Related Experiment Video
Updated: Jun 30, 2026

Investigating von Willebrand Factor Pathophysiology Using a Flow Chamber Model of von Willebrand Factor-platelet String Formation
Published on: August 14, 2017
Differential role of von Willebrand factor and P-selectin on microvascular thrombosis in endotoxemia
Kavita N Patel1, Said H Soubra2,3, Ricardo V Bellera1
1Department of Pediatrics, Baylor College of Medicine, Houston, TX 77030.
Objective:
Endotoxin (lipopolysaccharide [LPS]) enhances microvascular thrombosis in mouse cremaster venules. Because von Willebrand factor (vWF) and P-selectin are suggested to mediate LPS-induced platelet-microvessel interactions, we determined whether vWF and P-selectin contribute to microvascular thrombosis in endotoxemia.
Methods And Results:
A light/dye-induced thrombosis model was used in cremaster microvessels of saline or LPS-injected mice (wild-type, P-selectin-deficient, vWF-deficient, or littermate controls). In each strain except vWF-deficient mice, LPS enhanced thrombosis in venules, resulting in approximately 30% to 55% reduction in times to thrombotic occlusion. LPS had no effect on thrombosis in vWF-deficient mice, although these mice had similar systemic responses to LPS (tachycardia, thrombocytopenia, and plasma coagulation markers). vWF-deficient mice demonstrated prolonged times to thrombotic occlusion relative to littermates. LPS increased plasma vWF in each strain studied. While immunofluorescence in wild-type mice failed to detect LPS-induced differences in microvascular vWF expression, it revealed markedly higher vWF expression in venules relative to arterioles.
Conclusions:
vWF mediates light/dye-induced microvascular thrombosis and endotoxin-induced enhancement of thrombosis in mouse cremaster venules; P-selectin is not required for enhanced thrombosis in response to endotoxin. Enhanced vWF expression in venules relative to arterioles has potential implications for the differences in thrombotic responses among these microvessels.
Insights
Von Willebrand factor (vWF) mediates endotoxin-enhanced microvascular thrombosis in mouse venules. P-selectin is not required for this endotoxin effect, highlighting vWF
Area of Science:
- Vascular Biology
- Hemostasis and Thrombosis
- Immunology
Background:
- Endotoxin (lipopolysaccharide [LPS]) is known to enhance microvascular thrombosis.
- Platelet-microvessel interactions are implicated in LPS-induced thrombosis, with von Willebrand factor (vWF) and P-selectin as potential mediators.
Purpose of the Study:
- To determine the contribution of von Willebrand factor (vWF) and P-selectin to LPS-induced microvascular thrombosis in mouse cremaster venules.
Main Methods:
- A light/dye-induced thrombosis model was employed in mouse cremaster microvessels.
- Experiments were conducted on wild-type, P-selectin-deficient, and vWF-deficient mice, as well as littermate controls, following saline or LPS injection.
Main Results:
- LPS significantly enhanced venular thrombosis in all mouse strains except vWF-deficient mice, reducing occlusion time by 30-55%.
- vWF-deficient mice showed no enhanced thrombosis with LPS and had prolonged occlusion times compared to controls.
- LPS increased plasma vWF levels, and immunofluorescence revealed higher vWF expression in venules than arterioles.
Conclusions:
- Von Willebrand factor (vWF) is essential for both basal and LPS-enhanced microvascular thrombosis in mouse cremaster venules.
- P-selectin is not required for the enhanced thrombotic response to endotoxin.
- Differential vWF expression between venules and arterioles may explain variations in thrombotic responses.
More Related Videos
10:24In Vitro and In Vivo Model to Study Bacterial Adhesion to the Vessel Wall Under Flow Conditions
Published on: June 11, 2015
11:18Real-time Imaging of Heterotypic Platelet-neutrophil Interactions on the Activated Endothelium During Vascular Inflammation and Thrombus Formation in Live Mice
Published on: April 2, 2013
Related Concept Videos
Selectins
Intracellular Signaling Affects Focal Adhesions
Some...
Formation of the Platelet Plug
As the injured blood vessel contracts, endothelial cells undergo contraction, revealing collagen fibers in the basement membrane and underlying connective tissue. Furthermore, the plasma membrane of endothelial cells becomes adhesive, preparing the site for platelet adhesion. Platelets...
Acute Inflammation III: Local and Systemic Effects