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Cellular microparticles: new players in the field of vascular disease?
M Diamant1, M E Tushuizen, A Sturk
1Department of Endocrinology/Diabetes Centre, VU University Medical Centre, Amsterdam, The Netherlands. m.diamant@vumc.nl
Abstract:
Microparticles are small membrane vesicles that are released from cells upon activation or during apoptosis. Cellular microparticles in body fluids constitute a heterogeneous population, differing in cellular origin, numbers, size, antigenic composition and functional properties. Microparticles support coagulation by exposure of negatively charged phospholipids and sometimes tissue factor, the initiator of coagulation in vivo. Microparticles may transfer bioactive molecules to other cells or microparticles, thereby stimulating cells to produce cytokines, cell-adhesion molecules, growth factors and tissue factor, and modulate endothelial functions. Microparticles derived from various cells, most notably platelets but also leucocytes, lymphocytes, erythrocytes and endothelial cells, are present in the circulation of healthy subjects. Rare hereditary syndromes with disturbances in membrane vesiculation leading to a decreased numbers of microparticles clinically present with a bleeding tendency. In contrast, elevated numbers of microparticles are encountered in patients with a great variety of diseases with vascular involvement and hypercoagulability, including disseminated intravascular coagulation, acute coronary syndromes, peripheral arterial disease, diabetes mellitus and systemic inflammatory disease. Finally, microparticles are a major component of human atherosclerotic plaques. In view of their functional properties, cell-derived microparticles may be an important intermediate in the cascade of cellular and plasmatic dysfunctions underlying the process of atherogenesis.
Insights
Cellular microparticles, small vesicles from cells, play roles in blood clotting and cell signaling. Altered levels are linked to bleeding disorders and vascular diseases like atherosclerosis.
Area of Science:
- Biochemistry
- Cell Biology
- Hematology
Background:
- Cellular microparticles are small membrane vesicles released from various cells during activation or apoptosis.
- They are a heterogeneous population with diverse origins, compositions, and functions.
- Microparticles contribute to coagulation and intercellular communication through bioactive molecule transfer.
Purpose of the Study:
- To review the role of cellular microparticles in physiological and pathological processes.
- To highlight their involvement in coagulation, inflammation, and atherogenesis.
Main Methods:
- Literature review of studies on cellular microparticles.
- Analysis of microparticle composition, function, and clinical relevance.
Main Results:
- Microparticles promote coagulation via phospholipids and tissue factor.
- They modulate endothelial functions and stimulate cytokine production.
- Decreased microparticle numbers are associated with bleeding, while elevated levels correlate with vascular diseases and hypercoagulability.
- Microparticles are significant components of atherosclerotic plaques.
Conclusions:
- Cellular microparticles are crucial mediators in hemostasis and thrombosis.
- Their levels and functions are indicative of various vascular pathologies, including atherosclerosis.
- Microparticles represent a potential diagnostic and therapeutic target in cardiovascular diseases.
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