Search results for " vesicles"

showing 10 items of 341 documents

A Model for ERD2 Function in Higher Plants

2020

ER lumenal proteins have a K(H)DEL motif at their C-terminus. This is recognized by the ERD2 receptor (KDEL receptor in animals), which localizes to the Golgi apparatus and serves to capture escaped ER lumenal proteins. ERD2-ligand complexes are then transported back to the ER via COPI coated vesicles. The neutral pH of the ER causes the ligands to dissociate with the receptor being returned to the Golgi. According to this generally accepted scenario, ERD2 cycles between the ER and the Golgi, although it has been found to have a predominant Golgi localization. In this short article, we present a model for the functioning of ERD2 receptors in higher plants that explains why it is difficult t…

0106 biological sciences0301 basic medicineCOPI-Coated Vesiclescis-GolgiKDELMini ReviewPopulationPlant Sciencelcsh:Plant culture01 natural sciences03 medical and health sciencessymbols.namesakeERD2/KDEL receptorlcsh:SB1-1110Neutral phGolgi localizationeducationReceptorCOPII-vesicleeducation.field_of_studyChemistryGolgi apparatusCell biologysecretory unit030104 developmental biologyCOPI-vesiclesymbolsK(H)DEL ligandFunction (biology)010606 plant biology & botanyFrontiers in Plant Science
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“Brainstorming”: Extracellular Vesicles in Physical Activity and Neuronal Health

2020

Physical and mental activity are known to contribute to brain health and overall longevity. Extracellular vesicles (EVs) have attracted attention for their ability to transport bioactive cargo through various body-fluids and their role in tissue crosstalk and regeneration. Targeted intercellular communication processes, including those facilitated by EVs, are of vital importance for the complex architecture and function of the brain. Activated neurons trigger the transfer of EVs from myelinating oligodendrocytes to neurons, promoting neuronal long-term maintenance and survival. Likewise, physical activity leads to the liberation of EVs into the circulation, while the molecular link between …

0301 basic medicine03 medical and health sciences030104 developmental biology0302 clinical medicineBrainstormingChemistryPhysical activityExtracellular vesicles030217 neurology & neurosurgeryCell biologyExtracellular vesicles as biomarkers – in pathophysiology, physical education and home office?
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Proteome Analysis of Colorectal Cancer Cell Line SW480 Released Extracellular Vesicles

2018

The detection and profiling of disease-specific extracellular vesicles (EVs) from body fluids has been challenging research area during recent years. However, the question – can EVs surface proteins be exploited as a credible tool for early cancer diagnosis – is still not answered. Objective of the current study was to find out whether hypoxia induces differences in protein profiles of EVs released from hypoxic human colorectal cancer cells SW480 (EVHyp) and EVs released from these cells grown in normoxic conditions – EVNorm. Obtained results show differences in EVs surface protein samples. Some protein fragments were found only or mostly in EVHyp surface protein samples. Finding of one or …

0301 basic medicine03 medical and health sciences030104 developmental biologyMechanics of MaterialsChemistryMechanical EngineeringProteomeGeneral Materials ScienceProtein profileColorectal cancer cell lineExtracellular vesiclesMicrovesiclesCell biologyKey Engineering Materials
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The protein and microRNA cargo of extracellular vesicles from parasitic helminths – current status and research priorities

2020

Helminth parasites have a remarkable ability to persist within their mammalian hosts, which is largely due to their secretion of molecules with immunomodulatory properties. Although the soluble components of helminth secretions have been extensively studied, the discovery that helminths release extracellular vesicles (EVs) has added further complexity to the host-parasite interaction. Whilst several studies have begun to characterise the molecules carried by helminth EVs, work aimed at investigating their biological functions has been hindered by a lack of helminth-specific EV markers. To begin to address this, we summarised helminth EV literature to date. With a focus on the protein and mi…

0301 basic medicine10078 Institute of ParasitologyPARASITES2405 ParasitologyHelminthiasisPROTEINExosomes//purl.org/becyt/ford/1 [https]0302 clinical medicine600 TechnologyCladeMICROVESICLESProtein.MicroRNAHelminth ProteinsInfectious DiseasesMicrovesiclesProtein family030231 tropical medicine610 Medicine & healthBiologyCARGO03 medical and health sciencesExtracellular VesiclesHelminthsmicroRNAparasitic diseasesHelminthsAnimalsHumansParasites//purl.org/becyt/ford/1.6 [https]EXOSOMESMICRORNAEXTRACELLULAR VESICLES2725 Infectious Diseasesbiology.organism_classificationMicrovesiclesBiomarker (cell)MicroRNAs030104 developmental biologyNematodeEvolutionary biology570 Life sciences; biologyHELMINTHSParasitologyRNA HelminthFunction (biology)BiomarkersCargo
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Antitumor effect of oncolytic virus and paclitaxel encapsulated in extracellular vesicles for lung cancer treatment

2018

Standard of care for cancer is commonly a combination of surgery with radiotherapy or chemoradiotherapy. However, in some advanced cancer patients this approach might still remaininefficient and may cause many side effects, including severe complications and even death. Oncolytic viruses exhibit different anti-cancer mechanisms compared with conventional therapies, allowing the possibility for improved effect in cancer therapy. Chemotherapeutics combined with oncolytic viruses exhibit stronger cytotoxic responses and oncolysis. Here, we have investigated the systemic delivery of the oncolytic adenovirus and paclitaxel encapsulated in extracellular vesicles (EV) formulation that, in vitro, s…

0301 basic medicine3003Lung NeoplasmsCancer therapymedicine.medical_treatmentPharmaceutical ScienceOncolytic viruseschemistry.chemical_compoundpaclitaxelkeuhkosyöpä0302 clinical medicineMedicineMice Inbred BALB CExtracellular vesiclesCHEMOTHERAPYCombined Modality Therapy3. Good healthxenograft animal modelPaclitaxelLiver317 Pharmacy030220 oncology & carcinogenesisonkolyyttiset viruksetcancer therapyFemaleLung canceronkolyyttinen virushoitoOncolytic adenovirusEFFICIENCYPaclitaxelCancer therapy; Drug delivery; Extracellular vesicles; Lung cancer; Oncolytic viruses; Paclitaxel; Xenograft animal model; 30033122 CancersMice NudeXenograft animal modelta3111OVARIAN-CANCERVIROTHERAPY03 medical and health sciencesCell Line TumorAnimalsHumansVirotherapyLung cancerChemotherapyADENOVIRUS RECEPTORsyöpähoidotbusiness.industryta1182CancerENDOSTATINmedicine.diseaseta3122Antineoplastic Agents PhytogenicGENEOncolytic virusMODELlung cancer030104 developmental biologychemistryviroterapiaDrug deliveryCELLSdrug deliveryCancer researchbusinessOvarian cancersolunulkoiset vesikkelitSpleen
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Detection of circulating miRNAs: comparative analysis of extracellular vesicle-incorporated miRNAs and cell-free miRNAs in whole plasma of prostate c…

2017

Abstract Background Circulating cell-free miRNAs have emerged as promising minimally-invasive biomarkers for early detection, prognosis and monitoring of cancer. They can exist in the bloodstream incorporated into extracellular vesicles (EVs) and ribonucleoprotein complexes. However, it is still debated if EVs contain biologically meaningful amounts of miRNAs and may provide a better source of miRNA biomarkers than whole plasma. The aim of this study was to systematically compare the diagnostic potential of prostate cancer-associated miRNAs in whole plasma and in plasma EVs. Methods RNA was isolated from whole plasma and plasma EV samples from a well characterised cohort of 50 patient with …

0301 basic medicineAdultMaleCancer ResearchPathologymedicine.medical_specialtyExosomeslcsh:RC254-282Cohort Studies03 medical and health sciencesProstate cancer0302 clinical medicineSurgical oncologyProstatemicroRNAGeneticsBiomarkers TumorMedicineHumansCell-free miRNAsCirculating MicroRNALiquid biopsyAgedAged 80 and overProstate cancerLiquid biopsybusiness.industryCancerProstatic NeoplasmsExtracellular vesicleMiddle AgedExtracellular vesicleslcsh:Neoplasms. Tumors. Oncology. Including cancer and carcinogensmedicine.diseaseMicrovesiclesMicroRNAs030104 developmental biologymedicine.anatomical_structureOncology030220 oncology & carcinogenesisCancer researchbusinessMicrovesiclesBiomarkersResearch ArticleBMC cancer
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Palmitoylation is a post-translational modification of Alix regulating the membrane organization of exosome-like small extracellular vesicles.

2018

Abstract Background Virtually all cell types have the capacity to secrete nanometer-sized extracellular vesicles, which have emerged in recent years as potent signal transducers and cell-cell communicators. The multifunctional protein Alix is a bona fide exosomal regulator and skeletal muscle cells can release Alix-positive nano-sized extracellular vesicles, offering a new paradigm for understanding how myofibers communicate within skeletal muscle and with other organs. S-palmitoylation is a reversible lipid post-translational modification, involved in different biological processes, such as the trafficking of membrane proteins, achievement of stable protein conformations, and stabilization…

0301 basic medicineAlix (also known as PDCD6IP)Protein ConformationLipoylationLipid BilayersBiophysicsSkeletal muscle cellsCell Cycle ProteinsExosomesBiochemistryExosomeTetraspanin 29Cell Line03 medical and health sciencesExtracellular VesiclesPalmitoylationTetraspaninExtracellularHumansLipid bilayerMuscle SkeletalMolecular BiologyCells CulturedEndosomal Sorting Complexes Required for TransportChemistryVesicleCalcium-Binding ProteinsCell MembraneExtracellular vesicleTetraspaninSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)Cell biologyExosomeProtein Transport030104 developmental biologyS-palmitoylationMembrane proteinextracellular vesicles (EVs)Skeletal muscle cellProtein Processing Post-TranslationalProtein BindingSignal TransductionBiochimica et biophysica acta. General subjects
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Platelet Pathogen Reduction Technologies Alter the MicroRNA Profile of Platelet-Derived Microparticles

2020

Despite improvements in donor screening and increasing efforts to avoid contamination and the spread of pathogens in clinical platelet concentrates (PCs), the risks of transfusion-transmitted infections remain important. Relying on an ultraviolet photo activation system, pathogen reduction technologies (PRTs), such as Intercept and Mirasol, utilize amotosalen, and riboflavin (vitamin B2), respectively, to mediate inactivation of pathogen nucleic acids. Although they are expected to increase the safety and prolong the shelf life of clinical PCs, these PRTs might affect the quality and function of platelets, as recently reported. Upon activation, platelets release microparticles (MPs), which …

0301 basic medicineAmotosalenmedicine.medical_specialtySmall RNAlcsh:Diseases of the circulatory (Cardiovascular) systemmirasolCardiovascular Medicine030204 cardiovascular system & hematology03 medical and health sciences0302 clinical medicineclinical platelet concentrateInternal medicinemicroRNAmedicinePlateletHematologiPathogenOriginal ResearchRegulation of gene expressionHematologymicroRNApathogen reductionChemistryclinical platelet concentrate; pathogen reduction; mirasol; intercept; extracellular vesicles; small RNA-sequencing; microRNAHematology3. Good healthCell biologysmall RNA-sequencing030104 developmental biologylcsh:RC666-701extracellular vesiclesCardiology and Cardiovascular MedicineFunction (biology)interceptFrontiers in Cardiovascular Medicine
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Extracellular Vesicles-Based Drug Delivery Systems: A New Challenge and the Exemplum of Malignant Pleural Mesothelioma

2020

Research for the most selective drug delivery to tumors represents a fascinating key target in science. Alongside the artificial delivery systems identified in the last decades (e.g., liposomes), a family of natural extracellular vesicles (EVs) has gained increasing focus for their potential use in delivering anticancer compounds. EVs are released by all cell types to mediate cell-to-cell communication both at the paracrine and the systemic levels, suggesting a role for them as an ideal nano-delivery system. Malignant pleural mesothelioma (MPM) stands out among currently untreatable tumors, also due to the difficulties in achieving an early diagnosis. Thus, early diagnosis and treatment of …

0301 basic medicineAntineoplastic AgentsReviewexosomesExtracellular vesiclesCatalysisInorganic Chemistrylcsh:Chemistry03 medical and health sciencesdrug delivery systems0302 clinical medicinemedicineHumansexosomedrug delivery systemmalignant pleural mesotheliomaMesotheliomaPhysical and Theoretical ChemistryMolecular Biologylcsh:QH301-705.5SpectroscopyDrug Carriersbusiness.industryPleural mesotheliomaMesothelioma MalignantOrganic ChemistryGeneral Medicinemedicine.diseaseMicrovesiclesComputer Science Applications030104 developmental biologylcsh:Biology (General)lcsh:QD1-999030220 oncology & carcinogenesisDrug deliveryCancer researchDelivery systemextracellular vesiclebusinessextracellular vesicles
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Ticket to Ride: Targeting Proteins to Exosomes for Brain Delivery.

2017

Exosomes represent an attractive vehicle for the delivery of biomolecules. However, mechanisms for loading functional molecules into exosomes are relatively unexplored. Here we report the use of the evolutionarily conserved late-domain (L-domain) pathway as a mechanism for loading exogenous proteins into exosomes. We demonstrate that labeling of a target protein, Cre recombinase, with a WW tag leads to recognition by the L-domain-containing protein Ndfip1, resulting in ubiquitination and loading into exosomes. Our results show that Ndfip1 expression acts as a molecular switch for exosomal packaging of WW-Cre that can be suppressed using the exosome inhibitor GW4869. When taken up by floxed …

0301 basic medicineBiocompatibilityRecombinant Fusion ProteinsGene ExpressionComputational biologyBiologyExosomesPermeabilityCell LineExtracellular VesiclesMice03 medical and health sciencesDrug Delivery SystemsDrug DiscoveryGeneticsAnimalsMolecular BiologyPharmacologyIntegrasesbusiness.industryImmunogenicityMembrane ProteinsRNABrainProteinsMicrovesiclesBiotechnologyProtein Transport030104 developmental biologyTargeted drug deliveryBlood-Brain BarrierCommentaryMolecular MedicineOriginal ArticleNasal AbsorptionCarrier ProteinsGenetic EngineeringbusinessMolecular therapy : the journal of the American Society of Gene Therapy
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