Search results for " liposomes"

showing 10 items of 41 documents

A novel ultradeformable liposomes of Naringin for anti-inflammatory therapy

2018

[EN] Ultradeformable liposomes were formulated using naringin (NA), a flavanone glycoside, at different concentrations (3, 6 and 9 mg/mL). Nanovesicles were small size (similar to 100 nm), regardless of the NA concentration used, and monodisperse (PI<0.30). All formulations showed a high entrapment efficiency (similar to 88%) and a highly negative zeta potential (around -30 mV). The selected formulations were highly biocompatible as confirmed by in vitro studies using 3T3 fibroblasts. In vitro assay showed that the amounts (%) of NA accumulated in the epidermis (similar to 10%) could explain the anti-inflammatory properties of ultradeformable liposomes. In vivo studies confirmed the higher …

0301 basic medicineAnti-Inflammatory AgentsDermatitis02 engineering and technologyPharmacologyMicechemistry.chemical_compoundColloid and Surface ChemistryZeta potentialSkinLiposomeTransdermal penetrationPellSurfaces and InterfacesGeneral Medicine021001 nanoscience & nanotechnologyFlavanonesPhosphatidylcholinesTetradecanoylphorbol AcetateBetamethasoneFemale0210 nano-technologyFlavanoneBiotechnologymedicine.drugAntiinflamatorisCell Survivalmedicine.drug_classDrug CompoundingSkin AbsorptionAdministration CutaneousIn vivo studiesAnti-inflammatory03 medical and health sciencesIn vivomedicineAnimalsPhysical and Theoretical ChemistryNaringinUltradeformable liposomesPhosphatidylethanolaminesLysophosphatidylcholinesFibroblastsIn vitro030104 developmental biologychemistryLiposomesNIH 3T3 CellsAnti-inflammatoryNaringin
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Role of pulmonary surfactant protein Sp-C dimerization on membrane fragmentation: An emergent mechanism involved in lung defense and homeostasis.

2020

Surfactant protein C (SP-C) is a protein present in the pulmonary surfactant system that is involved in the biophysical properties of this lipoprotein complex, but it also has a role in lung defense and homeostasis. In this article, we propose that the link between both functions could rely on the ability of SP-C to induce fragmentation of phospholipid membranes and generate small vesicles that serve as support to present different ligands to cells in the lungs. Our results using bimolecular fluorescence complementation and tunable resistive pulse sensing setups suggest that SP-C oligomerization could be the triggering event that causes membrane budding and nanovesiculation. As shown by flu…

0301 basic medicineBiophysicsBiochemistryCell Line03 medical and health sciencesBimolecular fluorescence complementation0302 clinical medicinePulmonary surfactantProtein DomainsHumansAmino Acid SequenceFragmentation (cell biology)Unilamellar LiposomesChemistryVesicleSurfactant protein CCell BiologyMembrane buddingFlow CytometryPulmonary Surfactant-Associated Protein CEndocytosisRecombinant ProteinsCell biology030104 developmental biology030228 respiratory systemMembrane proteinStructural biologyMicroscopy FluorescencePeptidomimeticsProtein MultimerizationDimerizationBiochimica et biophysica acta. Biomembranes
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Cholera Toxin Subunit B for Sensitive and Rapid Determination of Exosomes by Gel Filtration.

2020

We developed a sensitive fluorescence-based assay for determination of exosome concentration. In our assay, Cholera toxin subunit B (CTB) conjugated to a fluorescence probe and a gel filtration technique (size-exclusion chromatography) are used. Exosomal membranes are particularly enriched in raft-forming lipids (cholesterol, sphingolipids, and saturated phospholipids) and in GM1 ganglioside. CTB binds specifically and with high affinity to exosomal GM1 ganglioside residing in rafts only, and it has long been the probe of choice for membrane rafts. The CTB-gel filtration assay allows for detection of as little as 3 × 108 isolated exosomes/mL in a standard fluorometer, which has a sensitivit…

0301 basic medicineliposomesgel chromatographySize-exclusion chromatographyFiltration and Separationexosomesmedicine.disease_causelcsh:Chemical technologyExosomeGel permeation chromatography03 medical and health sciences0302 clinical medicineFluorometermedicineChemical Engineering (miscellaneous)lcsh:TP1-1185lcsh:Chemical engineeringcholera toxin subunit BQuantitation RangeLiposomeChromatographyChemistryGM1 ganglioside; cholera toxin subunit B; cholesterol; exosomes; gel chromatography; liposomesProcess Chemistry and TechnologyCommunicationCholera toxinlcsh:TP155-156cholesterol030104 developmental biologyMembrane030220 oncology & carcinogenesislipids (amino acids peptides and proteins)GM1 gangliosideMembranes
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Hidden complexity in membrane permeabilization behavior of antimicrobial polycations.

2021

A promising alternative to classical antibiotics are antimicrobial peptides and their synthetic mimics (smAMPs) that supposedly act directly on membranes. For a more successful design of smAMPs, we need to know how the type of interaction with the membrane determines the type of membrane perturbation. How this, in turn, transfers into selectivity and microbial killing activity is largely unknown. Here, we characterize the action of two smAMPs: MM:CO (a copolymer of hydrophobic cyclooctyl subunits and charged β-monomethyl-α-aminomethyl subunits) and the highly charged poly-NM (a homopolymer of α-aminomethyl subunits). By thorough characterization of vesicle leakage experiments, we elucidate …

0303 health sciencesMembrane permeabilizationChemistryVesicleKineticsAntimicrobial peptidesStatic ElectricityGeneral Physics and Astronomy010402 general chemistryAntimicrobialFluoresceins01 natural sciencesPermeability0104 chemical sciences03 medical and health sciencesMembraneGlycerophosphatesBiophysicsPhysical and Theoretical ChemistryHydrophobic and Hydrophilic InteractionsUnilamellar Liposomes030304 developmental biologyLeakage (electronics)Antimicrobial Cationic PeptidesProtein BindingPhysical chemistry chemical physics : PCCP
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The influence of tin compounds on the dynamic properties of liposome membranes: A study using the ESR method

2005

AbstractThe influence of organic and inorganic compounds of tin on the dynamic properties of liposome membranes obtained in the process of dipalmitoylphosphatidylcholine (DPPC) sonication in distilled water was investigated. This was carried out by means of the spin ESR probe method. The probes were selected in such a way as to penetrate different areas of the membrane (a TEMPO probe, 5-DOXYL stearic acid, 16-DOXYL stearic acid). Four compounds of tin were chosen: three organic ones, (CH3)4Sn, (C2H5)4Sn and (C3H7)3SnCl, and one inorganic one, SnCl2. The investigated compounds were added to a liposome dispersion, which was prepared prior to that. The concentration of the admixture was change…

12-DipalmitoylphosphatidylcholineShort CommunicationSonicationTin compoundsInorganic chemistrychemistry.chemical_elementDPPC liposomesBiochemistrychemistry.chemical_compoundOrganometallic CompoundsMolecular BiologyESRchemistry.chemical_classificationLiposomeElectron Spin Resonance SpectroscopyMembranes ArtificialCell Biologyequipment and suppliesMembraneHydrocarbonchemistryBiochemistryDistilled waterMolecular ProbesDipalmitoylphosphatidylcholineLiposomesSpin LabelsStearic acidTinCellular and Molecular Biology Letters
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The influence of natural and model forms of humic acids on the dynamic parameters of model membranes

2016

In this paper the influence of humic acid concentrations extracted from Histosols (HA-A) and their model forms (HA-B) separated from humic substances commercially produced by Carl Roth GmbH + Co.KG on the dynamic properties of liposome membranes was determined. Differences in the quality of the humic acids (HA-A and HA-B) were determined by the 1HNMR and FTIR methods. Liposomes from the sonication of egg yolk lecithin (EYL) in an aqueous solution and synthetic Dipalmitoylphosphatidylcholine (DPPC) were used. Fluidity of liposome membranes was determined by the EPR technique with spin probes (TEMPO, 16DOIXYL). The electrical parameters of membranes were found using a Keithley 6517 electromet…

1HNMRspin labellecithin liposomeshumic acidESREcological Chemistry and Engineering. S = Chemia i Inżynieria Ekologiczna. S
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Stabilization of unilamellar catanionic vesicles induced by β-cyclodextrins: A strategy for a tunable drug delivery depot.

2018

The limited stability of catanionic vesicles has discouraged their wide use for encapsulation and controlled release of active substances. Their structure can easily break down to form lamellar phases, micelles or rearrange into multilamellar vesicles, as a consequence of small changes in their composition. However, despite the limited stability, catanionic vesicles possess an attractive architecture, which is able to efficiently encapsulate both hydrophobic and hydrophilic molecules. Therefore, improving the stability of the vesicles, as well as the control on unilamellar structures, are prerequisites for their wider application range. This study focuses on the impact of β-cyclodextrins fo…

3003DepotPharmaceutical Science02 engineering and technology010402 general chemistry01 natural sciencesMicelleDiffusionSurface-Active AgentsDrug Delivery SystemsCyclodextrinLamellar structureUnilamellar Liposomeschemistry.chemical_classificationCatanionic vesiclesCyclodextrinChemistryCetrimoniumVesiclebeta-Cyclodextrinstechnology industry and agricultureTemperatureSodium Dodecyl SulfateCatanionic vesicles; Cyclodextrin; Diffusion; NMR; Self-assembly; 3003Self-assembly021001 nanoscience & nanotechnologyCatanionic vesicleControlled releaseNMR0104 chemical sciencesChemical engineeringSettore CHIM/09 - Farmaceutico Tecnologico ApplicativoDrug deliveryCetrimonium Compoundslipids (amino acids peptides and proteins)Self-assembly0210 nano-technologyInternational journal of pharmaceutics
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COMBINATION OF ARGAN OIL AND PHOSPHOLIPIDS FOR THE DEVELOPMENT OF AN EFFECTIVE LIPOSOME-LIKE FORMULATION ABLE TO IMPROVE SKIN HYDRATION AND ALLANTOIN…

2016

Allantoin is traditionally employed in the treatment of skin ulcers and hypertrophic scars. In the present work, to improve its local deposition in the skin and deeper tissues, allantoin was incorporated in conventional liposomes and in new argan oil enriched liposomes. In both cases, obtained vesicles were unilamellar, as confirmed by cryo-TEM observation, but the addition of argan oil allowed a slight increase of the mean diameter (∼130nm versus ∼85nm). The formulations, especially those containing argan oil, favoured the allantoin accumulation in the skin, in particular in the dermis (∼8.7μg/cm(2)), and its permeation through the skin (∼33μg/cm(2)). The performances of vesicles as skin d…

3003Pig skinfood.ingredientSwineChemistry PharmaceuticalSkin AbsorptionPharmaceutical ScienceArgan oil02 engineering and technologyAdministration Cutaneous030207 dermatology & venereal diseases03 medical and health scienceschemistry.chemical_compoundDrug Delivery Systems0302 clinical medicineAllantoinfoodDermisElastic ModulusSkin rheologymedicineAnimalsPlant OilsAllantoinSofteningPhospholipidsSkinDrug CarriersLiposomeChromatographyintegumentary systemChemistryVesicleLiposomes; Argan oil; Phospholipids; Pig skin; Turbiscan lab; Skin rheology; Skin hydrationPermeation021001 nanoscience & nanotechnologyTurbiscan labmedicine.anatomical_structureSkin hydrationArgan oilLiposomesDermatologic Agents0210 nano-technologyDrug carrierargan oil; liposomes; phospholipids; pig skin; skin hydration; skin rheology; turbiscan lab; 3003
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Thermodynamic Study of Small Hydrophobic Ions at the Water–Lipid Interface

2001

Abstract The thermodynamics of binding of two small hydrophobic ions such as norharman and tryptophan to neutral and negatively charged small unilamellar vesicles was investigated at pH 7.4 using fluorescence spectroscopy. Vesicles were formed at room temperature from dimyristoyl phosphatidylcholine (DMPC) or DMPC/dimyristoylphosphatidic acid and DMPC/dimyristoylphosphatidylglycerol. The changes in fluorescence properties were used to obtain association isotherms at variable membrane surface negative charge and at different ionic strengths. The binding of both ions was found to be quantitatively enhanced as the percentage of negative phospholipid increases in the membrane. Also, a decrease …

Analytical chemistryPhospholipidPhosphatidic AcidsIonic bondingBiomaterialschemistry.chemical_compoundColloid and Surface ChemistryIon bindingElectrochemistryLipid bilayerUnilamellar LiposomesIonsChromatographyVesicleTryptophanBinding constantSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsPartition coefficientHarminechemistryPartition equilibriumThermodynamicslipids (amino acids peptides and proteins)DimyristoylphosphatidylcholineHydrophobic and Hydrophilic InteractionsCarbolinesJournal of Colloid and Interface Science
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Comparative analysis of the electrostatics of the binding of cationic proteins to vesicles: Asymmetric location of anionic phospholipids

2009

The role of electrostatics is studied in the adsorption of cationic proteins to zwitterionic phosphatidylcholine (PC) and anionic PC/phosphatidylglycerol (PG) mixed small unilamellarvesicles (SUVs). For model proteins the interaction is monitored vs. PG content at low ionic strength. The adsorption of lysozyme and myoglobin (isoelectric point, pl 7-11) is investigated in SUVs, along with changes of the fluorescence emission spectra of the cationic proteins, via their adsorption on SUVs. In the Gouy-Chapman formalism, the activity coefficient goes with the square of charge number. Deviations from the ideal model could indicate the asymmetric location of the anionic phospholipid in the bilaye…

AnionsStatic ElectricityFluorescence spectrometryAnalytical chemistryBiochemistryAnalytical Chemistrychemistry.chemical_compoundCationsEnvironmental ChemistryProtein–lipid interactionPhospholipidsUnilamellar LiposomesSpectroscopyMyoglobinChemistryBilayerOsmolar ConcentrationCationic polymerizationProteinsCharge numberPhosphatidylglycerolsCrystallographySpectrometry FluorescenceIsoelectric pointMyoglobinIonic strengthPhosphatidylcholinesMuramidaseProtein BindingAnalytica Chimica Acta
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