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Julia E. Brittain, Kathryn J. Mlinar, Christopher S. Anderson, Eugene P. Orringer, Leslie V. Parise
J Clin Invest. 2001;
107(12):1555
doi:10.1172/JCI10817
Abstract |
Full text
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P
eripheral human red blood cells (RBCs) are not generally known to become activated and adhesive in response to cell signaling. We show, however, that soluble thrombospondin via integrin-associated protein (IAP; CD47) increases the adhesiveness of sickle RBCs (SS RBCs) by activating signal transduction in the SS RBC. This stimulated adhesion requires occupancy of IAP and shear stress and is mediated by the activation of large G proteins and tyrosine kinases. Reticulocyte-enriched RBCs derived from sickle-cell disease (SCD) patients are most responsive to IAP-induced activation. These studies therefore establish peripheral SS RBCs as signaling cells that respond to a novel synergy between IAP-induced signal transduction and shear stress, suggesting new therapeutic targets in SCD.
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Fibronectin bridges monocytes and reticulocytes via integrin α4β1
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Phosphatidylserine-positive erythrocytes bind to immobilized and soluble thrombospondin-1 via its heparin-binding domain.
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Transl Res
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2007 |
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