Microparticles: Protagonists of a Novel Communication Network for Intercellular Information Exchange Formation, Fate, and Function of Platelet Microparticles Microparticles in Coagulation and Thrombosis Leukocyte-Derived Microparticles in Vascular Homeostasis Microparticles in Vascular Function and Atherothrombosis Microparticles in Angiogenesis: Therapeutic Potential

نویسندگان

  • Christian Weber
  • Sebastian F. Mause
چکیده

Microparticles represent a heterogeneous population of vesicles with a diameter of 100 to 1000 nm that are released by budding of the plasma membrane and express antigens specific of their parental cells. Although microparticle formation represents a physiological phenomenon, a multitude of pathologies are associated with a considerable increase in circulating microparticles, including inflammatory and autoimmune diseases, atherosclerosis, and malignancies. Microparticles display an broad spectrum of bioactive substances and receptors on their surface and harbor a concentrated set of cytokines, signaling proteins, mRNA, and microRNA. Recent studies provided evidence for the concept of microparticles as veritable vectors for the intercellular exchange of biological signals and information. Indeed, microparticles may transfer part of their components and content to selected target cells, thus mediating cell activation, phenotypic modification, and reprogramming of cell function. Because microparticles readily circulate in the vasculature, they may serve as shuttle modules and signaling transducers not only in their local environment but also at remarkable distance from their site of origin. Altogether, this transcellular delivery system may extend the confines of the limited transcriptome and proteome of recipient cells and establishes a communication network in which specific properties and information among cells can be efficiently shared. At least in same cases, the sequential steps of the transfer process underlie complex regulatory mechanisms, including selective sorting (“packaging”) of microparticle components and content, specificity of interactions with target cells determined by surface receptors, and ultimately finely tuned and signal-dependent release and delivery of microparticle content. (Circ Res. 2010;107:1047-1057.)

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Microparticles: Protagonists of a Novel Communication Network for Intercellular Information Exchange Formation, Fate, and Function of Platelet Microparticles Microparticles in Coagulation and Thrombosis Microparticles in Angiogenesis: Therapeutic Potential Microparticles in Vascular Function and Atherothrombosis Leukocyte-Derived Microparticles in Vascular Homeostasis

Leukocyte-derived microparticles (LMPs) may originate from neutrophils, monocytes/macrophages, and lymphocytes. They express markers from their parental cells and harbor membrane and cytoplasmic proteins as well as bioactive lipids implicated in a variety of mechanisms, maintaining or disrupting vascular homeostasis. When they carry tissue factor or coagulation inhibitors, they participate in h...

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Microparticles in Hemostasis and Thrombosis Microparticles in Angiogenesis: Therapeutic Potential Formation, Fate, and Function of Platelet Microparticles Microparticles in Vascular Function and Atherothrombosis Leukocyte-Derived Microparticles in Vascular Homeostasis

Blood contains microparticles (MPs) derived from a variety of cell types, including platelets, monocytes, and endothelial cells. In addition, tumors release MPs into the circulation. MPs are formed from membrane blebs that are released from the cell surface by proteolytic cleavage of the cytoskeleton. All MPs are procoagulant because they provide a membrane surface for the assembly of component...

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Microparticles in Angiogenesis: Therapeutic Potential Formation, Fate, and Function of Platelet Microparticles Microparticles in Vascular Function and Atherothrombosis Leukocyte-Derived Microparticles in Vascular Homeostasis

Considered during the past decades as cell dust, microparticles are now deemed true biomarkers and vectors of biological information between cells. Depending on their origin, the composition of microparticles varies and the subsequent message transported by them, such as proteins, mRNA, or miRNA, can differ. Recent studies have described microparticles as “cargos” of deleterious information in ...

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An Overview on Platelet-derived Microparticles in Platelet Concentrates: blood collection, method preparation and storage

Preparations of platelet concentrates (PCs) that are stored under blood bank conditions and used for transfusion purposes, appear to be enriched in platelet derived-microparticles (PMPs) with high coagulant activity that may change platelet efficacy and safety issues. High shear stress could cause shedding of PMPs from the platelet plasma membrane, platelet aggregation, and activation of the co...

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Evaluation of microRNAs; mir223, mir222 and mir92a levels in the Platelet-derived microparticles in the Platelet concentrates produced by Platelet Rich Plasma method during storage

Abstract Background and Objectives Platelets release microparticles containing cellular components, including microRNAs, during storage. Assessment of these microRNAs is one of the markers for evaluation of platelet storage lesions. The aim of the present study was to evaluate the level of changes in the expression of mir-223, mir-92a and mir-222 during storage in platelets prepared by platele...

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تاریخ انتشار 2010