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Platelet microvesicles adhere to subendothelium and promote adhesion of platelets
M R Owens1, S Holme, S Cardinali
1American Red Cross Blood Services, Mid-Atlantic Region, Norfolk, Virginia.
Abstract:
A role in hemostasis has been suggested for platelet membrane microvesicles (mv). The objectives of the studies reported here include functional analysis of platelet mv in models developed for study of platelet adhesion, as well as investigation of possible interactions between mv and intact platelets in these same adhesion models. Microvesicles were prepared from washed platelet concentrates by repeated freezing and thawing. Adhesion to subendothelium was measured quantitatively by radiolabelling mv with 111-In, and morphologically by scanning electron microscopy. Platelet mv adhered to subendothelium quantitatively over time. Using a modified Baumgartner chamber, we found adhesion of mv to subendothelium significantly increased with increasing shear rates. With this same model we found that prior exposure of subendothelium to mv greatly increased subsequent adhesion of platelets to the same everted vessel, compared to platelet adhesion in the absence of mv. All of these experiments were conducted with mv suspended in ACD/saline, indicating that plasma components are not essential for adhesion of mv. Our studies show that platelet mv adhere to subendothelium in much the same way as do platelets, and support the concept of a hemostatic role for mv in that they appear to increase platelet adhesion.
Insights
Platelet membrane microvesicles (mv) adhere to subendothelium, similar to platelets. These microvesicles enhance subsequent platelet adhesion, suggesting a role in hemostasis.
Area of Science:
- Hematology
- Biomedical Engineering
Background:
- Platelet membrane microvesicles (mv) are implicated in hemostasis.
- Understanding the functional role of mv in platelet adhesion is crucial.
Purpose of the Study:
- To functionally analyze platelet mv in platelet adhesion models.
- To investigate interactions between mv and intact platelets during adhesion.
Main Methods:
- Platelet mv were isolated from platelet concentrates via freezing and thawing.
- Adhesion to subendothelium was quantified using 111-In radiolabelling and scanning electron microscopy.
- A modified Baumgartner chamber was used to assess adhesion under varying shear rates.
Main Results:
- Platelet mv demonstrated quantitative adhesion to subendothelium over time.
- mv adhesion increased significantly with higher shear rates.
- Pre-exposure of subendothelium to mv enhanced subsequent platelet adhesion.
Conclusions:
- Platelet mv adhere to subendothelium similarly to platelets.
- mv appear to play a role in hemostasis by promoting platelet adhesion.
- Plasma components are not essential for mv adhesion to subendothelium.