Δημοσίευση

Steroids and β2-agonists regulate hyaluronan metabolism in asthmatic airway smooth muscle cells.

ΤίτλοςSteroids and β2-agonists regulate hyaluronan metabolism in asthmatic airway smooth muscle cells.
Publication TypeJournal Article
Year of Publication2012
AuthorsPapakonstantinou, E., Klagas I., Karakiulakis G., Hostettler K., S'ng C. Teck, Kotoula V., Savic S., Tamm M., & Roth M.
JournalAm J Respir Cell Mol Biol
Volume47
Issue6
Pagination759-67
Date Published2012 Dec
ISSN1535-4989
Λέξεις κλειδιάAdrenergic beta-2 Receptor Agonists, Antigens, CD44, Asthma, Budesonide, Case-Control Studies, Cell Adhesion Molecules, Cells, Cultured, Ethanolamines, Extracellular Matrix, Gene Expression, Glucocorticoids, Glucuronosyltransferase, Glycosaminoglycans, GPI-Linked Proteins, Humans, Hyaluronic Acid, Hyaluronoglucosaminidase, Myocytes, Smooth Muscle, Propranolol, Respiratory System
Abstract

Glycosaminoglycans (GAGs), especially hyaluronic acid (HA), regulate tissue flexibility, cell motility, and inflammation. Airway smooth muscle cells (ASMCs) of patients with asthma exhibit abnormal HA metabolism, which contributes to inflammation and remodeling. Here, we investigated the effects of glucocorticoids and long-acting β(2)-agonists (LABAs) on GAG synthesis and HA metabolism by human primary ASMCs. ASMCs were isolated from airway specimens of 10 patients without asthma and 11 patients with asthma. ASMCs were incubated with glucocorticoids, LABAs, or their combination, as well as with their specific receptor antagonists. Secreted and deposited total GAGs were measured by [(3)H]-glucosamine incorporation. The expression of specific GAGs was determined by ELISA and electrophoresis. The expression of HA synthases (HAS), of hyaluronidases (HYALs), and of the HA receptor CD44 was determined by RT-PCR, immunoblotting in cell cultures, and immunohistochemistry in tissue sections of asthmatic lungs. In serum-activated asthmatic ASMCs, glucocorticoids and LABAs significantly inhibited the increased secretion and deposition of total GAGs, but they stimulated secreted and deposited HA of high molecular mass. This effect was attributed to increased mRNA and protein expression of HAS-1 and to the reduced expression of HYAL-1. Furthermore, drug treatment stimulated the expression of CD44 receptors in asthmatic ASMCs. These effects of the drugs were eliminated by their respective receptor inhibitors. Our findings indicate that the combination of glucocorticoids with LABAs counteracts the pathologic degradation of HA, and thereby may reduce the proinflammatory potential of asthmatic ASMCs.

DOI10.1165/rcmb.2012-0101OC
Alternate JournalAm. J. Respir. Cell Mol. Biol.
PubMed ID22865625

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