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P2Y(12) Receptor Antagonist Clopidogrel Attenuates Lung Inflammation Triggered by Silica Particles

Silicosis is an occupational lung disease caused by inhalation of silica particles. It is characterized by intense lung inflammation, with progressive and irreversible fibrosis, leading to impaired lung function. Purinergic signaling modulates silica-induced lung inflammation and fibrosis through P2...

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Autores principales: Santana, Patricia Teixeira, Luna-Gomes, Tatiana, Rangel-Ferreira, Marcos Vinicius, Tamura, Augusto Shuiti, Da Graça, Carolyne Lalucha Alves Lima, Machado, Mariana Nascimento, Zin, Walter Araujo, Takiya, Christina Maeda, Faffe, Debora Souza, Coutinho-Silva, Robson
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7093325/
https://www.ncbi.nlm.nih.gov/pubmed/32256366
http://dx.doi.org/10.3389/fphar.2020.00301
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author Santana, Patricia Teixeira
Luna-Gomes, Tatiana
Rangel-Ferreira, Marcos Vinicius
Tamura, Augusto Shuiti
Da Graça, Carolyne Lalucha Alves Lima
Machado, Mariana Nascimento
Zin, Walter Araujo
Takiya, Christina Maeda
Faffe, Debora Souza
Coutinho-Silva, Robson
author_facet Santana, Patricia Teixeira
Luna-Gomes, Tatiana
Rangel-Ferreira, Marcos Vinicius
Tamura, Augusto Shuiti
Da Graça, Carolyne Lalucha Alves Lima
Machado, Mariana Nascimento
Zin, Walter Araujo
Takiya, Christina Maeda
Faffe, Debora Souza
Coutinho-Silva, Robson
author_sort Santana, Patricia Teixeira
collection PubMed
description Silicosis is an occupational lung disease caused by inhalation of silica particles. It is characterized by intense lung inflammation, with progressive and irreversible fibrosis, leading to impaired lung function. Purinergic signaling modulates silica-induced lung inflammation and fibrosis through P2X7 receptor. In the present study, we investigate the role of P2Y(12), the G-protein-coupled subfamily prototype of P2 receptor class in silicosis. To that end, BALB/c mice received an intratracheal injection of PBS or silica particles (20 mg), without or with P2Y(12) receptor blockade by clopidogrel (20 mg/kg body weight by gavage every 48 h) – groups CTRL, SIL, and SIL + Clopi, respectively. After 14 days, lung mechanics were determined by the end-inflation occlusion method. Lung histology was analyzed, and lung parenchyma production of nitric oxide and cytokines (IL-1β, IL-6, TNF-α, and TGF-β) were determined. Silica injection reduced animal survival and increased all lung mechanical parameters in relation to CTRL, followed by diffuse lung parenchyma inflammation, increased neutrophil infiltration, collagen deposition and increased pro-inflammatory and pro-fibrogenic cytokine secretion, as well as increased nitrite production. Clopidogrel treatment prevented silica-induced changes in lung function, and significantly reduced lung inflammation, fibrosis, as well as cytokine and nitrite production. These data suggest that inhibition of P2Y(12) signaling improves silica-induced lung inflammation, preventing lung functional changes and mortality. Our results corroborate previous observations of silica-induced lung changes and expand the understanding of purinergic signaling in this process.
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spelling pubmed-70933252020-04-01 P2Y(12) Receptor Antagonist Clopidogrel Attenuates Lung Inflammation Triggered by Silica Particles Santana, Patricia Teixeira Luna-Gomes, Tatiana Rangel-Ferreira, Marcos Vinicius Tamura, Augusto Shuiti Da Graça, Carolyne Lalucha Alves Lima Machado, Mariana Nascimento Zin, Walter Araujo Takiya, Christina Maeda Faffe, Debora Souza Coutinho-Silva, Robson Front Pharmacol Pharmacology Silicosis is an occupational lung disease caused by inhalation of silica particles. It is characterized by intense lung inflammation, with progressive and irreversible fibrosis, leading to impaired lung function. Purinergic signaling modulates silica-induced lung inflammation and fibrosis through P2X7 receptor. In the present study, we investigate the role of P2Y(12), the G-protein-coupled subfamily prototype of P2 receptor class in silicosis. To that end, BALB/c mice received an intratracheal injection of PBS or silica particles (20 mg), without or with P2Y(12) receptor blockade by clopidogrel (20 mg/kg body weight by gavage every 48 h) – groups CTRL, SIL, and SIL + Clopi, respectively. After 14 days, lung mechanics were determined by the end-inflation occlusion method. Lung histology was analyzed, and lung parenchyma production of nitric oxide and cytokines (IL-1β, IL-6, TNF-α, and TGF-β) were determined. Silica injection reduced animal survival and increased all lung mechanical parameters in relation to CTRL, followed by diffuse lung parenchyma inflammation, increased neutrophil infiltration, collagen deposition and increased pro-inflammatory and pro-fibrogenic cytokine secretion, as well as increased nitrite production. Clopidogrel treatment prevented silica-induced changes in lung function, and significantly reduced lung inflammation, fibrosis, as well as cytokine and nitrite production. These data suggest that inhibition of P2Y(12) signaling improves silica-induced lung inflammation, preventing lung functional changes and mortality. Our results corroborate previous observations of silica-induced lung changes and expand the understanding of purinergic signaling in this process. Frontiers Media S.A. 2020-03-18 /pmc/articles/PMC7093325/ /pubmed/32256366 http://dx.doi.org/10.3389/fphar.2020.00301 Text en Copyright © 2020 Santana, Luna-Gomes, Rangel-Ferreira, Tamura, Da Graça, Machado, Zin, Takiya, Faffe and Coutinho-Silva. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Santana, Patricia Teixeira
Luna-Gomes, Tatiana
Rangel-Ferreira, Marcos Vinicius
Tamura, Augusto Shuiti
Da Graça, Carolyne Lalucha Alves Lima
Machado, Mariana Nascimento
Zin, Walter Araujo
Takiya, Christina Maeda
Faffe, Debora Souza
Coutinho-Silva, Robson
P2Y(12) Receptor Antagonist Clopidogrel Attenuates Lung Inflammation Triggered by Silica Particles
title P2Y(12) Receptor Antagonist Clopidogrel Attenuates Lung Inflammation Triggered by Silica Particles
title_full P2Y(12) Receptor Antagonist Clopidogrel Attenuates Lung Inflammation Triggered by Silica Particles
title_fullStr P2Y(12) Receptor Antagonist Clopidogrel Attenuates Lung Inflammation Triggered by Silica Particles
title_full_unstemmed P2Y(12) Receptor Antagonist Clopidogrel Attenuates Lung Inflammation Triggered by Silica Particles
title_short P2Y(12) Receptor Antagonist Clopidogrel Attenuates Lung Inflammation Triggered by Silica Particles
title_sort p2y(12) receptor antagonist clopidogrel attenuates lung inflammation triggered by silica particles
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7093325/
https://www.ncbi.nlm.nih.gov/pubmed/32256366
http://dx.doi.org/10.3389/fphar.2020.00301
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