Centrifugation Removes a Population of Large Vesicles, or "Macroparticles," Intermediate in Size to RBCs and

Michael C Larson1, Neil Hogg2, Cheryl A Hillery3

  • 1Banner University Medical Center-Tucson, University of Arizona, Tucson, AZ 85724, USA.

Insights

Red blood cell-derived microvesicles (RMVs) are often underestimated. Optimal isolation reveals a continuum of RBC membrane fragments, blurring lines and suggesting higher circulating concentrations than previously thought.

Area of Science:

  • Cell Biology
  • Hematology
  • Biochemistry

Background:

  • Microparticles/microvesicles (MPs/MVs) are crucial sub-cellular vesicles with diverse biological roles.
  • Circulating MVs increase in various pathological conditions, yet red blood cell-derived MVs (RMVs) remain understudied.
  • Previous misconceptions viewed red blood cells (RBCs) as passive, neglecting their dynamic nature and MV production.

Purpose of the Study:

  • To optimize the isolation of RMVs from blood products without artificial induction.
  • To investigate factors influencing RMV concentration and size distribution.
  • To re-evaluate the understanding of RMVs and their prevalence in circulation.

Main Methods:

  • RBCs were allowed to sediment overnight to isolate RMVs.
  • Dilution and centrifugation parameters were systematically varied.
  • RMV size heterogeneity was assessed, including in murine hemolytic anemia models.

Main Results:

  • Overnight sedimentation yielded a continuum of RBC membrane fragments/vesicles exceeding 1 µm.
  • Dilution and centrifugation significantly affected the concentration of the isolated MV population.
  • RMVs exhibit heterogeneous sizes, confirmed in animal models.

Conclusions:

  • The study redefines the size boundary between RBCs, fragments, and RMVs.
  • Standard isolation methods may significantly underestimate circulating RMV concentrations.
  • A new paradigm for RMV isolation and quantification is proposed, highlighting their potential underestimation.

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