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β(2)-Agonist Induced cAMP Is Decreased in Asthmatic Airway Smooth Muscle Due to Increased PDE4D

BACKGROUND AND OBJECTIVE: Asthma is associated with airway narrowing in response to bronchoconstricting stimuli and increased airway smooth muscle (ASM) mass. In addition, some studies have suggested impaired β-agonist induced ASM relaxation in asthmatics, but the mechanism is not known. OBJECTIVE:...

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Autores principales: Trian, Thomas, Burgess, Janette K., Niimi, Kyoko, Moir, Lyn M., Ge, Qi, Berger, Patrick, Liggett, Stephen B., Black, Judith L., Oliver, Brian G.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3096656/
https://www.ncbi.nlm.nih.gov/pubmed/21611147
http://dx.doi.org/10.1371/journal.pone.0020000
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author Trian, Thomas
Burgess, Janette K.
Niimi, Kyoko
Moir, Lyn M.
Ge, Qi
Berger, Patrick
Liggett, Stephen B.
Black, Judith L.
Oliver, Brian G.
author_facet Trian, Thomas
Burgess, Janette K.
Niimi, Kyoko
Moir, Lyn M.
Ge, Qi
Berger, Patrick
Liggett, Stephen B.
Black, Judith L.
Oliver, Brian G.
author_sort Trian, Thomas
collection PubMed
description BACKGROUND AND OBJECTIVE: Asthma is associated with airway narrowing in response to bronchoconstricting stimuli and increased airway smooth muscle (ASM) mass. In addition, some studies have suggested impaired β-agonist induced ASM relaxation in asthmatics, but the mechanism is not known. OBJECTIVE: To characterize the potential defect in β-agonist induced cAMP in ASM derived from asthmatic in comparison to non-asthmatic subjects and to investigate its mechanism. METHODS: We examined β(2)-adrenergic (β(2)AR) receptor expression and basal β-agonist and forskolin (direct activator of adenylyl cyclase) stimulated cAMP production in asthmatic cultured ASM (n = 15) and non-asthmatic ASM (n = 22). Based on these results, PDE activity, PDE4D expression and cell proliferation were determined. RESULTS: In the presence of IBMX, a pan PDE inhibitor, asthmatic ASM had ∼50% lower cAMP production in response to isoproterenol, albuterol, formoterol, and forskolin compared to non-asthmatic ASM. However when PDE4 was specifically inhibited, cAMP production by the agonists and forskolin was normalized in asthmatic ASM. We then measured the amount and activity of PDE4, and found ∼2-fold greater expression and activity in asthmatic ASM compared to non-asthmatic ASM. Furthermore, inhibition of PDE4 reduced asthmatic ASM proliferation but not that of non-asthmatic ASM. CONCLUSION: Decreased β-agonist induced cAMP in ASM from asthmatics results from enhanced degradation due to increased PDE4D expression. Clinical manifestations of this dysregulation would be suboptimal β-agonist-mediated bronchodilation and possibly reduced control over increasing ASM mass. These phenotypes appear to be “hard-wired” into ASM from asthmatics, as they do not require an inflammatory environment in culture to be observed.
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spelling pubmed-30966562011-05-24 β(2)-Agonist Induced cAMP Is Decreased in Asthmatic Airway Smooth Muscle Due to Increased PDE4D Trian, Thomas Burgess, Janette K. Niimi, Kyoko Moir, Lyn M. Ge, Qi Berger, Patrick Liggett, Stephen B. Black, Judith L. Oliver, Brian G. PLoS One Research Article BACKGROUND AND OBJECTIVE: Asthma is associated with airway narrowing in response to bronchoconstricting stimuli and increased airway smooth muscle (ASM) mass. In addition, some studies have suggested impaired β-agonist induced ASM relaxation in asthmatics, but the mechanism is not known. OBJECTIVE: To characterize the potential defect in β-agonist induced cAMP in ASM derived from asthmatic in comparison to non-asthmatic subjects and to investigate its mechanism. METHODS: We examined β(2)-adrenergic (β(2)AR) receptor expression and basal β-agonist and forskolin (direct activator of adenylyl cyclase) stimulated cAMP production in asthmatic cultured ASM (n = 15) and non-asthmatic ASM (n = 22). Based on these results, PDE activity, PDE4D expression and cell proliferation were determined. RESULTS: In the presence of IBMX, a pan PDE inhibitor, asthmatic ASM had ∼50% lower cAMP production in response to isoproterenol, albuterol, formoterol, and forskolin compared to non-asthmatic ASM. However when PDE4 was specifically inhibited, cAMP production by the agonists and forskolin was normalized in asthmatic ASM. We then measured the amount and activity of PDE4, and found ∼2-fold greater expression and activity in asthmatic ASM compared to non-asthmatic ASM. Furthermore, inhibition of PDE4 reduced asthmatic ASM proliferation but not that of non-asthmatic ASM. CONCLUSION: Decreased β-agonist induced cAMP in ASM from asthmatics results from enhanced degradation due to increased PDE4D expression. Clinical manifestations of this dysregulation would be suboptimal β-agonist-mediated bronchodilation and possibly reduced control over increasing ASM mass. These phenotypes appear to be “hard-wired” into ASM from asthmatics, as they do not require an inflammatory environment in culture to be observed. Public Library of Science 2011-05-17 /pmc/articles/PMC3096656/ /pubmed/21611147 http://dx.doi.org/10.1371/journal.pone.0020000 Text en Trian et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Trian, Thomas
Burgess, Janette K.
Niimi, Kyoko
Moir, Lyn M.
Ge, Qi
Berger, Patrick
Liggett, Stephen B.
Black, Judith L.
Oliver, Brian G.
β(2)-Agonist Induced cAMP Is Decreased in Asthmatic Airway Smooth Muscle Due to Increased PDE4D
title β(2)-Agonist Induced cAMP Is Decreased in Asthmatic Airway Smooth Muscle Due to Increased PDE4D
title_full β(2)-Agonist Induced cAMP Is Decreased in Asthmatic Airway Smooth Muscle Due to Increased PDE4D
title_fullStr β(2)-Agonist Induced cAMP Is Decreased in Asthmatic Airway Smooth Muscle Due to Increased PDE4D
title_full_unstemmed β(2)-Agonist Induced cAMP Is Decreased in Asthmatic Airway Smooth Muscle Due to Increased PDE4D
title_short β(2)-Agonist Induced cAMP Is Decreased in Asthmatic Airway Smooth Muscle Due to Increased PDE4D
title_sort β(2)-agonist induced camp is decreased in asthmatic airway smooth muscle due to increased pde4d
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3096656/
https://www.ncbi.nlm.nih.gov/pubmed/21611147
http://dx.doi.org/10.1371/journal.pone.0020000
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