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Acetylcholine leads to signal transducer and activator of transcription 1 (STAT-1) mediated oxidative/nitrosative stress in human bronchial epithelial cell line

Academic Article
Publication Date:
2013
abstract:
The induction of nitric oxide synthase (iNOS) expression via the signal transducer and activator of transcription 1 (STAT-1) is involved in the mechanism of oxidative/nitrosative stress. We investigated whether acetylcholine (ACh) generates oxidative/nitrosative stress in bronchial epithelial cells during airway inflammation of COPD and evaluated the effects of Tiotropium, a once-daily antimuscarinic drug, and Olodaterol, a long-acting ?2-agonist on these mechanisms. Human bronchial epithelial cells (16-HBE) were stimulated (4h, 37°C) with induced sputum supernatants (ISSs) from healthy controls (HC) (n=10), healthy smokers (HS) (n=10) or COPD patients (n=10), as well as with ACh (from 1?M to 100?M). The activation of STAT-1 pathway (STAT-1Ser727 and STAT-1Tyr701) and iNOS was evaluated in the cell lysates by Western blot analysis as well as nitrotyrosine levels by ELISA, while reactive oxygen species (ROS) were evaluated by flow cytometry. Finally, the effect of Tiotropium (Spiriva®) (100nM), alone or in combination with Olodaterol (1nM), was tested in this model. ISSs from COPD patients significantly increased the phosphorylation of STAT-1Ser727 and STAT-1Tyr701, iNOS and ROS/Nitrotyrosine when compared with ISSs from HC or HS subjects in 16-HBE cells. Furthermore, synthetic ACh increased all these parameters in stimulated 16HBE when compared with untreated cells. Tiotropium and Olodaterol reduced the oxidative/nitrosative stress generated by ACh and ISSs. We concluded that ACh mediated the oxidative/nitrosative stress involving the STAT-1 pathway activation in human bronchial epithelial cells during COPD. ?2-Long acting and antimuscarinic drugs, normally used in the treatment of COPD as bronchodilator, might be able to control these cellular events.
Iris type:
01.01 Articolo in rivista
List of contributors:
Siena, Liboria; Montalbano, ANGELA MARINA; Albano, GIUSY DANIELA; Anzalone, Giulia; Gjomarkaj, Mark; Profita, Mirella; Gagliardo, ROSALIA PAOLA; DI SANO, Caterina; Riccobono, Loredana; Bonanno, Anna
Authors of the University:
ALBANO GIUSY DANIELA
DI SANO CATERINA
GAGLIARDO ROSALIA PAOLA
GJOMARKAJ MARK
MONTALBANO ANGELA MARINA
PROFITA MIRELLA
Handle:
https://iris.cnr.it/handle/20.500.14243/187428
Published in:
BIOCHIMICA ET BIOPHYSICA ACTA. MOLECULAR BASIS OF DISEASE
Journal
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