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A Microfluidic Flow Chamber Model for Platelet Transfusion and Hemostasis Measures Platelet Deposition and Fibrin Formation in Real-time
Published on: February 14, 2017
Fibrinogen internalization by ADP-stimulated blood platelets. Ultrastructural studies with fibrinogen-colloidal gold
N Belitser1, M Anischuk, Y Veklich
1Institute of Biochemistry, Academy of Sciences of the Ukraine, Kiev.
Abstract:
Interaction of gel filtered, ADP-stimulated human platelets with low (0.05 mg/ml) and high (1 mg/ml) fibrinogen (Fg) was examined by transmission electron microscopy. To visualize exogenous Fg in a course of its interaction with stimulated platelets, Fg coupled to 18-nm colloidal gold (Fg-Au) was employed. In the presence of either Fg or Fg-Au, rapid changes of platelets morphology indicative of resting to activated state transition, were observed. Without external ligands, stimulated platelet suspensions resemble rather control (untreated) samples. Using Fg-Au, it has been found that initial binding of gold labels to platelet surfaces is immediately followed by gold accumulation in plasmalemma pits subjected to further internalization. Serial sections proved that at 1 min, some of the labeled endocytic structures are already isolated in the platelet cytoplasm. After prolonged (20 min) incubations, different platelet subfractions have been found. Many single or loosely aggregated platelets with little or no surface labeling contained abundant stores of internal labels. In these cells, Fg-Au is localized in vacuole-like and/or granule-like structures. Some post-stimulated (discoidal) platelets are likely to release Fg-Au previously internalized. In the centers of platelet aggregates concentrated labels filled intercellular spaces and voluminous intraplatelet cavities, either open or occluded. These results indicate on different ultimate fates of exogenous Fg processed by the ADP-stimulated platelets. The data obtained suggest also that after initial binding, exogenous Fg may be implicated not only in aggregation, but in activation-related cellular responses as well.
Insights
Platelets rapidly internalize fibrinogen (Fg) after activation, storing it in internal structures or releasing it. This process suggests fibrinogen plays roles beyond aggregation in platelet activation.
Area of Science:
- Cell Biology
- Hematology
- Biochemistry
Background:
- Platelets are crucial for hemostasis and thrombosis.
- Fibrinogen (Fg) is a key protein involved in platelet aggregation.
Purpose of the Study:
- To investigate the interaction of human platelets with fibrinogen.
- To visualize the uptake and intracellular fate of exogenous fibrinogen in activated platelets.
Main Methods:
- Transmission electron microscopy (TEM) was used to examine platelet morphology.
- Fibrinogen coupled to colloidal gold (Fg-Au) was employed to track exogenous Fg.
- ADP-stimulated human platelets were incubated with varying concentrations of Fg or Fg-Au.
Main Results:
- Activated platelets showed rapid internalization of Fg-Au via plasmalemma pits.
- Internalized Fg-Au was found in vacuole-like and granule-like structures within platelets.
- Some platelets released internalized Fg-Au, while aggregates showed Fg-Au in intercellular spaces.
Conclusions:
- Exogenous fibrinogen has diverse intracellular fates following platelet activation.
- Fibrinogen may be involved in platelet activation-related cellular responses beyond aggregation.
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