Search results for "Extracellular vesicles"

showing 10 items of 206 documents

Cestode parasites release extracellular vesicles with microRNAs and immunodiagnostic protein cargo.

2017

Intercellular communication is crucial in multiple aspects of cell biology. This interaction can be mediated by several mechanisms including extracellular vesicle (EV) transfer. EV secretion by parasites has been reported in protozoans, trematodes and nematodes. Here we report that this mechanism is present in three different species of cestodes, Taenia crassiceps, Mesocestoides corti and Echinococcus multilocularis. To confirm this we determined, in vitro, the presence of EVs in culture supernatants by transmission electron microscopy. Interestingly, while T. crassiceps and M. corti metacestodes secrete membranous structures into the culture media, similar vesicles were observed in the int…

0301 basic medicineOtras Ciencias Biológicas030231 tropical medicineMesocestoides cortiPlatyhelminthCiencias Biológicas03 medical and health sciencesExtracellular Vesicles0302 clinical medicineTandem Mass SpectrometryAnimalsSecretionSecretionTaenia crassicepsbiologymicroRNATaeniaVesicleRNAExtracellular vesicleHelminth Proteinsbiology.organism_classificationIn vitroCell biologyEchinococcusMicroRNAs030104 developmental biologyInfectious DiseasesImmunologyTaeniaCestodaParasitologyExtracellular vesicleCestodeCIENCIAS NATURALES Y EXACTASIntracellularChromatography LiquidInternational journal for parasitology
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Parvovirus B19V Nonstructural Protein NS1 Induces Double-Stranded Deoxyribonucleic Acid Autoantibodies and End-Organ Damage in Nonautoimmune Mice

2018

Abstract Background Viral infection is implicated in development of autoimmunity. Parvovirus B19 (B19V) nonstructural protein, NS1, a helicase, covalently modifies self double-stranded deoxyribonucleic acid (dsDNA) and induces apoptosis. This study tested whether resulting apoptotic bodies (ApoBods) containing virally modified dsDNA could induce autoimmunity in an animal model. Methods BALB/c mice were inoculated with (1) pristane-induced, (2) B19V NS1-induced, or (3) staurosporine-induced ApoBods. Serum was tested for dsDNA autoantibodies by Crithidia luciliae staining and enzyme-linked immunosorbent assay. Brain, heart, liver, and kidney pathology was examined. Deposition of self-antigens…

0301 basic medicinePathogenesis and Host ResponseviruksetvirusesB19VKidney GlomerulusSLEApoptosisAutoimmunityanti-dsDNA antibodyViral Nonstructural Proteinsmedicine.disease_causeAutoimmunityautoimmuniteettiMice0302 clinical medicineGlomerulonephritisParvovirus B19 HumanImmunology and Allergy030212 general & internal medicineEnzyme InhibitorstolerancebiologyChemistryapoptosisBrainInfectious DiseasesLivervirustauditAntibodies AntinuclearmaksatulehdusFemaleAntibodyImmunosuppressive Agentsta3111infektiot03 medical and health sciencesohjelmoitunut solukuolemaMajor Articles and Brief ReportsExtracellular VesiclesAntigenmedicineCrithidia luciliaeAnimalsapoptotic bodiesparvoviruksetParvovirusTerpenesAnti-dsDNA antibodiesMyocardiumta1183parvovirusAutoantibodyta1182DNAbiology.organism_classificationStaurosporineMolecular biology030104 developmental biologyApoptosisbiology.proteinautovasta-aineetglomerulonephritisThe Journal of Infectious Diseases
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Aquaporins and Brain Tumors

2016

Brain primary tumors are among the most diverse and complex human cancers, and they are normally classified on the basis of the cell-type and/or the grade of malignancy (the most malignant being glioblastoma multiforme (GBM), grade IV). Glioma cells are able to migrate throughout the brain and to stimulate angiogenesis, by inducing brain capillary endothelial cell proliferation. This in turn causes loss of tight junctions and fragility of the blood–brain barrier, which becomes leaky. As a consequence, the most serious clinical complication of glioblastoma is the vasogenic brain edema. Both glioma cell migration and edema have been correlated with modification of the expression/localization …

0301 basic medicinePathologymedicine.medical_specialtyAngiogenesisAquaporinReviewBiologyBlood–brain barrieraquaporins (AQPs)Catalysislcsh:ChemistryInorganic Chemistry03 medical and health sciencesglioblastoma multiforme0302 clinical medicineEdemaGliomaSettore BIO/10 - Biochimicaaquaporins (AQPs); blood–brain barrier (BBB); brain tumors; extracellular vesicles (EVs); glioblastoma multiformemedicineBiomarkers TumorAnimalsHumansPhysical and Theoretical ChemistrySettore BIO/06 - Anatomia Comparata E Citologialcsh:QH301-705.5Molecular BiologySpectroscopyTight junctionBrain NeoplasmsSettore MED/27 - NeurochirurgiaOrganic ChemistryCancerGeneral Medicinemedicine.diseaseblood–brain barrier (BBB)Computer Science ApplicationsEndothelial stem cell030104 developmental biologymedicine.anatomical_structurelcsh:Biology (General)lcsh:QD1-999Blood-Brain Barrierbrain tumorsmedicine.symptomextracellular vesicles (EVs)Glioblastoma030217 neurology & neurosurgerybrain tumor
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Reprint of "EXOSOME LEVELS IN HUMAN BODY FLUIDS: A TUMOR MARKER BY THEMSELVES?"

2017

Despite considerable research efforts, the finding of reliable tumor biomarkers remains challenging and unresolved. In recent years a novel diagnostic biomedical tool with high potential has been identified in extracellular nanovesicles or exosomes. They are released by the majority of the cells and contain detailed molecular information on the cell of origin including tumor hallmarks. Exosomes can be isolated from easy accessible body fluids, and most importantly, they can at once provide with several biomarkers, with different levels of specificity. Recent clinical evidence shows that the levels of exosomes released into body fluids may by themselves represent a predictive/diagnostic of t…

0301 basic medicinePharmaceutical ScienceExosomesExosome03 medical and health sciencesProstate cancerTumor Biomarkers0302 clinical medicineMedicineHigh potentialTumor markerProstate cancerbusiness.industryFollow-upCancerExtracellular vesiclesEarly diagnosismedicine.diseaseMicrovesiclesBody fluids030104 developmental biologyClinical evidence030220 oncology & carcinogenesisImmunologyCancer researchbusinessBiomarkersEuropean journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences
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Extracellular Vesicles: Goodies for the Brain?

2015

0301 basic medicinePharmacologyHot TopicsBrainBiological TransportBiologyExtracellular vesicles03 medical and health sciencesPsychiatry and Mental healthExtracellular Vesicles030104 developmental biology0302 clinical medicineAnimalsHomeostasisHumansNeuroscience030217 neurology & neurosurgeryHomeostasis
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2020

Physical exercise induces acute physiological changes leading to enhanced tissue cross-talk and a liberation of extracellular vesicles (EVs) into the circulation. EVs are cell-derived membranous entities which carry bioactive material, such as proteins and RNA species, and are important mediators of cell-cell-communication. Different types of physical exercise interventions trigger the release of diverse EV subpopulations, which are hypothesized to be involved in physiological adaptation processes leading to health benefits and longevity. Large EVs (“microvesicles” and “microparticles”) are studied frequently in the context of physical exercise using straight forward flow cytometry approach…

0301 basic medicinePhysiologyChemistryPhysical exerciseContext (language use)Forward flowComputational biology030204 cardiovascular system & hematologyHealth benefitsExtracellular vesiclesMicrovesiclesMini review03 medical and health sciences030104 developmental biology0302 clinical medicinePhysiology (medical)Frontiers in Physiology
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Extracellular vesicles in food: Experimental evidence of their secretion in grape fruits

2017

In the last decade, the number of studies related with extracellular vesicles (EVs) has dramatically grown since their role as key part of intercellular communication has been confirmed. EVs, as transporter of distinct bioactive molecules, can take part in different physiological mechanisms and have been gaining attention as potential tools with a wide range of therapeutic effects. Whereas a high number of studies have been published related to mammalian derived EVs, including products as food source, the existence of EVs in plants still is controversial. Recent descriptions of vesicles derived from edible plants show that they might contain pharmacological active molecules. In this context…

0301 basic medicineProteomicsSecretion Grape berryBioactive moleculesPharmaceutical ScienceContext (language use)BiologyExtracellular vesicles03 medical and health sciencesExtracellular VesiclesAnimalsHumansSecretionGrape berryVitisVitis viniferaPlant Proteinsfood and beveragesFood exosomesExtracellular vesiclesMicrovesiclesFruit and Vegetable Juices030104 developmental biologyMilkBiochemistryFruitVitis viniferaEdible plants
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Extracellular vesicles: small bricks for tissue repair/regeneration

2017

Extracellular vesicles (EVs) are nano-sized membrane vesicles involved in intercellular communication. EVs have pleiotropic actions in physiological and pathological conditions. The ability of EVs to transports proteins, drugs and nucleic acid, to target specific cells and to increase the stability of therapeutic cargo, make EVs interesting as new devices for the treatment of human disease. In a recently published issue of European journal of pharmaceutical sciences, Silva and colleagues reviewed the ability of EVs to modulate tissue repair and regeneration, focusing on their roles and therapeutic potential as immunomodulatory messengers. In this perspective, we discussed the open questions…

0301 basic medicineRegeneration (biology)Medicine (all)Context (language use)Tissue repair/regenerationGeneral MedicineTissue repairBiologyExtracellular vesiclesCell biology03 medical and health sciences030104 developmental biologyDual roleHuman diseaseImmune systemImmunologyPerspectiveMembrane vesicleExtracellular vesicles (EVs); Immune system; Tissue repair/regeneration; Medicine (all)Extracellular vesicles (EVs)Pharmaceutical sciences
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Molecular Determinants of Malignant Brain Cancers: From Intracellular Alterations to Invasion Mediated by Extracellular Vesicles

2017

Malignant glioma cells invade the surrounding brain parenchyma, by migrating along the blood vessels, thus promoting cancer growth. The biological bases of these activities are grounded in profound alterations of the metabolism and the structural organization of the cells, which consequently acquire the ability to modify the surrounding microenvironment, by altering the extracellular matrix and affecting the properties of the other cells present in the brain, such as normal glial-, endothelial- and immune-cells. Most of the effects on the surrounding environment are probably exerted through the release of a variety of extracellular vesicles (EVs), which contain many different classes of mol…

0301 basic medicineReviewCatalysislcsh:Chemistryextracellular RNAsInorganic ChemistryExtracellular matrixExtracellular Vesicles03 medical and health sciencesGliomaSettore BIO/10 - BiochimicaParenchymamedicineExtracellularAnimalsHumansNeoplasm InvasivenessPhysical and Theoretical ChemistrySettore BIO/06 - Anatomia Comparata E Citologialcsh:QH301-705.5Molecular BiologySpectroscopychemistry.chemical_classificationECMBrain Neoplasmsbrain cancer invasionOrganic ChemistryCancerGliomaGeneral MedicineMetabolismmedicine.diseaseExtracellular MatrixComputer Science ApplicationsCell biologyglioma cell030104 developmental biologyEnzymeglioma cells; brain cancer invasion; extracellular vesicles (EVs); ECM; extracellular RNAslcsh:Biology (General)lcsh:QD1-999chemistryglioma cellsextracellular vesicles (EVs)Intracellular
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Extracellular vesicles and redox modulation in aging

2019

Extracellular vesicles (EVs) are nowadays known to be mediators of cell-to-cell communication involved in physiological and pathological processes. The current expectation is their use as specific biomarkers and therapeutic tools due to their inner characteristics. However, several investigations still need to be done before we can use them in the clinic. First, their categorization is still under debate, although an accurate classification of EVs subtypes should be based on physical characteristics, biochemical composition or condition description of the cell of origin. Second, EVs carry lipids, proteins and nucleic acids that can induce epigenetic modifications on target cells. These carg…

0301 basic medicineSenescenceRedox modulationCell CommunicationOxidative phosphorylationBiologymedicine.disease_causeBiochemistryExtracellular vesiclesRedox statusCell biologyExtracellular Vesicles03 medical and health sciences030104 developmental biology0302 clinical medicinePhysiology (medical)medicineProspective StudiesEpigeneticsOxidation-Reduction030217 neurology & neurosurgeryBiogenesisOxidative stressFree Radical Biology and Medicine
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