Search results for "Membrane vesicle"

showing 10 items of 33 documents

Microvesicles shed by oligodendroglioma cells and rheumatoid synovial fibroblasts contain aggrecanase activity

2012

Membrane microvesicle shedding is an active process and occurs in viable cells with no signs of apoptosis or necrosis. We report here that microvesicles shed by oligodendroglioma cells contain an ‘aggrecanase’ activity, cleaving aggrecan at sites previously identified as targets for adamalysin metalloproteinases with disintegrin and thrombospondin domains (ADAMTSs). Degradation was inhibited by EDTA, the metalloproteinase inhibitor GM6001 and by tissue inhibitor of metalloproteinases (TIMP)-3, but not by TIMP-1 or TIMP-2. This inhibitor profile indicates that the shed microvesicles contain aggrecanolytic ADAMTS(s) or related TIMP-3-sensitive metalloproteinase(s). The oligodendroglioma cells…

OligodendrogliomaMembrane vesicleRA rheumatoid arthritisADAMTSMatrix metalloproteinaseCell Physiological PhenomenaAdamalysin03 medical and health sciences0302 clinical medicineSettore BIO/10 - BiochimicaEndopeptidasesHumansAggrecansADAM adamalysinADAMTS a disintegrin and metalloproteinase with thrombospondin motifsMolecular BiologyMetalloproteinase030304 developmental biologyAggrecanaseTissue Inhibitor of Metalloproteinase-3MEF mouse embryonic fibroblasts0303 health sciencesMetalloproteinaseChemistryBrief ReportMVs microvesiclesADAMTSMicrovesicleCytoplasmic VesiclesDipeptidesFibroblastsMolecular biologyRecombinant ProteinsMicrovesiclesECM extracellular matrixMembrane vesiclesCell biologyEnzyme ActivationMMP matrix metalloproteinaseADAM ProteinsADAMTS4030220 oncology & carcinogenesisProteolysisADAMTS5 ProteinRheumatic FeverTIMP tissue inhibitor of metalloproteinaseAggrecan
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Shed membrane vesicles and selective localization of gelatinases and MMP-9/TIMP-1 complexes.

1999

OrganellesGelatinasesTissue Inhibitor of Metalloproteinase-1ChemistryGeneral NeuroscienceBlotting WesternCell MembraneBreast NeoplasmsMatrix metalloproteinaseGeneral Biochemistry Genetics and Molecular BiologyCell biologyHistory and Philosophy of ScienceMatrix Metalloproteinase 9GelatinasesTumor Cells CulturedHumansMembrane vesicleFemaleCollagenCollagenasesProtein BindingAnnals of the New York Academy of Sciences
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Extracellular membrane vesicles as a mechanism of cell-to-cell communication: advantages and disadvantages.

2014

Microvesicles represent a newly identified mechanism of intercellular communication. Two different types of microvesicles have been identified: membrane-derived vesicles (EVs) and exosomes. EVs originate by direct budding from the plasma membrane, while exosomes arise from ectocytosis of multivesicular bodies. Recent attention has focused on the capacity of EVs to alter the phenotype of neighboring cells to make them resemble EV-producing cells. Stem cells are an abundant source of EVs, and the interaction between stem cells and the microenvironment (i.e., stem cell niche) plays a critical role in determining stem cell phenotype. The stem cell niche hypothesis predicts that stem cell number…

Physiologyregenerative medicineContext (language use)Cell CommunicationBiologyExosomesRegenerative medicineAnimalsHumansRegenerationRNA MessengerProgenitor cellStem Cell NicheTransport VesiclesCell ProliferationStem CellsCell MembraneCell DifferentiationCell BiologyExtracellular vesicleCell cycleMicrovesiclesCell biologystem cellMicroRNAsPhenotypeextracellular vesicleStem cellmembrane vesicleIntracellularSignal TransductionAmerican journal of physiology. Cell physiology
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Biogenesis and roles of Lacticaseibacillus casei BL23 membrane vesicles

2023

Gram-positive bacteria of the species Lacticaseibacillus casei (formerly known as Lactobacillus casei) are fermentative bacilli found in dairy products that are known for their anti-inflammatory properties and beneficial effects against pathogens. Like all living organisms, L. casei produces nanostructures of 20 to 400 nm in diameter bounded by a lipid membrane called membrane vesicles (MVs). MVs have been shown to contain various cellular constituents and exert multiple functions. However, despite the growing interest in Gram-positive MVs over the past 10 years, the mechanisms of biogenesis and the roles played by these vesicles remain poorly characterized. In this context, the objectives …

ProbioticsProphagesBiofilmsVesicules membranairesProbiotiques[SDV.MP] Life Sciences [q-bio]/Microbiology and ParasitologyMembrane vesicles
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Biological properties of extracellular vesicles and their physiological functions

2015

The authors wish to thank Dr R Simpson and Dr D Taylor for critical reading of the manuscript and acknowledge the Horizon 2020 European Cooperation in Science and Technology programme and its support of our European Network on Microvesicles and Exosomes in Health & Disease (ME-HaD; BM1202 www.cost.eu/COST_Actions/bmbs/Actions/BM1202). In the past decade, extracellular vesicles (EVs) have been recognized as potent vehicles of intercellular communication, both in prokaryotes and eukaryotes. This is due to their capacity to transfer proteins, lipids and nucleic acids, thereby influencing various physiological and pathological functions of both recipient and parent cells. While intensive invest…

ProteomicsCellular distributionMATURE DENDRITIC CELLSReviewReview ArticleUrineEmbryo developmentMonocyteProtein processingVascular biologyFecesVesícules seminalsSYNCYTIOTROPHOBLAST MICROVILLOUS MEMBRANESCell selectionPregnancyT lymphocyteBileCELL-DERIVED EXOSOMESBiogenesisLung lavageUterus fluidInnate immunityMale genital systemlcsh:CytologyMicrovesicleOUTER-MEMBRANE VESICLESBlood clottingprokaryoteEukaryotaExtracellular vesicleRNA analysisCell biologyBloodCerebrospinal fluidLiver metabolismmicrovesicleMorphogenHumanNervous systemCell signalingBreast milkNatural killer cellFisiologiaExtracellular vesiclesExosomelcsh:QH573-671SalivaBiologyBiology and Life SciencesDNAPlantRNA transportCell functionMacrophageMolecular biologyPhysiologyMedizinProteomicsFACTOR PATHWAY INHIBITOReukaryoteProtein glycosylationExtracellular spaceTissue repairEspai extracel·lularReticulocyteSeminal plasmaMesenchymal stem cellAntigen presenting cellSeminal vesiclesNose mucusBiofilmNeutrophilMicroRNAPLANT-MICROBE INTERACTIONSLipidAmnion fluidProkaryotamicroparticleCell interactionCell transporteukaryote exosome extracellular vesicle microparticle microvesicle physiology prokaryoteBone mineralizationMicroorganismHistologyAdaptive immunityMembrane vesicleComputational biologyMembrane receptorBiologyStressCell communicationMast cellMESENCHYMAL STEM-CELLSHUMAN ENDOTHELIAL-CELLSexosomeCytokineSynovial fluidCell BiologyNonhumanIMMUNE-MODULATORY FEATURESReview articleDNA contentphysiologyRNAINTESTINAL EPITHELIAL-CELLSextracellular vesicleBody fluidLectinBiogenesis
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Membrane vesicles containing matrix metalloproteinase-9 and fibroblast growth factor-2 are released into the extracellular space from mouse mesoangio…

2010

Certain proteins, including fibroblast growth factor-2 (FGF-2) and matrix metalloproteinase-9 (MMP-9), have proved very effective in increasing the efficacy of mesoangioblast stem cell therapy in repairing damaged tissue. We provide the first evidence that mouse mesoangioblast stem cells release FGF-2 and MMP-9 in their active form through the production of membrane vesicles. These vesicles are produced and turned over continuously, but are stable for some time in the extracellular milieu. Mesoangioblasts shed membrane vesicles even under oxygen tensions that are lower than those typically used for cell culture and more like those of mouse tissues. These findings suggest that mesoangioblast…

ProteomicsTime FactorsPhysiologyClinical BiochemistryBiologyFibroblast growth factorCell LineMiceMembrane MicrodomainsTubulinParacrine CommunicationmedicineExtracellularAnimalsSecretionSettore BIO/06 - Anatomia Comparata E CitologiaFibroblastCytoskeletonMembrane vesicles MMP9 FGF2 mouse mesoangioblastMesoangioblastSecretory VesiclesVesicleBiological TransportMesenchymal Stem CellsCell BiologyCell biologyOxygenmedicine.anatomical_structureMatrix Metalloproteinase 9Cell cultureFibroblast Growth Factor 2Stem cellExtracellular Space
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Mouse mesoangioblasts release Hsp70 in a controlled manner through membrane vesicle shedding

2009

Mesoangioblaststs (Mabs) are mesodermal stem cells associated with vessels which can differentiate into different mesoderm cell types. They have the property to cross endothelial barrier and when injected into circulation they localize into damaged tissues. A6 cells, a clone of mouse Mabs, express Hsp70 protein in physiological conditions and this synthesis may be required to answer to several intra- and/or extra-cellular needs. It was found that Hsp70 may be released outside from several type of cells, but its role remains still undefined. In order to clarify the reason of Hsp70 constitutive expression, we prepared several A6 clones with different levels of Hsp70 expression by stable RNA i…

Settore BIO/06 - Anatomia Comparata E CitologiaMesoangioblasts Hsp70 membrane vesicles
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Paracrine effect of membrane vesicles released by mouse mesoangioblast stem cells on non correlated cell types

2016

Introduction Mouse mesoangioblasts are vessel-associated multipotent progenitor stem cells, which are able to differentiate into different mesodermal cell types. In our previous paper we have demonstrated that these cells are able to shed in the extracellular environment membrane vesicles (EV), which contain both structural proteins and biological factors such as FGF2 and the two gelatinases MMP2/9. EV represent an important mediator of cell-to-cell communication and are involved in both autocrine and paracrine signalling. Interestingly, there is a bidirectional signalling exchange between stem cell EV and damaged cells. In particular, EV from injured cells can reprogram stem cells to acqui…

Stem cells mesoangioblasts membrane vesicles migration. macrophages endothelial cells.
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Streptomyces coelicolor membrane vesicles: many messages to be decoded

2020

Streptomyces coelicolorMembrane VesiclesSettore CHIM/06 - Chimica OrganicaSettore BIO/19 - Microbiologia Generale
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Extracellular vesicles in airway homeostasis and pathophysiology

2021

The epithelial–mesenchymal trophic unit (EMTU) is a morphofunctional entity involved in the maintenance of the homeostasis of airways as well as in the pathogenesis of several diseases, including asthma and chronic obstructive pulmonary disease (COPD). The “muco-microbiotic layer” (MML) is the innermost layer of airways made by microbiota elements (bacteria, viruses, archaea and fungi) and the surrounding mucous matrix. The MML homeostasis is also crucial for maintaining the healthy status of organs and its alteration is at the basis of airway disorders. Nanovesicles produced by EMTU and MML elements are probably the most important tool of communication among the different cell types, inclu…

TechnologyCell typenanovesiclesQH301-705.5QC1-999Asthma Chronic obstructive pulmonary diseaseCOPDEpithelial–mesenchymal trophic unitExosomesMicrobiota Muco-microbiotic layer nanovesicles Outer membrane vesicles.Biologychronic obstructive pulmonary diseasePathogenesismedicineCOPDGeneral Materials ScienceBiology (General)QD1-999InstrumentationAsthmaFluid Flow and Transfer ProcessesCOPDSettore BIO/16 - Anatomia UmanaTPhysicsProcess Chemistry and TechnologyGeneral EngineeringasthmaEngineering (General). Civil engineering (General)medicine.diseasemuco-microbiotic layerMicrovesiclesPathophysiologyrespiratory tract diseasesComputer Science ApplicationsChemistryepithelial–mesenchymal trophic unitImmunologyTA1-2040AirwayHomeostasis
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