Blood2006Open AccessHighly Cited

Glucocorticoids induce differentiation of a specifically activated, anti-inflammatory subtype of human monocytes

Jan Ehrchen, Lars Steinmüller, Katarzyna Barczyk et al.

405 citations2006Open Access — see publisher for license terms1 related compound

Research Article — Peer-Reviewed Source

Original research published by Ehrchen et al. in Blood. Redistributed under Open Access — see publisher for license terms. MedTech Research Group provides these references for informational purposes. We do not conduct original research. All studies are the work of their respective authors and institutions.

Abstract

Monocytes and macrophages may either promote or down-regulate inflammatory reactions depending on their state of activation. The effects of glucocorticoids (GCs), the most widely used immunosuppressive drugs, on monocytes are currently not well defined. By analyzing the GC-induced expression pattern in human monocytes by microarray technology, we identified for the first time GC-dependent regulation of 133 genes, including anti-inflammatory molecules such as adenosine A3 receptor, CD1d, and IL-1 receptor II. The results were independently confirmed by real-time polymerase chain reaction (PCR) and flow cytometry. Functional clustering of GC-regulated genes indicated induction of monocytic properties such as phagocytosis and motility as well as repression of adhesion, apoptosis, and oxidative burst. These predictions were confirmed by independent functional assays. GCs up-regulate fMLP receptors and specifically promote chemotaxis to this chemoattractant. Furthermore, GCs promote survival of an anti-inflammatory monocytic phenotype in inflammatory reactions, probably by inhibition of apoptosis because of oxidative stress. GCs limit tissue damage because of induction of antioxidative properties and high capacity for phagocytosis of proinflammatory agents. Thus, GC treatment did not cause a global suppression of monocytic effector functions but results in differentiation of a specific anti-inflammatory phenotype which seems to be actively involved in resolution of inflammatory reactions.

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Article Details
DOI10.1182/blood-2006-02-001115
JournalBlood
Year2006
AuthorsJan Ehrchen, Lars Steinmüller, Katarzyna Barczyk, Klaus Tenbrock, Wolfgang Nacken, Martin Eisenacher, Ursula Nordhues, Clemens Sorg, Cord Sunderkötter, Johannes Roth
LicenseOpen Access — see publisher for license terms
Citations405