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Published on: November 9, 2018
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.
Abstract:
Microparticles or microvesicles (MPs/MVs) are sub-cellular vesicles with a growing number of known biological functions. Microvesicles from a variety of parent cells within the vascular system increase in numerous pathological states. Red blood cell-derived MVs (RMVs) are relatively less studied than other types of circulating MVs despite red blood cells (RBCs) being the most abundant intravascular cell. This may be in part due the echoes of past misconceptions that RBCs were merely floating anucleate bags of hemoglobin rather than dynamic and responsive cells. The initial aim of this study was to maximize the concentration of RMVs derived from various blood or blood products by focusing on the optimal isolation conditions without creating more MVs from artificial manipulation. We found that allowing RBCs to sediment overnight resulted in a continuum in size of RBC membrane-containing fragments or vesicles extending beyond the 1 µm size limit suggested by many as the maximal size of an MV. Additionally, dilution and centrifugation factors were studied that altered the resultant MV population concentration. The heterogeneous size of RMVs was confirmed in mice models of hemolytic anemia. This methodological finding establishes a new paradigm in that it blurs the line between RBC, fragment, and RMV as well as suggests that the concentration of circulating RMVs may be widely underestimated given that centrifugation removes the majority of such RBC-derived membrane-containing particles.
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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