Initial platelet arrest at the exposed arterial vessel wall is mediated through glycoprotein Ibα binding to the A1 domain of von Willebrand factor. This interaction occurs at sites of elevated shear force, and strengthens upon increasing hydrodynamic drag. The increased interaction requires shear-dependent exposure of the von Willebrand factor A1 domain, but the contribution of glycoprotein Ibα remains ill defined. We have previously found that glycoprotein Ibα forms clusters upon platelet cooling and hypothesized that such a property enhances the interaction with von Willebrand factor under physiological conditions. We analyzed the distribution of glycoprotein Ibα with Förster resonance energy transfer using time-gated fluorescence lifetim...
Platelets exposed to shear stress aggregate in the absence of exogenously added agonists, utilizing ...
AbstractWe have identified two distinct mechanisms initiating the adhesion of flowing platelets to t...
Von Willebrand factor (VWF) plays a central role in hemostasis. Triggered by shear-stress, it adhere...
Initial platelet arrest at the exposed arterial vessel wall is mediated through glycoprotein Ibα bin...
Von Willebrand factor (vWF) is a large multimeric protein found in plasma, intracellular stores of p...
Arterial thrombosis is one of the important pathophysiological mechanisms that lead to cardiovascula...
Physiol 297: H2128 –H2135, 2009. First published October 9, 2009; doi:10.1152/ajpheart.00107.2009.—S...
Platelets play key roles in physiology, such as the arrest of bleeding following vascular injury, an...
Shear-induced platelet aggregation (SIPA) involves von Willebrand Factor (vWF) binding to platelet g...
Von Willebrand factor, an ultralarge concatemeric blood protein, must bind to platelet GPIbα during ...
Physical and biochemical forces convert platelets in human blood in vivo from the quiescent state as...
Platelet aggregation, which contributes to bleeding arrest and also to thrombovascular disorders, is...
Mechanisms by which blood cells sense shear stress are poorly characterized. In platelets, glycoprot...
Mechanisms by which blood cells sense shear stress are poorly characterized. In platelets, glycoprot...
The binding between the 45 kDa N-terminal domain of the a subunit of the GPIb-IX-V complex (GPIbαN) ...
Platelets exposed to shear stress aggregate in the absence of exogenously added agonists, utilizing ...
AbstractWe have identified two distinct mechanisms initiating the adhesion of flowing platelets to t...
Von Willebrand factor (VWF) plays a central role in hemostasis. Triggered by shear-stress, it adhere...
Initial platelet arrest at the exposed arterial vessel wall is mediated through glycoprotein Ibα bin...
Von Willebrand factor (vWF) is a large multimeric protein found in plasma, intracellular stores of p...
Arterial thrombosis is one of the important pathophysiological mechanisms that lead to cardiovascula...
Physiol 297: H2128 –H2135, 2009. First published October 9, 2009; doi:10.1152/ajpheart.00107.2009.—S...
Platelets play key roles in physiology, such as the arrest of bleeding following vascular injury, an...
Shear-induced platelet aggregation (SIPA) involves von Willebrand Factor (vWF) binding to platelet g...
Von Willebrand factor, an ultralarge concatemeric blood protein, must bind to platelet GPIbα during ...
Physical and biochemical forces convert platelets in human blood in vivo from the quiescent state as...
Platelet aggregation, which contributes to bleeding arrest and also to thrombovascular disorders, is...
Mechanisms by which blood cells sense shear stress are poorly characterized. In platelets, glycoprot...
Mechanisms by which blood cells sense shear stress are poorly characterized. In platelets, glycoprot...
The binding between the 45 kDa N-terminal domain of the a subunit of the GPIb-IX-V complex (GPIbαN) ...
Platelets exposed to shear stress aggregate in the absence of exogenously added agonists, utilizing ...
AbstractWe have identified two distinct mechanisms initiating the adhesion of flowing platelets to t...
Von Willebrand factor (VWF) plays a central role in hemostasis. Triggered by shear-stress, it adhere...