Search results for "Vesicle"

showing 10 items of 787 documents

SHEDDING OF EXTRACELLULAR VESICLES FROM BRAIN CELLS

2006

extracellular vesiclesbrain cellsshedding
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Determination of the Subcellular Origin of [14C] Acetylcholine (ACh) and [3H] Acetylpyrrolidinecholine (Apych) Released from Guinea-Pig Cerebral Cort…

1978

After in vivo application of radiolabelled choline, radioactive ACh is formed and can be released from the brain by electrical stimulation. However, its origin is still obscure because, due to the metabolical heterogeneity of synaptic vesicles, no subcellular compartment has been found with a specific activity (SA) corresponding to that of released transmitter. To bypass this heterogeneity problem, two different labelled precursors can be used.

food and beveragesStimulationCompartment (chemistry)Synaptic vesicleGuinea pigchemistry.chemical_compoundmedicine.anatomical_structurechemistryIn vivoCerebral cortexmedicineBiophysicsCholineNeuroscienceAcetylcholinemedicine.drug
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Primo ricerche sulla ultrastruttura dell'uovo delle Ascidie

1959

Summary The cytoplasmic constituents of the unfertilized eggs of Ciona intestinalis were separated by centrifugation and studied at the electron microscope, with the following results. Lipid droplets collect at the centripetal pole; they are boundered by a thin membrane. The yolk granules are homogeneous in appearance; a few have a granular structure. Mitochondria contain numerous cristae; they accumulate in two different layers centripetally and centrifugally to the yolk granules layer respectively. Basophilic material collects at both poles of the egg in two hyaline caps: a centripetal one constituted by small Vesicles and a centrifugal represented by dense clumps. The latter, as well as …

food.ingredientVesicleAnatomyBiologybiology.organism_classificationlaw.inventionBasophilicfoodlawLipid dropletYolkembryonic structuresBiophysicsAnimal Science and ZoologyCentrifugationCiona intestinalisElectron microscopeHyalineBolletino di zoologia
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Extraction, Characterization and Incorporation of Hypericum scruglii Extract in Ad Hoc Formulated Phospholipid Vesicles Designed for the Treatment of…

2020

An extract of Hypericum scruglii, an endangered endemic plant of Sardinia (Italy), was prepared and characterized. It was loaded in special phospholipid vesicles, glycerosomes, which were modified by adding maltodextrin (glucidex) and a polymer (gelatin or hyaluronan). The corresponding liposomes were also prepared and used as reference. The vesicles disclosed suitable physicochemical features for skin delivery. Indeed, their mean diameter ranged from 120 to 160 nm, they were homogeneously dispersed (polydispersity index &le

food.ingredientlcsh:RS1-441Pharmaceutical Science02 engineering and technologyhypericaceaemedicine.disease_cause01 natural sciencesGelatinArticlelcsh:Pharmacy and materia medicagelatinhyaluronanchemistry.chemical_compoundglycerosomesfoodphospholipid vesiclesscratch assayZeta potentialmedicineoxidative stressHydrogen peroxideLiposome010405 organic chemistryVesiclekeratinocyte uptake021001 nanoscience & nanotechnologyMaltodextrinIn vitro0104 chemical scienceschemistryBiophysics0210 nano-technologyOxidative stress
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The closure of Pak1-dependent macropinosomes requires the phosphorylation of CtBP1/BARS

2007

Membrane fission is an essential process in membrane trafficking and other cellular functions. While many fissioning and trafficking steps are mediated by the large GTPase dynamin, some fission events are dynamin independent and involve C-terminal-binding protein-1/brefeldinA-ADP ribosylated substrate (CtBP1/BARS). To gain an insight into the molecular mechanisms of CtBP1/BARS in fission, we have studied the role of this protein in macropinocytosis, a dynamin-independent endocytic pathway that can be synchronously activated by growth factors. Here, we show that upon activation of the epidermal growth factor receptor, CtBP1/BARS is (a) translocated to the macropinocytic cup and its surroundi…

genetic structuresEndocytic cycleGTPaseBiologyTRANSCRIPTIONAL COREPRESSOREPIDERMAL GROWTH-FACTORArticleGeneral Biochemistry Genetics and Molecular BiologySYNAPTIC VESICLE ENDOCYTOSISMembrane fissionCell Line TumorMacropinocytic cupHumansPhosphorylationMacropinosomeMolecular BiologyDynaminEpidermal Growth FactorGeneral Immunology and MicrobiologyMEMBRANE FISSIONGeneral NeuroscienceActinsEnterovirus B HumanProtein Structure TertiaryTransport proteinCell biologyDNA-Binding ProteinsAlcohol OxidoreductasesProtein Transportp21-Activated KinasesPLASMA-MEMBRANEPinocytosisPhosphorylationCell Surface ExtensionsIntegrin alpha2beta1The EMBO Journal
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Cooperativity of Protein Binding to Vesicles

2011

Electrostatics role is studied in protein adsorption to phosphatidylcholine (PC) and PC/phosphatidylglycerol (PG) small unilamellar vesicles (SUVs). Protein interaction is monitored vs. PG content at low ionic strength. Adsorption of lysozyme, myoglobin and bovine serum albumin (BSA) isoelectric point (pI) is investigated in SUVs, along with changes in protein fluorescence emission spectra. Partition coefficients and cooperativity parameters are calculated. At pI, binding is maximum while at lower/higher pHs binding drops. In Gouy–Chapman model activity coefficient goes with square charge number, which deviations indicate asymmetric location of anionic lipid in the bilayer inner leaflet, in…

genetic structuresbiologyBilayerVesicleBinding proteinCooperativitychemistry.chemical_compoundIsoelectric pointMyoglobinchemistrybiology.proteinBiophysicsBovine serum albuminProtein adsorption
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Vesiclepedia:A Compendium for Extracellular Vesicles with Continuous Community Annotation

2012

Vesiclepedia is a community-annotated compendium of molecular data on extracellular vesicles.

human proteinpedia; exosomal proteins; delivery-system; breast-milk; url decay; cells; microvesicles; update; rna; biogenesisQH301-705.5Medical Biotechnology (with a focus on Cell Biology (including Stem Cell Biology) Molecular Biology Microbiology Biochemistry or Biopharmacy)610 Medicine & healthApoptosisComputational biology1100 General Agricultural and Biological SciencesBiologyVesiclepediaExosomesExosomeGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesAnnotation0302 clinical medicineSDG 3 - Good Health and Well-being1300 General Biochemistry Genetics and Molecular Biology2400 General Immunology and MicrobiologyCommunity PageExoCartaBiology (General)Medicinsk bioteknologi (med inriktning mot cellbiologi (inklusive stamcellsbiologi) molekylärbiologi mikrobiologi biokemi eller biofarmaci)BiologyBiología y Biomedicina030304 developmental biologyUncategorized0303 health sciencesGeneral Immunology and MicrobiologyGeneral NeuroscienceMicrovesicleResearch2800 General NeuroscienceExtracellular vesicle11359 Institute for Regenerative Medicine (IREM)Extracellular vesiclesMicrovesiclesCompendiumCell biologyData sharingDatabases as Topic030220 oncology & carcinogenesisGeneral Agricultural and Biological SciencesExtracellular Space
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Molecular Pathways Implicated in Radioresistance of Glioblastoma Multiforme: What Is the Role of Extracellular Vesicles?

2023

Glioblastoma multiforme (GBM) is a primary brain tumor that is very aggressive, resistant to treatment, and characterized by a high degree of anaplasia and proliferation. Routine treatment includes ablative surgery, chemotherapy, and radiotherapy. However, GMB rapidly relapses and develops radioresistance. Here, we briefly review the mechanisms underpinning radioresistance and discuss research to stop it and install anti-tumor defenses. Factors that participate in radioresistance are varied and include stem cells, tumor heterogeneity, tumor microenvironment, hypoxia, metabolic reprogramming, the chaperone system, non-coding RNAs, DNA repair, and extracellular vesicles (EVs). We direct our a…

hypoxiatheranosticOrganic Chemistrynon-coding RNADNA repairGeneral Medicinepersonalized medicineCatalysisComputer Science ApplicationsInorganic Chemistryradioresistancestem cellglioblastoma multiformechaperone systemtumor heterogeneityintercellular communicationtumor microenvironmentmetabolic reprogrammingextracellular vesiclePhysical and Theoretical ChemistryMolecular BiologySpectroscopy
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1988

Negatively charged lipid molecules were converted into polymerizable lipids by introduction of polymerizable mono- or bifunctional counterions. As an attempt to mimic the cytoskeleton of biomembranes, unsymmetrical polymeric vesicles were prepared, where the polyelectrolyte is attached either only to the inner or to the outer bilayer surfaces. Polymerizable cations were introduced to the outer surface of preformed small unilamellar vesicles via ion-exchange. The outer counterions of vesicles bearing polymerizable counterions at both sides of the membrane were replaced by Na+. Polymerization of these systems leads to unsymmetrical vesicles. The introduction, separation and polymerization of …

inorganic chemicalschemistry.chemical_classificationVesicleBilayertechnology industry and agricultureCationic polymerizationPolymerPolyelectrolytechemistry.chemical_compoundMembranePolymerizationchemistryPolymer chemistryBifunctionalDie Makromolekulare Chemie
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THE ROLE OF EXTRACELLULAR VESICLES IN MODULATING THE HOST IMMUNE RESPONSE DURING PARASITIC INFECTIONS

2014

Parasites are the cause of major diseases affecting billions of people. As the inflictions caused by these parasites affect mainly developing countries, they are considered as neglected diseases. These parasitic infections are often chronic and lead to significant immunomodulation of the host immune response by the parasite, which could benefit both the parasite and the host and are the result of millions of years of co-evolution. The description of parasite extracellular vesicles (EVs) in protozoa and helminths suggests that they may play an important role in host–parasite communication. In this review, recent studies on parasitic (protozoa and helminths) EVs are presented and their potent…

lcsh:Immunologic diseases. AllergyImmunologyReview ArticleimmunomodulationExtracellular vesiclesprotozoaImmune systemProtozoan infectionHelminthsImmunodulationparasitic diseasesmedicineImmunology and AllergyParasite hostingHelminthshelminthProtozoan InfectionsbiologyHost (biology)biology.organism_classificationmedicine.diseaseImmunologyparasiteProtozoaextracellular vesicleslcsh:RC581-607Frontiers in Immunology
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