autocrine acetylcholine, induced by il-17a via nfκb and erk1/2 pathway activation, promotes muc5ac and il-8 synthesis in bronchial epithelial cells

autocrine acetylcholine, induced by il-17a via nfκb and erk1/2 pathway activation, promotes muc5ac and il-8 synthesis in bronchial epithelial cells

;Angela Marina Montalbano;Giusy Daniela Albano;Anna Bonanno;Loredana Riccobono;Caterina Di Sano;Maria Ferraro;Liboria Siena;Giulia Anzalone;Rosalia Gagliardo;Michael Paul Pieper;Mark Gjomarkaj;Mirella Profita
polyhedron 2016 Vol. 2016 pp. -
240
montalbano2016mediatorsautocrine

Abstract

IL-17A is overexpressed in the lung during acute neutrophilic inflammation. Acetylcholine (ACh) increases IL-8 and Muc5AC production in airway epithelial cells. We aimed to characterize the involvement of nonneuronal components of cholinergic system on IL-8 and Muc5AC production in bronchial epithelial cells stimulated with IL-17A. Bronchial epithelial cells were stimulated with recombinant human IL-17A (rhIL-17A) to evaluate the ChAT expression, the ACh binding and production, the IL-8 release, and the Muc5AC production. Furthermore, the effectiveness of PD098,059 (inhibitor of MAPKK activation), Bay11-7082 (inhibitor of IkBα phosphorylation), Hemicholinium-3 (HCh-3) (choline uptake blocker), and Tiotropium bromide (Spiriva®) (anticholinergic drug) was tested in our in vitro model. We showed that rhIL-17A increased the expression of ChAT, the levels of ACh binding and production, and the IL-8 and Muc5AC production in stimulated bronchial epithelial cells compared with untreated cells. The pretreatment of the cells with PD098,059 and Bay11-7082 decreased the ChAT expression and the ACh production/binding, while HCh-3 and Tiotropium decreased the IL-8 and Muc5AC synthesis in bronchial epithelial cells stimulated with rhIL-17A. IL-17A is involved in the IL-8 and Muc5AC production promoting, via NFκB and ERK1/2 pathway activation, the synthesis of ChAT, and the related activity of autocrine ACh in bronchial epithelial cells.

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255171
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10.1155/2016/9063842
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