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.

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.