Search results for "Hydrophobic and Hydrophilic Interactions"

showing 10 items of 189 documents

Sorption of 4-ethylphenol and 4-ethylguaiacol by suberin from cork

2015

International audience; Cork shows an active role in the sorption of volatile phenols from wine. The sorption properties of 4-ethylphenol and 4-ethylguaiacol phenols in hydro-alcoholic medium placed in contact with suberin extracted from cork were especially investigated. To that purpose, suberin was immersed in model wine solutions containing several concentrations of each phenol and the amount of the compound remaining in the liquid phase was determined by SPME-GC-MS. Sorption isotherms of 4-ethylguaiacol and 4-ethylphenol by suberin followed the Henry's model. The solid/liquid partition coefficients (KSL) between the suberin and the model wine were also determined for several other volat…

BrettanomycesWineCorkengineering.materialGas Chromatography-Mass SpectrometryAnalytical ChemistryQuercus[SPI]Engineering Sciences [physics]chemistry.chemical_compoundPhenolsSuberinOrganic chemistryPhenolsWine4-EthylphenolChromatographybiologyGuaiacolSorptionGeneral Medicine4-Ethylguaiacolbiology.organism_classificationLipidsOff-flavourchemistryengineeringSorptionAdsorptionSuberinCorkHydrophobic and Hydrophilic Interactions[SDV.AEN]Life Sciences [q-bio]/Food and NutritionFood ScienceFood Chemistry
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Purification and characterization of the ?-β-hydroxybutyrate dehydrogenase from dromedary liver mitochondria

2001

Abstract d -β-Hydroxybutyrate dehydrogenase (BDH) (EC 1.1.1.30), a membrane enzyme, has been purified to homogeneity from dromedary ( Camelus dromedarius ) liver mitochondria. Our new purification method consisted of the solubilization of mitochondrial membranes by Triton X 100 and purification of BDH by two steps: DEAE-Sephacel and Phenyl-Sepharose. The molecular mass of the enzyme subunit size was 67 kDa. The purified enzyme is recognized by anti rat liver mitochondrial BDH antibodies. Furthermore, BDH activity was absolutely dependent upon phospholipids. BDH is also characterized by specific enzymatic parameters: an optimum pH of approximately 8 for the oxidation reaction, and approximat…

CamelusPhysiologyProtein subunitBlotting WesternMitochondria LiverDehydrogenaseMitochondrionBiochemistryHydroxybutyrate Dehydrogenasechemistry.chemical_compoundEnzyme StabilityAnimalsMolecular BiologyPhospholipidschemistry.chemical_classificationChromatographyMolecular massTemperatureHydrogen-Ion ConcentrationChromatography Ion ExchangeDissociation constantKineticsMembraneEnzymechemistryBiochemistryTriton X-100Hydrophobic and Hydrophilic InteractionsComparative Biochemistry and Physiology Part B: Biochemistry and Molecular Biology
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Response of human chondrocytes to a non-uniform distribution of hydrophilic domains on poly (ethyl acrylate-co-hydroxyethyl methacrylate) copolymers.

2005

A series of polymer and copolymer networks with varying hydrophilicity and distribution of the hydrophilic groups was synthesized and biologically tested with monolayer culture of human chondrocytes in vitro. Cell viability (MTT), proliferation (BrdU incorporation) and aggrecan expression (PG ELISA) were quantified at 7 and 14 days from seeding. Both assays (MTT and BrdU) showed complementary results that are consistent with positive cellular adhesion on the material. When human chondrocytes were cultured on polymer substrates in which the hydrophilic groups were homogeneously distributed, hydrophobic substrates showed higher values in all the biological parameters analysed. Adhesion, proli…

Cartilage ArticularMaterials scienceCell SurvivalSurface PropertiesBiophysicsBioengineeringBiocompatible Materials(Hydroxyethyl)methacrylateMethacrylateBiomaterialschemistry.chemical_compoundChondrocytesPolymer chemistryMaterials TestingCopolymerCell AdhesionHumansViability assayCell adhesionCells CulturedCell Proliferationchemistry.chemical_classificationAdhesionPolymerCells ImmobilizedchemistryChemical engineeringMechanics of MaterialsCeramics and CompositesEthyl acrylateMethacrylatesHydrophobic and Hydrophilic InteractionsBiomaterials
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Catechol-Initiated Polyethers: Multifunctional Hydrophilic Ligands for PEGylation and Functionalization of Metal Oxide Nanoparticles

2012

Bifunctional CA-PEG (catechol-poly(ethylene glycol)) and multifunctional CA-PEG-PGA/PEVGE (poly(glycidyl amine)/poly(ethylene glycol vinyl glycidyl ether)) ligands for the functionalization and solubilization of nanoparticles are introduced. Tunable polymers with polydispersities1.25 and molecular weights in the range 500-7700 g mol(-1) containing a catechol moiety for conjugation to metal oxide nanoparticles were prepared. The functional PEG ligands were synthesized starting from the acetonide-protected catechol initiator 2,2-dimethyl-1,3-benzodioxole-5-propanol (CA-OH) for oxyanionic polymerization. CA-OH was used both for homopolymerization of ethylene oxide (EO) as well as copolymerizat…

CatecholPolymers and PlasticsEthylene oxideChemistryCatecholstechnology industry and agricultureMetal NanoparticlesBioengineeringmacromolecular substancesLigandsPolyethylene GlycolsBiomaterialschemistry.chemical_compoundPolymerizationPolymer chemistryMaterials ChemistryCopolymerPEGylationEpoxy CompoundsMoietyBifunctionalHydrophobic and Hydrophilic InteractionsEthylene glycolBiomacromolecules
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Lipid Bilayer Interactions of Peptidic Supramolecular Polymers and Their Impact on Membrane Permeability and Stability.

2020

The synthesis and physicochemical characterization of supramolecular polymers with tunable assembly profiles offer exciting opportunities, involving the development of new biomedical carriers. Because synthetic nanocarriers aim to transport substances across or toward cellular membranes, we evaluated the interactions of amphiphilic peptide-based supramolecular polymers with lipid bilayers. Here, we focused on nanorod-like supramolecular polymers, obtained from two C3-symmetric dendritic peptide amphiphiles with alternating Phe/His sequences, equipped with a peripheral tetraethylene glycol dendron (C3-PH) or charged ethylenediamine end groups (C3-PH+). Triggered by pH changes, these amphiphi…

Cell Membrane PermeabilityMembrane permeabilityCell SurvivalMacromolecular SubstancesPolymersSurface PropertiesLipid BilayersSupramolecular chemistryBiochemistryAmphiphileHumansParticle SizeLipid bilayerCells CulturedCell Proliferationchemistry.chemical_classificationNanotubesMolecular StructureChemistryBilayerHydrogen-Ion ConcentrationSupramolecular polymersMembraneHEK293 CellsBiophysicsDrug carrierPeptidesHydrophobic and Hydrophilic InteractionsBiochemistry
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Nanoscale Mapping of the Physical Surface Properties of Human Buccal Cells and Changes Induced by Saliva

2019

International audience; The mucosal pellicle, also called salivary pellicle, is a thin biological layer made of salivary and epithelial constituents, lining oral mucosae. It contributes to their protection against microbiological, chemical, or mechanical insults. Pellicle formation depends on the cells’ surface properties, and in turn the pellicle deeply modifies such properties. It has been reported that the expression of the transmembrane mucin MUC1 in oral epithelial cells improves the formation of the mucosal pellicle. Here, we describe an approach combining classical and functionalized tip atomic force microscopy and scanning microwave microscopy to characterize how MUC1 induces change…

Cell typeSalivaSurface Properties[SDV]Life Sciences [q-bio]Cellhuman buccal cells02 engineering and technology010402 general chemistry01 natural sciences[SPI]Engineering Sciences [physics]MicroscopyElectrochemistrymedicineElectric ImpedanceHumansNanotechnologyGeneral Materials ScienceSpectroscopyMUC1hydrophobicity[PHYS]Physics [physics]MouthsalivaChemistryMucinSurfaces and Interfaces021001 nanoscience & nanotechnologyCondensed Matter PhysicsTransmembrane protein0104 chemical sciencesScanning Microwave Microscopy SMMmedicine.anatomical_structureChemical force microscopydielectric propertiesBiophysicsChemical Force Microscopyfuntionalization0210 nano-technologyHydrophobic and Hydrophilic Interactions
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Penetration enhancer containing vesicles as carriers for dermal delivery of tretinoin.

2011

The ability of a recently developed novel class of liposomes to promote dermal delivery of tretinoin (TRA) was evaluated. New penetration enhancer-containing vesicles (PEVs) were prepared adding to conventional phosphatidylcholine vesicles (control liposomes) different hydrophilic penetration enhancers: Oramix® NS10 (OrNS10), Labrasol® (Lab), Transcutol® P (Trc), and propylene glycol (PG). Vesicles were characterized by morphology, size distribution, zeta potential, incorporation efficiency, stability, rheological behaviour, and deformability. Small, negatively charged, non-deformable, multilamellar vesicles were obtained. Rheological studies showed that PEVs had fluidity higher than conven…

Chemical PhenomenaStereochemistryDrug CompoundingSus scrofaPharmaceutical ScienceTretinoinAdministration CutaneousPermeabilityGlyceridesDiffusionchemistry.chemical_compoundGlucosidesPhosphatidylcholineZeta potentialAnimalsMicroparticleOrganic ChemicalsTransdermalSkinLiposomeDrug CarriersViscosityVesiclefungiPenetration (firestop)PermeationchemistryAnimals NewbornLiposomesBiophysicsEthylene GlycolsPharmaceutical VehiclesRheologyDialysisHydrophobic and Hydrophilic InteractionsInternational journal of pharmaceutics
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Making Broad Proteome Protein Measurements in 1−5 min Using High-Speed RPLC Separations and High-Accuracy Mass Measurements

2005

The throughput of proteomics measurements that provide broad protein coverage is limited by the quality and speed of both the separations as well as the subsequent mass spectrometric analysis; at present, analysis times can range anywhere from hours (high throughput) to days or longer (low throughput). We have explored the basis for proteomics analyses conducted on the order of minutes using high-speed capillary RPLC combined through on-line electrospray ionization interface with high-accuracy mass spectrometry (MS) measurements. Short 0.8-microm porous C18 particle-packed 50-microm-i.d. capillaries were used to speed the RPLC separations while still providing high-quality separations. Both…

Chemical ionizationElectrosprayTime FactorsChromatographyProteomeChemistryElutionElectrospray ionizationAnalytical chemistryMass spectrometryMass SpectrometryPeptide FragmentsFourier transform ion cyclotron resonanceFourier transform spectroscopyAnalytical ChemistrySpectroscopy Fourier Transform InfraredAnimalsHumansTrypsinHydrophobic and Hydrophilic InteractionsIon cyclotron resonanceChromatography LiquidAnalytical Chemistry
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Retention mechanisms in micellar liquid chromatography.

2008

Micellar liquid chromatography (MLC) is a reversed-phase liquid chromatographic (RPLC) mode with mobile phases containing a surfactant (ionic or non-ionic) above its critical micellar concentration (CMC). In these conditions, the stationary phase is modified with an approximately constant amount of surfactant monomers, and the solubilising capability of the mobile phase is altered by the presence of micelles, giving rise to diverse interactions (hydrophobic, ionic and steric) with major implications in retention and selectivity. From its beginnings in 1980, the technique has evolved up to becoming a real alternative in some instances (and a complement in others) to classical RPLC with hydro…

ChromatographyChemistryOrganic ChemistrySolvationIonic bondingGeneral MedicineReversed-phase chromatographyHydrogen-Ion ConcentrationBiochemistryMicelleAnalytical ChemistrySilanolchemistry.chemical_compoundSurface-Active AgentsModels ChemicalSolubilityMicellar liquid chromatographyPhase (matter)Critical micelle concentrationSolventsAdsorptionHydrophobic and Hydrophilic InteractionsAlgorithmsMicellesChromatography LiquidJournal of chromatography. A
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Effects of succinylation on thermal induced amyloid formation in Concanavalin A.

2007

We have recently shown that upon slight thermal destabilization the legume lectin Concanavalin A may undergo two different aggregation processes, leading, respectively, to amyloid fibrils at high pH and amorphous aggregates at low pH. Here we present an experimental study on the amyloid aggregation of Succinyl Concanavalin A, which is a dimeric active variant of Concanavalin. The results show that, as for the native protein, the fibrillation process appears to be favoured by alkaline pH, far from the isoelectric point of the protein. Moreover, it strongly depends on temperature and requires large conformational changes both at secondary and tertiary structure level. With respect to the nati…

Circular dichroismAmyloidProtein DenaturationAmyloidbiologyChemistryCircular DichroismBiophysicsLegume lectinGeneral MedicineProtein aggregationHydrogen-Ion ConcentrationProtein tertiary structureProtein Structure SecondaryProtein Structure Tertiaryprotein aggregationSuccinylationIsoelectric pointBiochemistryConcanavalin Abiology.proteinConcanavalin AThermodynamicsDimerizationHydrophobic and Hydrophilic Interactions
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