期刊论文详细信息
Journal of Leukocyte Biology
Human suppressive neutrophils CD16bright/CD62Ldim exhibit decreased adhesion
Vera M. Kamp1  Leo Koenderman1  Janesh Pillay1  Jan-Willem J. Lammers1  Peter Pickkers2  Laurien H. Ulfman, and1 
[1] Department of Respiratory Medicine and  Department of Anesthesiology, University Medical Centre, Utrecht, The Netherlands;Department of Intensive Care, Radboud University Nijmegen Medical Centre, Nijmegen, The Netherlands  Department of Anesthesiology, University Medical Centre, Utrecht, The Netherlands;
关键词: myeloid derived suppressor cells;    endotoxemia;    lipopolysaccharide;    chemotaxis;    adhesion/migration;   
DOI  :  10.1189/jlb.0612273
学科分类:生理学
来源: Federation of American Societies for Experimental Biology
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【 摘 要 】

Neutrophils are essential effector cells in host defense against invading pathogens. Regulation of adhesion, migration, and chemotactic processes is important in the homing and activation of these cells. We recently described three distinct subsets of circulating human neutrophils in peripheral blood during acute systemic inflammation. One subset, CD16bright/CD62Ldim, has immune suppressive characteristics because it can inhibit T-cell proliferation. The other two subsets consist of banded CD16dim/CD62Lbright and phenotypically mature (normal) CD16bright/CD62Lbright neutrophils. The current study was designed to determine the adhesion characteristics of these different neutrophil subsets. Analysis of adhesion to activated endothelium under flow conditions revealed that CD16bright/CD62Ldim neutrophils adhered less compared with CD16bright/CD62Lbright and CD16dim/CD62Lbright neutrophils. This decrease in binding capacity could be mimicked in the other neutrophil subsets by blocking L-selectin. Chemotaxis of CD16bright/CD62Ldim neutrophils to the end-target chemoattractant N-formylmethionine-leucine-phenylalanine was lower compared with that for the CD16dim/CD62Lbright neutrophil subset, whereas chemotaxis to cell-derived chemoattractant CXCL8 was comparable. Our data indicate that capture on endothelium under flow conditions, a key mechanism necessary for extravasation, of CD16bright/CD62Ldim neutrophils to inflammatory sites is attenuated, which may facilitate migration of these cells to other tissue localizations. Modulation of this process is a potential target to manipulate inflammation because potentiation of this immune suppression might aid in anti-inflammatory therapy.

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