Literature DB >> 30070589

Airway epithelial compression promotes airway smooth muscle proliferation and contraction.

Bo Lan1,2, Jennifer A Mitchel1, Michael J O'Sullivan1, Chan Young Park1, Jae Hun Kim1, William C Cole2, James P Butler1,3, Jin-Ah Park1.   

Abstract

During acute bronchoconstriction, the airway epithelium becomes mechanically compressed, as airway smooth muscle contracts and the airway narrows. This mechanical compression activates airway epithelium to promote asthmatic airway remodeling. However, whether compressed airway epithelium can feed back on the cause of bronchoconstriction has remained an open question. Here we examine the potential for epithelial compression to augment proliferation and contraction of airway smooth muscle, and thus potentiate further bronchoconstriction and epithelial compression. Well-differentiated primary human bronchial epithelial (HBE) cells maintained in air-liquid interface culture were mechanically compressed to mimic the effect of bronchoconstriction. Primary human airway smooth muscle (HASM) cells were incubated with conditioned media collected from mechanically compressed HBE cells to examine the effect of epithelial-derived mediators on HASM cell proliferation using an EdU assay and HASM cell contraction using traction microscopy. An endothelin receptor antagonist, PD-145065, was employed to probe the role of HBE cell-derived endothelin-1 on the proliferation and contraction of HASM cells. Conditioned media from compressed HBE cells increased HASM cell proliferation, independent of the endothelin-1 signaling pathway. However, conditioned media from compressed HBE cells significantly increased HASM cell basal contraction and histamine-induced contraction, both of which depended on the endothelin-1 signaling pathway. Our data demonstrate that mechanical compression of bronchial epithelial cells contributes to proliferation and basal contraction of airway smooth muscle cells and that augmented contraction depends on epithelial cell-derived endothelin-1. By means of both airway smooth muscle remodeling and contractility, our findings suggest a causal role of epithelial compression on asthma pathogenesis.

Entities:  

Keywords:  airway hyperresponsiveness; airway smooth muscle; asthma; bronchoconstriction; endothelin-1; mechanotransduction

Mesh:

Substances:

Year:  2018        PMID: 30070589      PMCID: PMC6295502          DOI: 10.1152/ajplung.00261.2018

Source DB:  PubMed          Journal:  Am J Physiol Lung Cell Mol Physiol        ISSN: 1040-0605            Impact factor:   5.464


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Review 1.  What effect does asthma treatment have on airway remodeling? Current perspectives.

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2.  Airway endothelin levels in asthma: influence of endobronchial allergen challenge and maintenance corticosteroid therapy.

Authors:  A E Redington; D R Springall; M A Ghatei; J Madden; S R Bloom; A J Frew; J M Polak; S T Holgate; P H Howarth
Journal:  Eur Respir J       Date:  1997-05       Impact factor: 16.671

Review 3.  Airway smooth muscle in the pathophysiology and treatment of asthma.

Authors:  Diana C Doeing; Julian Solway
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Authors:  E F Juniper; P A Kline; M A Vanzieleghem; E H Ramsdale; P M O'Byrne; F E Hargreave
Journal:  Am Rev Respir Dis       Date:  1990-10

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7.  Endothelin-1-induced potentiation of human airway smooth muscle proliferation: an ETA receptor-mediated phenomenon.

Authors:  R A Panettieri; R G Goldie; P J Rigby; A J Eszterhas; D W Hay
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8.  Effect of bronchoconstriction on airway remodeling in asthma.

Authors:  Christopher L Grainge; Laurie C K Lau; Jonathon A Ward; Valdeep Dulay; Gemma Lahiff; Susan Wilson; Stephen Holgate; Donna E Davies; Peter H Howarth
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Authors:  B Battistini; T D Warner; A Fournier; J R Vane
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