Published November 1987 | Version v1
Journal article

Platelet-collagen adhesion enhances platelet aggregation induced by binding of VWF to platelets

  • 1. State Univ. of New York, Buffalo (USA)
  • 2. Johns Hopkins Univ. School of Medicine, Baltimore, MD (USA)

Description

Ristocetin-induced platelet aggregation (RIPA) was evaluated in the presence of platelet-collagen adhesion. RIPA of normal donor platelet-rich plasma (PRP) demonstrated a primary wave of aggregation mediated by the binding of von Willebrand factor (VWF) to platelets and a secondary aggregation wave, due to a platelet-release reaction, initiated by VWF-platelet binding and inhibitable by acetylsalicylic acid (ASA). An enhanced RIPA was observed in PRP samples to which collagen had been previously added. These subthreshold concentrations of collagen, which by themselves were insufficient to induce aggregation, caused measurable platelet-collagen adhesion. Subthreshold collagen did not cause microplatelet aggregation, platelet release of [3H]serotonin, or alter the dose-responsive binding of 125I-labeled VWF to platelets, which occurred with increasing ristocetin concentrations. However, ASA inhibition of the platelet release reaction prevented collagen-enhanced RIPA. These results demonstrate that platelet-collagen adhesion altered the platelet-release reaction induced by the binding of VWF to platelets causing a platelet-release reaction at a level of VWF-platelet binding not normally initiating a secondary aggregation. These findings suggest that platelet-collagen adhesion enhances platelet function mediated by VWF

Additional details

Publishing Information

Journal Title
American Journal of Physiology
Journal Volume
253
Journal Issue
5
Series
Am. J. Physiol.
Journal Page Range
H1208-H1214
ISSN
0002-9513
CODEN
AJPHA