Age- and sex-specific differences in blood-borne microvesicles from apparently healthy humans

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Abstract

Background: Sex differences in incidence of cardiovascular disease may reflect age-associated intravascular cellular activation resulting in shedding of cell membrane-derived bioactive microvesicles (MV or microparticles) into the blood. Concentrations of cell-specific MV in blood have the potential to be a diagnostic/prognostic marker of pathology, but ranges of MV must first be established in healthy individuals. This study identified cellular origin of blood-borne MV >0.2 μm in blood of apparently healthy women and men aged from 20-70 years. Methods: Venous blood from apparently healthy participants in the Mayo Clinic Biobank was collected into tubes containing protease inhibitors as the anticoagulant. MV were isolated by standardized differential centrifugation and characterized by digital flow cytometer. Each cellular origin of MV was verified by two different antibodies with strong correlation between the two distinct antibodies (e.g., for platelet-derived MV, r 2∈=∈0.97). Results: MV derived from platelets were the most abundant type of MV in blood from women and men in all age groups. Total numbers of phosphatidylserine, P-selectin, and platelet- and endothelium-derived MV were significantly (P∈

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Gustafson, C. M., Shepherd, A. J., Miller, V. M., & Jayachandran, M. (2015). Age- and sex-specific differences in blood-borne microvesicles from apparently healthy humans. Biology of Sex Differences, 6(1). https://doi.org/10.1186/s13293-015-0028-8

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