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Updated: Jun 2, 2026

Routine Screening Method for Microparticles in Platelet Transfusions
Published on: January 31, 2018
Microparticles (ectosomes) shed by stored human platelets downregulate macrophages and modify the development of
Salima Sadallah1, Ceylan Eken, Perrine J Martin
1Department of Biomedicine, University Hospital Basel, 4031 Basel, Switzerland. salima.sadallah@unibas.ch
Abstract:
Microparticles (MP) shed by platelets (PLT) during storage have procoagulant activities, but little is known about their properties to modify inflammation or immunity. In this study, we studied the capacity of MP present in PLT concentrates to alter the function of macrophages and dendritic cells (DC). The size of the purified MP was between 100 and 1000 nm, and they expressed phosphatidylserine; surface proteins of PLT (CD61, CD36, CD47), including complement inhibitors (CD55, CD59), but not CD63; and proteins acquired from plasma (C1q, C3 fragments, factor H). These characteristics suggest that the MP shed by PLT are formed by budding from the cell surface, corresponding to ectosomes. The purified PLT ectosomes (PLT-Ect) reduced the release of TNF-α and IL-10 by macrophages activated with LPS or zymosan A. In addition, PLT-Ect induced the immediate release of TGF-β from macrophages, a release that was not modified by LPS or zymosan A. Macrophages had a reduced TNF-α release even 24 h after their exposure to PLT-Ect, suggesting that PLT-Ect induced a modification of the differentiation of macrophages. Similarly, the conventional 6-d differentiation of monocytes to immature DC by IL-4 and GM-CSF was modified by the presence of PLT-Ect during the first 2 d. Immature DC expressed less HLA-DP DQ DR and CD80 and lost part of their phagocytic activity, and their LPS-induced maturation was downmodulated when exposed to PLT-Ect. These data indicate that PLT-Ect shed by stored PLT have intrinsic properties that modify macrophage and DC differentiation toward less reactive states.
Insights
Platelet microparticles (MPs) from stored platelets can dampen immune responses by altering macrophage and dendritic cell (DC) function, promoting less reactive immune cells.
Area of Science:
- Immunology
- Cell Biology
- Hematology
Background:
- Platelet microparticles (MPs) are released during storage and possess procoagulant activity.
- Their immunomodulatory properties and effects on immune cells like macrophages and dendritic cells (DCs) are not well understood.
Purpose of the Study:
- To investigate the capacity of MPs from platelet concentrates to alter macrophage and dendritic cell (DC) function.
- To characterize the properties of these MPs, identifying them as platelet ectosomes (PLT-Ect).
Main Methods:
- Purification and characterization of MPs shed by platelets (PLT-Ect).
- Assessing the effect of PLT-Ect on macrophage activation (LPS/zymosan A) and cytokine release (TNF-α, IL-10, TGF-β).
- Evaluating the impact of PLT-Ect on monocyte-derived dendritic cell (DC) differentiation and maturation.
Main Results:
- PLT-Ect reduced TNF-α and IL-10 release from activated macrophages and induced TGF-β release.
- Macrophages exposed to PLT-Ect showed reduced TNF-α release even after 24 hours, indicating altered differentiation.
- PLT-Ect modulated DC differentiation, leading to reduced expression of HLA-DP DQ DR and CD80, impaired phagocytic activity, and downmodulated LPS-induced maturation.
Conclusions:
- Platelet ectosomes (PLT-Ect) shed by stored platelets possess intrinsic properties that modulate immune cells.
- PLT-Ect induce differentiation of macrophages and dendritic cells (DCs) towards less reactive states, impacting immune responses.
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