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Cysteinyl leukotrienes induce human eosinophil locomotion and adhesion molecule expression via a CysLT 1 receptor‐mediated mechanism
Author(s) -
Fregonese L.,
Silvestri M.,
Sabatini F.,
Rossi G. A.
Publication year - 2002
Publication title -
clinical and experimental allergy
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.462
H-Index - 154
eISSN - 1365-2222
pISSN - 0954-7894
DOI - 10.1046/j.1365-2222.2002.01384.x
Subject(s) - eosinophil , leukotriene e4 , leukotriene , chemotaxis , eosinophil cationic protein , leukotriene d4 , receptor , montelukast , receptor antagonist , immunology , chemistry , microbiology and biotechnology , biology , antagonist , biochemistry , asthma
Summary Background The mechanisms involved in eosinophil recruitment by cysteinyl‐leukotrienes (CysLTs) remain to be defined. Objective We investigated whether CysLTs LTC 4 , LTD 4 and LTE 4 could directly stimulate in vitro adhesion molecule expression and cell locomotion of blood eosinophils from atopic asthmatic donors.Methods Mab staining and FACS analysis were used to evaluate Mac‐1 and LFA‐1 expression on eosinophils before and after CysLTs stimulation. Eosinophil locomotion was tested using a 48‐well Boyden microchamber.Results CysLTs, at the concentrations of 1 and 10 nM, were able to significantly up‐regulate Mac‐1 expression ( P < 0.05, each comparison) but not LFA‐1 expression ( P > 0.05, each comparison). A dose‐dependent, eosinophil chemotaxis was also induced by LTC 4 , LTD 4 and LTE 4 (0.1–10 nM) ( P < 0.01, each comparison). Montelukast (0.01 nM to 10 nM), a specific CysLT 1 receptor antagonist, significantly down‐regulated LTC 4 , LTD 4 and LTE 4 ‐induced Mac‐1 expression ( P < 0.01, each comparison) and the CysLT‐induced eosinophil migration ( P < 0.01, each comparison). In contrast, montelukast did not affect Mac‐1 expression or cell migration when eosinophils were stimulated by the ‘non‐specific activators’, such as fMLP or C5a ( P > 0.05, each comparison). Conclusion These data demonstrate that CysLTs are active in vitro in directly up‐regulating human eosinophil functions involved in eosinophil recruitment. The down‐regulation of Mac‐1 expression and eosinophil chemotaxis by the potent and selective CysLT 1 receptor antagonist montelukast indicated the specificity of the LTC 4 ‐, LTD 4 ‐ and LTE 4 ‐induced response.