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Updated: Mar 8, 2026

Routine Screening Method for Microparticles in Platelet Transfusions
Published on: January 31, 2018
Microparticle detection to guide platelet management for the reduction of platelet refractoriness in children - A
Peter Kanzler1, Andrew Mahoney1, Gerda Leitner2
1LightIntegra Technology Inc., Vancouver, BC, Canada.
Abstract:
Microparticles have been shown to shed from a variety of viable cells as a consequence of inflammatory processes, activation or physical stress. Seventy to 90% of circulating microparticles are thought to be platelet-derived. The content of microparticles in blood collected from normal blood donors is highly variable and transfers into the final blood component. Elevated microparticle content (MPC) in donor blood might indicate an asymptomatic clinical condition of the donor which might affect the transfusion recipient, particularly pediatric patients. ThromboLUX is a new technology designed to routinely test biological samples for microparticle content. We compared MPC in platelet-rich plasma (PRP) of apheresis donors and the corresponding INTERCEPT-treated apheresis products (N=24). The MPCs in donor and product samples were correlated (r=0.74, P<0.001). Microparticles were significantly reduced after plasma replacement and INTERCEPT treatment. These findings are supported by phase contrast microscopy. Platelet transfusions given to patients with fever or systemic inflammation are less efficacious. In addition, transfusing heterogeneous platelets - concentrates with high MPC and activated platelets - to patients whose immune systems are activated might tip them over a threshold and cause platelet refractoriness. Restricting prophylactic platelet transfusions to homogeneous products - concentrates with resting platelets and therefore low MPC - may reduce the risk of refractoriness in cancer patients, especially children with immature immunity. To test this hypothesis we introduce an evaluation protocol for platelet management, i.e., keeping a split inventory of homogeneous and heterogeneous platelets, and using only homogeneous platelets for prophylaxis as a strategy to reduce refractoriness.
Insights
Microparticle content (MPC) in platelet products can be reduced using INTERCEPT treatment. Lowering MPC in transfused platelets may prevent refractoriness in immunocompromised patients, especially children.
Area of Science:
- Hematology
- Transfusion Medicine
- Cellular Biology
Background:
- Microparticles (MPs) shed from activated cells, with 70-90% originating from platelets.
- Variable MP content in donor blood transfers to transfusion products, potentially impacting recipients.
- Elevated MP content may indicate asymptomatic donor conditions affecting transfusion safety.
Purpose of the Study:
- To evaluate the Microparticle Content (MPC) in platelet-rich plasma (PRP) and INTERCEPT-treated apheresis products.
- To assess the efficacy of INTERCEPT treatment and plasma replacement in reducing MPC.
- To propose a platelet management strategy using low-MPC products for prophylaxis to reduce refractoriness.
Main Methods:
- Comparison of MPC in apheresis donor PRP and INTERCEPT-treated products (N=24).
- Correlation analysis of MPC between donor and product samples.
- Phase contrast microscopy to support findings on microparticle reduction.
Main Results:
- A significant correlation (r=0.74, P<0.001) was found between MPC in donor and product samples.
- Plasma replacement and INTERCEPT treatment significantly reduced microparticle levels.
- Phase contrast microscopy confirmed microparticle reduction post-treatment.
Conclusions:
- INTERCEPT treatment effectively reduces microparticle content in platelet products.
- Using low-MPC, homogeneous platelet products for prophylaxis may reduce transfusion refractoriness.
- This strategy is particularly relevant for immunocompromised patients, including pediatric cancer patients.
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