Search results for "Flotillin"

showing 4 items of 4 documents

Flotillin-involved uptake of silica nanoparticles and responses of an alveolar-capillary barrier in vitro

2013

AbstractDrug and gene delivery via nanoparticles across biological barriers such as the alveolar-capillary barrier of the lung constitutes an interesting and increasingly relevant field in nanomedicine. Nevertheless, potential hazardous effects of nanoparticles (NPs) as well as their cellular and systemic fate should be thoroughly examined. Hence, this study was designed to evaluate the effects of amorphous silica NPs (Sicastar) and (poly)organosiloxane NPs (AmOrSil) on the viability and the inflammatory response as well as on the cellular uptake mechanisms and fate in cells of the alveolar barrier. For this purpose, the alveolar epithelial cell line (NCI H441) and microvascular endothelial…

EndosomeCell SurvivalLipid BilayersPharmaceutical ScienceGene deliverysilica nanoparticlesEndocytosisClathrinNP transportCell LineDrug Delivery SystemsAlveolar-capillary barrierAlveolar capillary barrierElectric ImpedanceHumansColoring AgentsInflammationFlotillin-1/-2-dependent uptake/traffickingbiologyChemistryRhodaminesVesicleMicrocirculationEndothelial CellsMembrane ProteinsGeneral Medicinerespiratory systemSilicon DioxideNP uptakeIn vitroCoculture TechniquesEndocytosisCapillariesEndothelial stem cellPulmonary AlveoliNP-transportNanomedicineCell cultureImmunologybiology.proteinBiophysicsNanoparticlesBiotechnologyEuropean Journal of Pharmaceutics and Biopharmaceutics
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Caveolin 3, flotillin 1 and influenza virus hemagglutinin reside in distinct domains on the sarcolemma of skeletal myofibers.

2011

We examined the distribution of selected raft proteins on the sarcolemma of skeletal myofibers and the role of cholesterol environment in the distribution. Immunofluorescence staining showed that flotillin-1 and influenza hemagglutinin exhibited rafts that located in the domains deficient of the dystrophin glycoprotein complex, but the distribution patterns of the two proteins were different. Cholesterol depletion from the sarcolemma by means of methyl-β-cyclodextrin resulted in distorted caveolar morphology and redistribution of the caveolin 3 protein. Concomitantly, the water permeability of the sarcolemma increased significantly. However, cholesterol depletion did not reshuffle flotillin…

Flotillin-1SarcolemmaArticle SubjectCholesterolSimilar distributionRaftImmunofluorescence stainingBiologyBiochemistryVirusCell biologyCaveolin 3lcsh:Biochemistrychemistry.chemical_compoundchemistryBiochemistrylcsh:QD415-436lipids (amino acids peptides and proteins)Research ArticleBiochemistry research international
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Interactions of silica nanoparticles with lung epithelial cells and the association to flotillins

2012

Amorphous silica nanoparticles (aSNPs) gain increasing popularity for industrial and therapeutic claims. The lung with its surface area of 100-140 m(2) displays an ideal target for therapeutic approaches, but it represents also a serious area of attack for harmful nanomaterials. The exact nature of the cytotoxic effects of NPs is still unknown. Furthermore, cellular pathways and the destiny of internalized NPs are still poorly understood. Therefore, we examined the cytotoxicity (MTS, LDH) and inflammatory responses (IL-8) for different-sized aSNPs (30, 70, 300 nm) on our lung epithelial cells line NCI H441 and endothelial cell line ISO-HAS-1. Additionally, colocalization studies have been c…

Time FactorsEndosomeCell SurvivalHealth Toxicology and MutagenesisEndothelial cellsCytotoxicityEndosomessilica nanoparticlesToxicologyEndocytosisTransfectionClathrinFlotillin-1siliciumFlotillin-2Alveolar-capillary barrierCell Line TumorAlveolar capillary barrierHumansInterleukin 8Inorganic CompoundsParticle SizeCytotoxicityLungbiologyDose-Response Relationship DrugL-Lactate DehydrogenaseInterleukin-8Membrane ProteinsInflammatory responseEpithelial CellsGeneral MedicineTransfectionSilicon DioxideEndocytosisCell biologyLung epithelial cellsEndothelial stem cellEndocytic vesiclebiology.proteinNanoparticlesRNA InterferenceInflammation Mediators
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Physical exercise induces rapid release of small extracellular vesicles into the circulation

2015

Cells secrete extracellular vesicles (EVs) by default and in response to diverse stimuli for the purpose of cell communication and tissue homeostasis. EVs are present in all body fluids including peripheral blood, and their appearance correlates with specific physiological and pathological conditions. Here, we show that physical activity is associated with the release of nano-sized EVs into the circulation. Healthy individuals were subjected to an incremental exercise protocol of cycling or running until exhaustion, and EVs were isolated from blood plasma samples taken before, immediately after and 90 min after exercise. Small EVs with the size of 100–130 nm, that carried proteins character…

exerciselcsh:Cytologyexosomes570 Life sciencesHsp70extracellular vesicles; exosomes; exercise; ergometer cycling; treadmill running; plasma; Hsp70; FlotillinFlotillinergometer cyclingtreadmill runningOriginal Research Articlelcsh:QH573-671extracellular vesiclesplasma570 BiowissenschaftenJournal of Extracellular Vesicles
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