ABSTRACT: The physical properties of substrates are known to control cell adhesion via integrin-mediated signaling. Fibrin and fibrinogen, the principal components of hemostatic and pathological thrombi, may represent biologically relevant substrates whose variable physical properties control adhesion of leukocytes and platelets. In our previous work, we have shown that binding of fibrinogen to the surface of fibrin clot prevents cell adhesion by creating an antiadhesive fibrinogen layer. Furthermore, fibrinogen immobilized on various surfaces at high density supports weak cell adhesion whereas at low density it is highly adhesive. To explore the mechanism underlying differential cell adhesion, we examined the structural and physical proper...
AbstractWe have identified two distinct mechanisms initiating the adhesion of flowing platelets to t...
The influence of surface chemistry—substrates with controlled surface density of −OH groups—on fibro...
The influence of surface chemistry—substrates with controlled surface density of −OH groups—on fibro...
Adsorption of fibrinogen on fibrin clots and other surfaces strongly reduces integrin-mediated adhes...
Adsorption of fibrinogen on fibrin clots and other surfaces strongly reduces integrin-mediated adhes...
© 2018 Elsevier Inc. All rights reserved.Plasma fibrinogen includes an alternatively spliced γ-chain...
© 2018 Elsevier Inc. All rights reserved.Plasma fibrinogen includes an alternatively spliced γ-chain...
AbstractThe regulated ability of integrin αIIbβ3 to bind fibrinogen plays a crucial role in platelet...
Platelets interact with multiple adhesion proteins during thrombogenesis, yet little is known about ...
Platelets interact with multiple adhesion proteins during thrombogenesis, yet little is known about ...
Upon vascular injury, platelets are crucial for thrombus formation and contraction, but do they dire...
Upon vascular injury, platelets are crucial for thrombus formation and contraction, but do they dire...
As platelets aggregate and activate at the site of vascular injury to stem bleeding, they are subjec...
Platelets play a major role in hemostasis and thrombosis, by binding to the underlying extracellular...
As platelets aggregate and activate at the site of vascular injury to stem bleeding, they are subjec...
AbstractWe have identified two distinct mechanisms initiating the adhesion of flowing platelets to t...
The influence of surface chemistry—substrates with controlled surface density of −OH groups—on fibro...
The influence of surface chemistry—substrates with controlled surface density of −OH groups—on fibro...
Adsorption of fibrinogen on fibrin clots and other surfaces strongly reduces integrin-mediated adhes...
Adsorption of fibrinogen on fibrin clots and other surfaces strongly reduces integrin-mediated adhes...
© 2018 Elsevier Inc. All rights reserved.Plasma fibrinogen includes an alternatively spliced γ-chain...
© 2018 Elsevier Inc. All rights reserved.Plasma fibrinogen includes an alternatively spliced γ-chain...
AbstractThe regulated ability of integrin αIIbβ3 to bind fibrinogen plays a crucial role in platelet...
Platelets interact with multiple adhesion proteins during thrombogenesis, yet little is known about ...
Platelets interact with multiple adhesion proteins during thrombogenesis, yet little is known about ...
Upon vascular injury, platelets are crucial for thrombus formation and contraction, but do they dire...
Upon vascular injury, platelets are crucial for thrombus formation and contraction, but do they dire...
As platelets aggregate and activate at the site of vascular injury to stem bleeding, they are subjec...
Platelets play a major role in hemostasis and thrombosis, by binding to the underlying extracellular...
As platelets aggregate and activate at the site of vascular injury to stem bleeding, they are subjec...
AbstractWe have identified two distinct mechanisms initiating the adhesion of flowing platelets to t...
The influence of surface chemistry—substrates with controlled surface density of −OH groups—on fibro...
The influence of surface chemistry—substrates with controlled surface density of −OH groups—on fibro...