele Carla de Almeida Alves, Tânia Maria Zani, Carlos Leomar Rosa, Luiz Henrique Faria, Robson Xavier da Silva Frutuoso, Válber Alves, Luiz Anastacio Phytother Res Research Articles P2X7 is a purinergic receptor involved in important physiological functions and pathological processes, such as inflammation, neurodegeneration, and pain. Despite its relevance, there is no selective antagonist useful in the treatment of diseases related to this receptor. In this context, research for a selective, safe, and potent antagonist compound that can be used in clinical therapy has been growing. In this work, we evaluated the potential antagonistic activity of three fungal extracts, namely, Vishniacozyma victoriae, Metschnikowia australis, and Ascomycota sp., which were discovered in a high‐throughput screening campaign to search for new antagonists for P2X7R from natural products. First, the IC(50) values of these fungal extracts were determined in J774.G8 (murine macrophage cell line) and U937 (human monocyte cell line) cells through dye uptake assays. The IC(50) values of V. victoriae were 2.6 and 0.92 μg/mL, M. australis has IC(50) values of 3.8 and 1.5 μg/mL, and Ascomycota sp. showed values of 2.1 and 0.67 μg/mL in J774.G8 and U937 cells, respectively. These extracts also significantly inhibited propidium iodide and Lucifer yellow uptake via P2X7R pore, P2X7R currents in electrophysiology, IL‐1β release, and the production of oxide nitric and reactive oxygen species. The extracts did not cause cytotoxicity within a period of 24 h. The results showed the promising antagonistic activity of these extracts toward P2X7R, thereby indicating that they can be future candidates for phytomedicines with potential clinical applicability. John Wiley and Sons Inc. 2019-07-02 2019-09 /pmc/articles/PMC6771832/ /pubmed/31264271 http://dx.doi.org/10.1002/ptr.6412 Text en © 2019 The Authors Phytotherapy Research Published by John Wiley & Sons Ltd This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Research Articles
Soares‐Bezerra, Rômulo José
da Silva Ferreira, Natiele Carla
de Almeida Alves, Tânia Maria
Zani, Carlos Leomar
Rosa, Luiz Henrique
Faria, Robson Xavier
da Silva Frutuoso, Válber
Alves, Luiz Anastacio
A new insight into purinergic pharmacology: Three fungal species as natural P2X7R antagonists
title A new insight into purinergic pharmacology: Three fungal species as natural P2X7R antagonists
title_full A new insight into purinergic pharmacology: Three fungal species as natural P2X7R antagonists
title_fullStr A new insight into purinergic pharmacology: Three fungal species as natural P2X7R antagonists
title_full_unstemmed A new insight into purinergic pharmacology: Three fungal species as natural P2X7R antagonists
title_short A new insight into purinergic pharmacology: Three fungal species as natural P2X7R antagonists
title_sort new insight into purinergic pharmacology: three fungal species as natural p2x7r antagonists
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6771832/
https://www.ncbi.nlm.nih.gov/pubmed/31264271
http://dx.doi.org/10.1002/ptr.6412
work_keys_str_mv AT soaresbezerraromulojose anewinsightintopurinergicpharmacologythreefungalspeciesasnaturalp2x7rantagonists
AT dasilvaferreiranatielecarla anewinsightintopurinergicpharmacologythreefungalspeciesasnaturalp2x7rantagonists
AT dealmeidaalvestaniamaria anewinsightintopurinergicpharmacologythreefungalspeciesasnaturalp2x7rantagonists
AT zanicarlosleomar anewinsightintopurinergicpharmacologythreefungalspeciesasnaturalp2x7rantagonists
AT rosaluizhenrique anewinsightintopurinergicpharmacologythreefungalspeciesasnaturalp2x7rantagonists
AT fariarobsonxavier anewinsightintopurinergicpharmacologythreefungalspeciesasnaturalp2x7rantagonists
AT dasilvafrutuosovalber anewinsightintopurinergicpharmacologythreefungalspeciesasnaturalp2x7rantagonists
AT alvesluizanastacio anewinsightintopurinergicpharmacologythreefungalspeciesasnaturalp2x7rantagonists
AT soaresbezerraromulojose newinsightintopurinergicpharmacologythreefungalspeciesasnaturalp2x7rantagonists
AT dasilvaferreiranatielecarla newinsightintopurinergicpharmacologythreefungalspeciesasnaturalp2x7rantagonists
AT dealmeidaalvestaniamaria newinsightintopurinergicpharmacologythreefungalspeciesasnaturalp2x7rantagonists
AT zanicarlosleomar newinsightintopurinergicpharmacologythreefungalspeciesasnaturalp2x7rantagonists
AT rosaluizhenrique newinsightintopurinergicpharmacologythreefungalspeciesasnaturalp2x7rantagonists
AT fariarobsonxavier newinsightintopurinergicpharmacologythreefungalspeciesasnaturalp2x7rantagonists
AT dasilvafrutuosovalber newinsightintopurinergicpharmacologythreefungalspeciesasnaturalp2x7rantagonists
AT alvesluizanastacio newinsightintopurinergicpharmacologythreefungalspeciesasnaturalp2x7rantagonists