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Absence of Proteinase-Activated Receptor-1 Signaling in Mice Confers Protection from fMLP-Induced Goblet Cell Metaplasia
by
Lucattelli, Monica
, Scotton, Chris J
, De Cunto, Giovanna
, Laurent, Geoffrey J
, Chambers, Rachel C
, Bartalesi, Barbara
, Lungarella, Giuseppe
, Lunghi, Benedetta
, Atzori, Luigi
in
Alveoli
/ Animals
/ Bronchitis
/ Cell Differentiation - drug effects
/ Chronic obstructive pulmonary disease
/ Emphysema
/ Emphysema - chemically induced
/ Emphysema - metabolism
/ Emphysema - pathology
/ Epithelial cells
/ ErbB Receptors - metabolism
/ Formyl peptides
/ Goblet Cells - drug effects
/ Goblet Cells - metabolism
/ Goblet Cells - pathology
/ Humans
/ Hyperplasia
/ Immunoreactivity
/ Inflammation
/ Interleukin 13
/ Interleukin-13 - metabolism
/ Leukocytes (neutrophilic)
/ Lung - drug effects
/ Lung - metabolism
/ Lung - pathology
/ Lung diseases
/ Male
/ Metaplasia
/ Mice
/ Mice, Inbred C57BL
/ Mice, Knockout
/ Mucus
/ N-Formylmethionine Leucyl-Phenylalanine - toxicity
/ Oligopeptides - pharmacology
/ Phenylalanine
/ Proteinase-activated receptor 1
/ Pulmonary Disease, Chronic Obstructive - etiology
/ Pulmonary lesions
/ Receptor mechanisms
/ Receptor, PAR-1 - agonists
/ Receptor, PAR-1 - deficiency
/ Receptor, PAR-1 - genetics
/ Respiratory tract
/ Signal Transduction
/ Thrombin
/ Trachea
2009
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Absence of Proteinase-Activated Receptor-1 Signaling in Mice Confers Protection from fMLP-Induced Goblet Cell Metaplasia
by
Lucattelli, Monica
, Scotton, Chris J
, De Cunto, Giovanna
, Laurent, Geoffrey J
, Chambers, Rachel C
, Bartalesi, Barbara
, Lungarella, Giuseppe
, Lunghi, Benedetta
, Atzori, Luigi
in
Alveoli
/ Animals
/ Bronchitis
/ Cell Differentiation - drug effects
/ Chronic obstructive pulmonary disease
/ Emphysema
/ Emphysema - chemically induced
/ Emphysema - metabolism
/ Emphysema - pathology
/ Epithelial cells
/ ErbB Receptors - metabolism
/ Formyl peptides
/ Goblet Cells - drug effects
/ Goblet Cells - metabolism
/ Goblet Cells - pathology
/ Humans
/ Hyperplasia
/ Immunoreactivity
/ Inflammation
/ Interleukin 13
/ Interleukin-13 - metabolism
/ Leukocytes (neutrophilic)
/ Lung - drug effects
/ Lung - metabolism
/ Lung - pathology
/ Lung diseases
/ Male
/ Metaplasia
/ Mice
/ Mice, Inbred C57BL
/ Mice, Knockout
/ Mucus
/ N-Formylmethionine Leucyl-Phenylalanine - toxicity
/ Oligopeptides - pharmacology
/ Phenylalanine
/ Proteinase-activated receptor 1
/ Pulmonary Disease, Chronic Obstructive - etiology
/ Pulmonary lesions
/ Receptor mechanisms
/ Receptor, PAR-1 - agonists
/ Receptor, PAR-1 - deficiency
/ Receptor, PAR-1 - genetics
/ Respiratory tract
/ Signal Transduction
/ Thrombin
/ Trachea
2009
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Absence of Proteinase-Activated Receptor-1 Signaling in Mice Confers Protection from fMLP-Induced Goblet Cell Metaplasia
by
Lucattelli, Monica
, Scotton, Chris J
, De Cunto, Giovanna
, Laurent, Geoffrey J
, Chambers, Rachel C
, Bartalesi, Barbara
, Lungarella, Giuseppe
, Lunghi, Benedetta
, Atzori, Luigi
in
Alveoli
/ Animals
/ Bronchitis
/ Cell Differentiation - drug effects
/ Chronic obstructive pulmonary disease
/ Emphysema
/ Emphysema - chemically induced
/ Emphysema - metabolism
/ Emphysema - pathology
/ Epithelial cells
/ ErbB Receptors - metabolism
/ Formyl peptides
/ Goblet Cells - drug effects
/ Goblet Cells - metabolism
/ Goblet Cells - pathology
/ Humans
/ Hyperplasia
/ Immunoreactivity
/ Inflammation
/ Interleukin 13
/ Interleukin-13 - metabolism
/ Leukocytes (neutrophilic)
/ Lung - drug effects
/ Lung - metabolism
/ Lung - pathology
/ Lung diseases
/ Male
/ Metaplasia
/ Mice
/ Mice, Inbred C57BL
/ Mice, Knockout
/ Mucus
/ N-Formylmethionine Leucyl-Phenylalanine - toxicity
/ Oligopeptides - pharmacology
/ Phenylalanine
/ Proteinase-activated receptor 1
/ Pulmonary Disease, Chronic Obstructive - etiology
/ Pulmonary lesions
/ Receptor mechanisms
/ Receptor, PAR-1 - agonists
/ Receptor, PAR-1 - deficiency
/ Receptor, PAR-1 - genetics
/ Respiratory tract
/ Signal Transduction
/ Thrombin
/ Trachea
2009
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Absence of Proteinase-Activated Receptor-1 Signaling in Mice Confers Protection from fMLP-Induced Goblet Cell Metaplasia
Journal Article
Absence of Proteinase-Activated Receptor-1 Signaling in Mice Confers Protection from fMLP-Induced Goblet Cell Metaplasia
2009
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Overview
Abstract
The morphological features of chronic obstructive pulmonary disease in man include emphysema and chronic bronchitis associated with mucus hypersecretion. These alterations can be induced in mice by a single intratracheal instillation of N-formyl-L-methionyl-L-leucyl-L-phenylalanine (fMLP), a chemoattractant and degranulating agent for neutrophils. The mechanisms underlying excessive mucus production and, in particular, goblet cell hyperplasia/metaplasia in chronic obstructive pulmonary disease remain poorly understood. The proteinase-activated receptors (PARs) are widely recognized for their modulatory properties during inflammation. In this study, we examined whether PAR-1 contributes to inflammation and lung damage induced by fMLP by comparing the response of PAR-1–deficient (PAR-1−/−) mice with that of wild-type (WT) mice. Mice were killed at various time points after fMLP instillation (200 μg/50 μl). WT mice developed emphysema and goblet cell metaplasia. The onset of pulmonary lesions was preceded by an increase in thrombin immunoreactivity in bronchial airways and alveolar tissue. This was followed by a decrease in PAR-1 immunoreactivity, and by an increase in IL-13 immunostaining on the luminal surface of airway epithelial cells. In PAR-1−/− mice, fMLP administration induced similar responses in terms of inflammation and emphysema, but these mice were protected from the development of goblet cell metaplasia. The involvement of PAR-1 in airway epithelial cell transdifferentiation was confirmed by demonstrating that intratracheal instillation of the selective PAR-1 agonist (TFLLR) induced goblet cell metaplasia in the airways of WT mice only. These data suggest that emphysema and goblet cell metaplasia occur independently, and that PAR-1 signaling through IL-13 stimulation may play an important role in inducing goblet cell metaplasia.
Publisher
Am Thoracic Soc,Oxford University Press,American Thoracic Society
Subject
/ Animals
/ Cell Differentiation - drug effects
/ Chronic obstructive pulmonary disease
/ Emphysema - chemically induced
/ Humans
/ Male
/ Mice
/ Mucus
/ N-Formylmethionine Leucyl-Phenylalanine - toxicity
/ Oligopeptides - pharmacology
/ Proteinase-activated receptor 1
/ Pulmonary Disease, Chronic Obstructive - etiology
/ Receptor, PAR-1 - deficiency
/ Thrombin
/ Trachea
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