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Dickkopf-1 Enhances Inflammatory Interaction Between Platelets and Endothelial Cells and Shows Increased Expression in Atherosclerosis
Author(s) -
Thor Ueland,
Kari Otterdal,
Tove Lekva,
Bente Halvorsen,
Anders Gabrielsen,
Wiggo J. Sandberg,
Gabrielle PaulssonBerne,
Turid M. Pedersen,
Lasse Folkersen,
Lars Gullestad,
Erik Øie,
Göran K. Hansson,
Pål Aukrust
Publication year - 2009
Publication title -
arteriosclerosis thrombosis and vascular biology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.007
H-Index - 270
eISSN - 1524-4636
pISSN - 1079-5642
DOI - 10.1161/atvbaha.109.189761
Subject(s) - wnt signaling pathway , inflammation , platelet , platelet activation , medicine , thrombus , lesion , immunostaining , proinflammatory cytokine , myocardial infarction , endothelial stem cell , cancer research , in vitro , pathology , immunology , microbiology and biotechnology , signal transduction , biology , immunohistochemistry , biochemistry
Objective— Based on the emerging importance of the wingless (Wnt) pathways in inflammation and vascular biology, we hypothesized a role for Dickkopf-1 (DKK-1), a major modulator of Wnt signaling, in atherogenesis and plaque destabilization.Methods and Results— We report increased levels of DKK-1 in experimental (ApoE−/− mice) and clinical (patients with coronary artery disease [n=80] and patients with carotid plaque [n=47]) atherosclerosis, both systemically (serum) and within the lesion, with particularly high levels in advanced and unstable disease. We identified platelets as an important cellular source of DKK-1 as shown by in vitro experiments and by immunostaining of thrombus material obtained at the site of plaque rupture in patients with acute ST-elevation myocardial infarction, with strong immunoreactivity in platelet aggregates. Our in vitro experiments identified a role for platelet- and endothelial-derived DKK-1 in platelet-dependent endothelial activation, promoting enhanced release of inflammatory cytokines. These inflammatory effects of DKK-1 involved inhibition of the Wnt/β-catenin pathway and activation of nuclear factor κB.Conclusion— Our findings identify DKK-1 as a novel mediator in platelet-mediated endothelial cell activation. The demonstration of enhanced DKK-1 expression within advanced carotid plaques may suggest that this DKK-1-driven inflammatory loop could be operating within the atherosclerotic lesion.

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