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LJ-2698, an Adenosine A(3) Receptor Antagonist, Alleviates Elastase-Induced Pulmonary Emphysema in Mice

Emphysema, a major component of chronic obstructive pulmonary disease (COPD), is a leading cause of human death worldwide. The progressive deterioration of lung function that occurs in the disease is caused by chronic inflammation of the airway and destruction of the lung parenchyma. Despite the mai...

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Autores principales: Boo, Hye-Jin, Park, So Jung, Noh, Myungkyung, Min, Hye-Young, Jeong, Lak Shin, Lee, Ho-Young
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Korean Society of Applied Pharmacology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7216744/
https://www.ncbi.nlm.nih.gov/pubmed/32062956
http://dx.doi.org/10.4062/biomolther.2019.162
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author Boo, Hye-Jin
Park, So Jung
Noh, Myungkyung
Min, Hye-Young
Jeong, Lak Shin
Lee, Ho-Young
author_facet Boo, Hye-Jin
Park, So Jung
Noh, Myungkyung
Min, Hye-Young
Jeong, Lak Shin
Lee, Ho-Young
author_sort Boo, Hye-Jin
collection PubMed
description Emphysema, a major component of chronic obstructive pulmonary disease (COPD), is a leading cause of human death worldwide. The progressive deterioration of lung function that occurs in the disease is caused by chronic inflammation of the airway and destruction of the lung parenchyma. Despite the main impact of inflammation on the pathogenesis of emphysema, current therapeutic regimens mainly offer symptomatic relief and preservation of lung function with little therapeutic impact. In the present study, we aimed to discover novel therapeutics that suppress the pathogenesis of emphysema. Here, we show that LJ-2698, a novel and highly selective antagonist of the adenosine A(3) receptor, a G protein-coupled receptor involved in various inflammatory diseases, significantly reversed the elastase-induced destructive changes in murine lungs. We found that LJ-2698 significantly prevented elastase-induced airspace enlargement, resulting in restoration of pulmonary function without causing any obvious changes in body weight in mice. LJ-2698 was found to inhibit matrix metalloproteinase activity and pulmonary cell apoptosis in the murine lung. LJ-2698 treatment induced increases in anti-inflammatory cytokines in macrophages at doses that displayed no significant cytotoxicity in normal cell lines derived from various organs. Treatment with LJ-2698 significantly increased the number of anti-inflammatory M2 macrophages in the lungs. These results implicate the adenosine A(3) receptor in the pathogenesis of emphysema. Our findings also demonstrate the potential of LJ-2698 as a novel therapeutic/preventive agent in suppressing disease development with limited toxicity.
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spelling pubmed-72167442020-05-12 LJ-2698, an Adenosine A(3) Receptor Antagonist, Alleviates Elastase-Induced Pulmonary Emphysema in Mice Boo, Hye-Jin Park, So Jung Noh, Myungkyung Min, Hye-Young Jeong, Lak Shin Lee, Ho-Young Biomol Ther (Seoul) Original Article Emphysema, a major component of chronic obstructive pulmonary disease (COPD), is a leading cause of human death worldwide. The progressive deterioration of lung function that occurs in the disease is caused by chronic inflammation of the airway and destruction of the lung parenchyma. Despite the main impact of inflammation on the pathogenesis of emphysema, current therapeutic regimens mainly offer symptomatic relief and preservation of lung function with little therapeutic impact. In the present study, we aimed to discover novel therapeutics that suppress the pathogenesis of emphysema. Here, we show that LJ-2698, a novel and highly selective antagonist of the adenosine A(3) receptor, a G protein-coupled receptor involved in various inflammatory diseases, significantly reversed the elastase-induced destructive changes in murine lungs. We found that LJ-2698 significantly prevented elastase-induced airspace enlargement, resulting in restoration of pulmonary function without causing any obvious changes in body weight in mice. LJ-2698 was found to inhibit matrix metalloproteinase activity and pulmonary cell apoptosis in the murine lung. LJ-2698 treatment induced increases in anti-inflammatory cytokines in macrophages at doses that displayed no significant cytotoxicity in normal cell lines derived from various organs. Treatment with LJ-2698 significantly increased the number of anti-inflammatory M2 macrophages in the lungs. These results implicate the adenosine A(3) receptor in the pathogenesis of emphysema. Our findings also demonstrate the potential of LJ-2698 as a novel therapeutic/preventive agent in suppressing disease development with limited toxicity. The Korean Society of Applied Pharmacology 2020-05-01 2020-02-17 /pmc/articles/PMC7216744/ /pubmed/32062956 http://dx.doi.org/10.4062/biomolther.2019.162 Text en Copyright © 2020, The Korean Society of Applied Pharmacology This is an open-access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Boo, Hye-Jin
Park, So Jung
Noh, Myungkyung
Min, Hye-Young
Jeong, Lak Shin
Lee, Ho-Young
LJ-2698, an Adenosine A(3) Receptor Antagonist, Alleviates Elastase-Induced Pulmonary Emphysema in Mice
title LJ-2698, an Adenosine A(3) Receptor Antagonist, Alleviates Elastase-Induced Pulmonary Emphysema in Mice
title_full LJ-2698, an Adenosine A(3) Receptor Antagonist, Alleviates Elastase-Induced Pulmonary Emphysema in Mice
title_fullStr LJ-2698, an Adenosine A(3) Receptor Antagonist, Alleviates Elastase-Induced Pulmonary Emphysema in Mice
title_full_unstemmed LJ-2698, an Adenosine A(3) Receptor Antagonist, Alleviates Elastase-Induced Pulmonary Emphysema in Mice
title_short LJ-2698, an Adenosine A(3) Receptor Antagonist, Alleviates Elastase-Induced Pulmonary Emphysema in Mice
title_sort lj-2698, an adenosine a(3) receptor antagonist, alleviates elastase-induced pulmonary emphysema in mice
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7216744/
https://www.ncbi.nlm.nih.gov/pubmed/32062956
http://dx.doi.org/10.4062/biomolther.2019.162
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