Microparticles (MPs) are membrane vesicles released during cell activation and apoptosis. We have previously shown that MPs from apoptotic T cells induce endothelial dysfunction, but the mechanisms implicated are not completely elucidated. In this study, we dissect the pathways involved in endothelial cells with respect to both NO and reactive oxygen species (ROS). Incubation of endothelial cells with MPs decreased NO production that was associated with overexpression and phosphorylation of endothelial NO synthase (eNOS). Also, MPs enhanced expression of caveolin-1 and decreased its phosphorylation. Microparticles enhanced ROS by a mechanism sensitive to xanthine oxidase and P-IκBα inhibitors. PI3K inhibition reduced the effects of MPs on e...
Microparticles (MPs) are small fragments generated from the plasma membrane after cell stimulation. ...
AbstractPhysiological levels of nitric oxide (NO) regulate vascular tone and protect the microvascul...
Microvesicles are plasma membrane-derived fragments released from various cell types during activati...
Microparticles (MPs) are membrane vesicles released during cell activation and apoptosis. We have pr...
During cell activation or apoptosis, cells release vesicles, also called microparticles (MPs) from t...
Microparticles (MPs), small membrane-derived fragments shed from various cell types during activatio...
Microparticles are membrane vesicles with procoagulant and proinflammatory properties released durin...
Oxidative stress plays an important role in the initial occurrence of cardiovascular diseases. Previ...
Microvesicles (MVs) are small membrane-derived fragments shed from various cell types during activat...
Endothelial microparticles are effectors of endothelial damage; however mechanisms involved are uncl...
Microparticles (MPs) are small vesicles released from the plasma membrane of activated and/or apopto...
Aims: Circulating microparticles (MPs) from metabolic syndrome patients and those generated from ap...
Recent studies have demonstrated that microparticles (MPs) generated from T lymphocytes undergoing b...
Endothelial microparticles are effectors of endothelial damage; however mechanisms involved are uncl...
Microparticles are membrane vesicles that are released during cell activation and apoptosis. Elevate...
Microparticles (MPs) are small fragments generated from the plasma membrane after cell stimulation. ...
AbstractPhysiological levels of nitric oxide (NO) regulate vascular tone and protect the microvascul...
Microvesicles are plasma membrane-derived fragments released from various cell types during activati...
Microparticles (MPs) are membrane vesicles released during cell activation and apoptosis. We have pr...
During cell activation or apoptosis, cells release vesicles, also called microparticles (MPs) from t...
Microparticles (MPs), small membrane-derived fragments shed from various cell types during activatio...
Microparticles are membrane vesicles with procoagulant and proinflammatory properties released durin...
Oxidative stress plays an important role in the initial occurrence of cardiovascular diseases. Previ...
Microvesicles (MVs) are small membrane-derived fragments shed from various cell types during activat...
Endothelial microparticles are effectors of endothelial damage; however mechanisms involved are uncl...
Microparticles (MPs) are small vesicles released from the plasma membrane of activated and/or apopto...
Aims: Circulating microparticles (MPs) from metabolic syndrome patients and those generated from ap...
Recent studies have demonstrated that microparticles (MPs) generated from T lymphocytes undergoing b...
Endothelial microparticles are effectors of endothelial damage; however mechanisms involved are uncl...
Microparticles are membrane vesicles that are released during cell activation and apoptosis. Elevate...
Microparticles (MPs) are small fragments generated from the plasma membrane after cell stimulation. ...
AbstractPhysiological levels of nitric oxide (NO) regulate vascular tone and protect the microvascul...
Microvesicles are plasma membrane-derived fragments released from various cell types during activati...