Search results for "EXTRACELLULAR VESICLES"

showing 10 items of 206 documents

Toxic effects on astrocytes of extracellular vesicles from CSF of multiple sclerosis patients: a pilot in vitro study.

2020

Multiple sclerosis (MS) is an autoimmune and degenerative disorder of the central nervous system (CNS) that causes a progressive loss of motor and cognitive perfor-mances. Moreover, since the earlier phases, axonal loss as well as neuronal degener-ation and a failure of oligodendrocytes to promote myelin repair have been demon-strated. In previous studies, it has been shown that the treatment of rat neuronal primary cultures with serum from MS patients can be toxic for neurons. Here we report a pilot investigation showing that CSF from patients contains extracellular vesicles (EVs) able to induce cell death in rat cultured astrocytes. Although these data are still preliminary, they suggest …

Programmed cell deathPathologymedicine.medical_specialtyMultiple SclerosisDegenerative DisorderCentral nervous systemAxonal lossExtracellular vesiclesPathology and Forensic MedicineMyelinExtracellular VesiclesSettore BIO/10 - BiochimicamedicineAnimalsHumansSettore BIO/06 - Anatomia Comparata E CitologiaNeuronsbusiness.industryMultiple sclerosisRGeneral Medicinemedicine.diseaseRatsmedicine.anatomical_structureAstrocytesToxicityMedicineSettore MED/26 - NeurologiabusinessBiomarkersPolish journal of pathology : official journal of the Polish Society of Pathologists
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Proteomic analysis of extracellular vesicles secreted by primary human epithelial endometrial cells reveals key proteins related to embryo implantati…

2022

Abstract Background Successful implantation is dependent on coordination between maternal endometrium and embryo, and the role of EVs in the required cross-talk cell-to-cell has been recently established. In this regard, it has been reported that EVs secreted by the maternal endometrium can be internalized by human trophoblastic cells transferring their contents and enhancing their adhesive and invasive capacity. This is the first study to comprehensively evaluate three EV isolation methods on human endometrial epithelial cells in culture and to describe the proteomic content of EVs secreted by pHEECs from fertile women. Methods Ishikawa cells and pHEECs were in vitro cultured and hormonall…

ProteomicsAdultAdolescentProteomeQH471-489Embryo developmentExosomesEndometrial cellsEndometriumYoung AdultEndocrinologyHumansCells CulturedResearchReproductionObstetrics and GynecologyEpithelial CellsGynecology and obstetricsExtracellular vesiclesFertilityReproductive MedicineEndometrial receptivityEmbryo implantationRG1-991FemaleUltracentrifugationMicrovesiclesDevelopmental BiologyReproductive Biology and Endocrinology
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Proteomic analysis of exosome-like vesicles derived from breast cancer cells.

2012

Background/Aim: The phenomenon of membrane vesicle-release by neoplastic cells is a growing field of interest in cancer research, due to their potential role in carrying a large array of tumor antigens when secreted into the extracellular medium. In particular, experimental evidence show that at least some of the tumor markers detected in the blood circulation of mammary carcinoma patients are carried by membrane-bound vesicles. Thus, biomarker research in breast cancer can gain great benefits from vesicle characterization. Materials and Methods: Conditioned medium was collected from serum starved MDA-MB-231 sub-confluent cell cultures and exosome-like vesicles (ELVs) were isolated by ultra…

ProteomicsBreast NeoplasmsExosomesCulture Media Serum-FreeNeoplasm ProteinsBreast cancer extracellular vesicles protein biomarker 2D-PAGE proteomic profiling MALDI-ToF mass spectrometry MDA-MB-231 cellsMicroscopy Electron TransmissionSettore BIO/13 - Biologia ApplicataTandem Mass SpectrometrySettore BIO/10 - BiochimicaCell Line TumorHumansFemaleSettore BIO/06 - Anatomia Comparata E CitologiaChromatography LiquidAnticancer research
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Role of Extracellular Vesicles in Hematological Malignancies.

2015

In recent years the role of tumor microenvironment in the progression of hematological malignancies has been widely recognized. Recent studies have focused on how cancer cells communicate within the microenvironment. Among several factors (cytokines, growth factors, and ECM molecules), a key role has been attributed to extracellular vesicles (EV), released from different cell types. EV (microvesicles and exosomes) may affect stroma remodeling, host cell functions, and tumor angiogenesis by inducing gene expression modulation in target cells, thus promoting cancer progression and metastasis. Microvesicles and exosomes can be recovered from the blood and other body fluids of cancer patients a…

ProteomicsCell typeImmunology and Microbiology (all)lcsh:MedicineReview ArticleBiologyProteomicsExosomesGeneral Biochemistry Genetics and Molecular BiologyMetastasisExtracellular VesiclesStromaSettore BIO/13 - Biologia ApplicatamedicineTumor MicroenvironmentHumansTumor microenvironmentBiochemistry Genetics and Molecular Biology (all)General Immunology and MicrobiologyNeovascularization Pathologiclcsh:RCancerGeneral Medicinemedicine.diseaseMicrovesiclesCell biologyGene Expression Regulation NeoplasticHematologic NeoplasmsCancer cellBiochemistry Genetics and Molecular Biology (all); Immunology and Microbiology (all)BioMed research international
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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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Extracellular Vesicles from Plants: Current Knowledge and Open Questions.

2021

The scientific interest in the beneficial properties of natural substances has been recognized for decades, as well as the growing attention in extracellular vesicles (EVs) released by different organisms, in particular from animal cells. However, there is increasing interest in the isolation and biological and functional characterization of these lipoproteic structures in the plant kingdom. Similar to animal vesicles, these plant-derived extracellular vesicles (PDEVs) exhibit a complex content of small RNAs, proteins, lipids, and other metabolites. This sophisticated composition enables PDEVs to be therapeutically attractive. In this review, we report and discuss current knowledge on PDEVs…

QH301-705.5anti-tumor effectsComputational biologyReviewanti-tumor effectBiologyomics characterizationExtracellular vesiclesCatalysisInorganic ChemistryExtracellular VesiclesDrug Delivery Systemsanti-inflammatory effectsdrug-delivery vehicleBiological propertyAnimalsHumansPhysical and Theoretical ChemistryBiology (General)Molecular BiologyQD1-999Spectroscopydrug-delivery vehiclesOrganic ChemistryProteinsGeneral MedicinePlantsLipidsComputer Science Applicationsplant-derived extracellular vesiclesChemistryanti-inflammatory effectRNAInternational journal of molecular sciences
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Molecular Mediators of RNA Loading into Extracellular Vesicles

2021

In the last decade, an increasing number of studies have demonstrated that non-coding RNA (ncRNAs) cooperate in the gene regulatory networks with other biomolecules, including coding RNAs, DNAs and proteins. Among them, microRNAs (miRNAs), long non-coding RNAs (lncRNAs) and circular RNAs (circRNAs) are involved in transcriptional and translation regulation at different levels. Intriguingly, ncRNAs can be packed in vesicles, released in the extracellular space, and finally internalized by receiving cells, thus affecting gene expression also at distance. This review focuses on the mechanisms through which the ncRNAs can be selectively packaged into extracellular vesicles (EVs).

QH301-705.5non-coding RNAlncRNAsGene regulatory networkReviewexosomesModels BiologicalRNA TransportSettore BIO/13 - Biologia ApplicataGene expressionTranslational regulationmicroRNAExtracellularAnimalsHumansBiology (General)ChemistryProteinsRNAGeneral MedicineNon-coding RNAMicrovesiclesCell biologymiRNAsRNAextracellular vesiclesCells
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Development of extracellular vesicle-based medicinal products: A position paper of the group “Extracellular Vesicle translatiOn to clinicaL perspecti…

2021

International audience; Extracellular vesicles (EV) are emergent therapeutic effectors that have reached clinical trial investigation. To translate EV-based therapeutic to clinic, the challenge is to demonstrate quality, safety, and efficacy, as required for any medicinal product. EV research translation into medicinal products is an exciting and challenging perspective. Recent papers, provide important guidance on regulatory aspects of pharmaceutical development, defining EVs for therapeutic applications and critical considerations for the development of potency tests. In addition, the ISEV Task Force on Regulatory Affairs and Clinical Use of EV-based Therapeutics as well as the Exosomes C…

Quality ControlKnowledge management[SDV.BIO]Life Sciences [q-bio]/BiotechnologyBiological medicinal productsmedia_common.quotation_subjectDrug Compounding[SDV]Life Sciences [q-bio]Regulatory requirementsPharmaceutical ScienceMarketing authorizationExosomesChemistry Techniques Analytical03 medical and health sciencesExtracellular Vesicles0302 clinical medicineDrug DevelopmentDrug Stability[CHIM]Chemical SciencesHumansQuality (business)ComputingMilieux_MISCELLANEOUS030304 developmental biologymedia_commonCell-free therapySecretome0303 health sciencesClinical Trials as TopicClinical-grade EVScientific progressbusiness.industryDrug Administration RoutesExtracellular vesicleDrugs InvestigationalRegulatory affairs3. Good health[SDV.BIO] Life Sciences [q-bio]/BiotechnologyClinical trialEuropeAnalytics030220 oncology & carcinogenesisPosition paperMedicinal productsBusinessMicrovesicles
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Two distinct extracellular RNA signatures released by a single cell type identified by microarray and next-generation sequencing

2016

ABSTRACT Cells secrete extracellular RNA (exRNA) to their surrounding environment and exRNA has been found in many body fluids such as blood, breast milk and cerebrospinal fluid. However, there are conflicting results regarding the nature of exRNA. Here, we have separated 2 distinct exRNA profiles released by mast cells, here termed high-density (HD) and low-density (LD) exRNA. The exRNA in both fractions was characterized by microarray and next-generation sequencing. Both exRNA fractions contained mRNA and miRNA, and the mRNAs in the LD exRNA correlated closely with the cellular mRNA, whereas the HD mRNA did not. Furthermore, the HD exRNA was enriched in lincRNA, antisense RNA, vault RNA, …

RNA UntranslatedGene Expression ProfilingHigh-Throughput Nucleotide SequencingExosomesextracellular RNACell LineExtracellular VesiclesMicroRNAstranscriptomicsproteomicsRNA RibosomalCluster AnalysisHumansRNAexosomenext-generation sequencingRNA Messengerextracellular vesiclemicroarrayproteomicResearch Paper
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Tumor-Derived Small Extracellular Vesicles Induce Pro-Inflammatory Cytokine Expression and PD-L1 Regulation in M0 Macrophages via IL-6/STAT3 and TLR4…

2021

Tumor-associated macrophages play a key role in promoting tumor progression by exerting an immunosuppressive phenotype associated with the expression of programmed cell death ligand 1 (PD-L1). It is well known that tumor-derived small extracellular vesicles (SEVs) affect the tumor microenvironment, influencing TAM behavior. The present study aimed to examine the effect of SEVs derived from colon cancer and multiple myeloma cells on macrophage functions. Non-polarized macrophages (M0) differentiated from THP-1 cells were co-cultured with SEVs derived from a colorectal cancer (CRC) cell line, SW480, and a multiple myeloma (MM) cell line, MM1.S. The expression of PD-L1, interleukin-6 (IL-6), a…

STAT3 Transcription FactorPD-L1QH301-705.5colorectal cancersmall extracellular vesiclesB7-H1 AntigenArticleCatalysisStat3 Signaling PathwayProinflammatory cytokineM0 macrophageInorganic ChemistryExtracellular VesiclesSettore BIO/13 - Biologia ApplicataCell Line TumorPD-L1Tumor-Associated Macrophagessmall extracellular vesicleHumansMacrophageTLR4Biology (General)Physical and Theoretical ChemistryM0 macrophagesQD1-999Molecular BiologySpectroscopyInflammationTumor microenvironmentbiologyInterleukin-6ChemistryOrganic ChemistryGeneral MedicineComputer Science ApplicationsGene Expression Regulation NeoplasticToll-Like Receptor 4multiple myelomaChemistryCell cultureTumor progressionColonic Neoplasmsbiology.proteinCancer researchTLR4Signal TransductionInternational Journal of Molecular Sciences
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