Search results for "emulsion"

showing 10 items of 344 documents

Thermophoretic separation of a ferrofluid–water emulsion: preliminary experiments

2002

Abstract The Soret effect in an emulsion (microdroplets of hydrocarbon based ferrofluid in water) is evaluated from the separation measurements in vertical thermodiffusion column. The particle concentration in column ends is detected from the resonance frequency of LC oscillators with inductance coils mounted inside the column ends. The Soret coefficient S T of droplets is calculated from the initial part of dynamic separation curves. The measured value S T =−480 K −1 agrees qualitatively well with the calculated one found assuming the Maragoni-type transfer of liquid particles.

Physics::Fluid DynamicsInductancechemistry.chemical_classificationFerrofluidMaterials scienceHydrocarbonchemistryEmulsionParticleThermodynamicsCondensed Matter PhysicsThermophoresisElectronic Optical and Magnetic MaterialsJournal of Magnetism and Magnetic Materials
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Oscillations in the dynamics of temperature-driven phase separation

1997

We examine the dynamics of the phase separation of a single phase of water-in-oil microemulsion droplets towards a phase of smaller droplets coexisting with a water-rich phase. Oscillations are observed in the turbidity of the mixture and in the specific heat, when this transition is induced by a continuous temperature increase. The oscillations indicate an unusual type of dynamics which involves an energy barrier only to be overcome by a large number of droplets collectively. It is due to the spontaneous curvature of the water-oil-interface, and conservation of volumes.

Physics::Fluid DynamicsMaterials scienceSpecific heatChemical physicsPhase (matter)Dynamics (mechanics)General Physics and AstronomyThermodynamicsMicroemulsionTurbiditySingle phaseCurvatureComplex fluidEurophysics Letters (EPL)
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Composite nanoparticles based on hyaluronic acid chemically cross-linked with alpha,beta-polyaspartylhydrazide.

2007

In this paper, new composite nanoparticles based on hyaluronic acid (HA) chemically cross-linked with alpha,beta polyaspartylhydrazide (PAHy) were prepared by the use of a reversed-phase microemulsion technique. HA-PAHy nanoparticles were characterized by FT-IR spectroscopy, confirming the occurrence of the chemical cross-linking, dimensional analysis, and transmission electron micrography, showing a sub-micrometer size and spherical shape. Zeta potential measurements demonstrated the presence of HA on the nanoparticle surface. A remarkable affinity of the obtained nanoparticles toward aqueous media that simulate some biological fluids was found. Stability studies showed the absence of chem…

Polymers and PlasticsBiocompatibilityCell SurvivalNanoparticleBioengineeringAntineoplastic AgentsPolymeric nanoparticles hyaluronic acid polyaminoacidBiomaterialschemistry.chemical_compoundDrug Delivery SystemsMicroscopy Electron TransmissionPolymer chemistryHyaluronic acidSpectroscopy Fourier Transform InfraredMaterials ChemistryZeta potentialHumansMicroemulsionHyaluronic AcidParticle SizeChemical decompositionChemistryHydrolysisEquipment DesignNylonsCross-Linking ReagentsHydrazinesChemical engineeringNanoparticlesFluorouracilDrug carrierK562 CellsNanogelBiomacromolecules
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Protein-Based Nanoparticles for the Delivery of Enzymes with Antibacterial Activity.

2018

Proteins represent a versatile biopolymer material for the preparation of nanoparticles due to their biocompatibility, biodegradability, and low immunogenicity. This study presents a protein-based nanoparticle system consisting of high surface PEGylated lysozyme polyethylene glycol-modified lysozyme (LYZmPEG ). This protein modification leads to a solubility switch, which allows a nanoparticle preparation using a mild double emulsion method without the need of surfactants. The method allows the encapsulation of large hydrophilic payloads inside of the protein-based nanoparticle system. Native lysozyme (LYZ) was chosen as payload because of its innate activity as natural antibiotic. The mild…

Polymers and PlasticsBiocompatibilityNanoparticle02 engineering and technologyengineering.material010402 general chemistryGram-Positive Bacteria01 natural sciencesPolyethylene Glycolschemistry.chemical_compoundMaterials ChemistryHumansSolubilityDrug CarriersChemistryOrganic ChemistryProteinsBiodegradation021001 nanoscience & nanotechnology0104 chemical sciencesAnti-Bacterial AgentsChemical engineeringengineeringNanoparticlesEmulsionsMuramidaseBiopolymerLysozyme0210 nano-technologyDrug carrierAntibacterial activityHydrophobic and Hydrophilic InteractionsMacromolecular rapid communications
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Acid‐Labile Amphiphilic PEO‐ b ‐PPO‐ b ‐PEO Copolymers: Degradable Poloxamer Analogs

2016

Poly ((ethylene oxide)-b-(propylene oxide)-b-(ethylene oxide)) triblock copolymers commonly known as poloxamers or Pluronics constitute an important class of nonionic, biocompatible surfactants. Here, a method is reported to incorporate two acid-labile acetal moieties in the backbone of poloxamers to generate acid-cleavable nonionic surfactants. Poly(propylene oxide) is functionalized by means of an acetate-protected vinyl ether to introduce acetal units. Three cleavable PEO-PPO-PEO triblock copolymers (Mn,total = 6600, 8000, 9150 g·mol(-1) ; Mn,PEO = 2200, 3600, 4750 g·mol(-1) ) have been synthesized using anionic ring-opening polymerization. The amphiphilic copolymers exhibit narrow molec…

Polymers and PlasticsBiodegradable Plastics02 engineering and technology010402 general chemistry01 natural sciencesPolyethylene Glycolschemistry.chemical_compoundPolymer chemistryAmphiphileMaterials ChemistrymedicineCopolymerSurface TensionPropylene oxideEthylene oxideHydrolysisOrganic ChemistryVinyl etherPoloxamer021001 nanoscience & nanotechnology0104 chemical sciencesMiniemulsionchemistryPolymerization0210 nano-technologymedicine.drugMacromolecular Rapid Communications
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Protection of active aroma compound against moisture and oxygen by encapsulation in biopolymeric emulsion-based edible films.

2008

International audience; Edible films made of ι-carrageenans display interesting advantages: good mechanical properties, stabilization of emulsions, and reduction of oxygen transfers. Moreover, the addition of lipids to ι-carrageenan-based films to form emulsified films decreases the transfer of water vapor and can be considered to encapsulate active molecules as flavors. The aim of this study was to better understand the influence of the composition and the structure of the carrageenan-based film matrices on its barrier properties and thus on its capacity to encapsulate and to protect active substances encapsulated. Granulometry, differential scanning calorimetry, and Fourier transform infr…

Polymers and PlasticsBioengineeringCarrageenanHexanalHydrocarbons AromaticPermeabilityBiomaterialschemistry.chemical_compoundOxygen permeabilityDifferential scanning calorimetryBiopolymersSpectroscopy Fourier Transform InfraredMaterials ChemistryAroma compoundOrganic chemistry[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringFourier transform infrared spectroscopyFlavorAldehydesCalorimetry Differential ScanningFood PackagingWaterCarrageenanOxygenchemistryChemical engineeringEmulsionEmulsionsVolatilizationBiomacromolecules
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Polysaccharide-Based pH-Responsive Nanocapsules Prepared with Bio-Orthogonal Chemistry and Their Use as Responsive Delivery Systems.

2020

Bio-orthogonal reactions have become an essential tool to prepare biomaterials; for example, in the synthesis of nanocarriers, bio-orthogonal chemistry allows circumventing common obstacles related to the encapsulation of delicate payloads or the occurrence of uncontrolled side reactions, which significantly limit the range of potential payloads to encapsulate. Here, we report a new approach to prepare pH-responsive nanocarriers using dynamic bio-orthogonal chemistry. The reaction between a poly(hydrazide) crosslinker and functionalized polysaccharides was used to form a pH-responsive hydrazone network. The network formation occurred at the interface of aqueous nanodroplets in miniemulsion …

Polymers and PlasticsBioengineeringNanotechnologyBiocompatible Materials02 engineering and technology010402 general chemistryHydrazidePolysaccharide01 natural sciencesNanocapsulesArticleBiomaterialschemistry.chemical_compoundNanocapsulesPolysaccharidesMaterials Chemistrychemistry.chemical_classificationAqueous solutionChemistrytechnology industry and agricultureHydrogen-Ion Concentration021001 nanoscience & nanotechnology0104 chemical sciencesMiniemulsionNanocarriers0210 nano-technologyBiomacromolecules
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Polypeptoid-block-polypeptide Copolymers: Synthesis, Characterization, and Application of Amphiphilic Block Copolypept(o)ides in Drug Formulations an…

2013

We report the synthesis of polysarcosine-block-polyglutamic acid benzylester (PSar-block-PGlu(OBn)) and polysarcosine-block-polylysine-ε-N-benzyloxycarbonyl (PSar-block-PLys(Z)) copolymers. The novel polypeptoid-block-polypeptide copolymers (Copolypept(o)ides) have been synthesized by ring-opening polymerization (ROP) of N-carboxyanhydrides (NCAs). Polymerization conditions were optimized regarding protecting groups, block sequence and length. While the degree of polymerization of the PSar block length was set to be around 200 or 400, PGlu(OBn) and PLys(Z) block lengths were varied between 20 to 75. The obtained block copolymers had a total degree of polymerization of 220-475 and dispersity…

Polymers and PlasticsCell SurvivalPolymersSurface PropertiesChemistry PharmaceuticalDispersityBioengineeringDegree of polymerizationBiomaterialsPeptoidsStructure-Activity RelationshipSurface-Active AgentsColloidCell Line TumorBlock (telecommunications)AmphiphilePolymer chemistryMaterials ChemistryCopolymerHumansParticle SizeDose-Response Relationship DrugChemistryMiniemulsionHEK293 CellsPolymerizationEmulsionsPeptidesBiomacromolecules
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Heparin-Based Nanocapsules as Potential Drug Delivery Systems

2015

Herein, the synthesis and characterization of heparin-based nanocapsules (NCs) as potential drug delivery systems is described. For the synthesis of the heparin-based NCs, the versatile method of miniemulsion polymerization at the droplets interface was achieved resulting in narrowly distributed NCs with 180 nm in diameter. Scanning and transmission electron microscopy images showed clearly NC morphology. A highly negative charge density for the heparin-based NCs was determined by measuring the electro-kinetic potential. Measuring the activated clotting time demonstrated the biological intactness of the polymeric shell. The ability of heparin-based NCs to bind to antithrombin (AT III) was i…

Polymers and PlasticsChemistryAnalytical chemistryBioengineeringIsothermal titration calorimetrybehavioral disciplines and activitiesNanocapsulesBiomaterialsMiniemulsionPolymerizationChemical engineeringDynamic light scatteringTransmission electron microscopymental disordersDrug deliveryMaterials ChemistryChemical stabilityBiotechnologyMacromolecular Bioscience
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Tetrazine- and trans -cyclooctene-functionalised polypept(o)ides for fast bioorthogonal tetrazine ligation

2020

The inverse electron demand Diets-Alder (IEDDA) reaction-initiated ligation between 1,2,4,5-tetra-zines (Tz) and trans-cyclooctenes (TCO) is one of the fastest bioorthogonal reactions known today and is therefore increasingly used for in vivo click chemistry. Described herein is the synthesis of Tz- and TCO-functionalised polypeptides, polypeptoids and polypeptide-block-polypeptoids (polypept(o) ides) by ring-opening polymerisation of the corresponding N-carboxyanhydrides using Tz- or TCO-functional amine initiators. Despite the reactivity of tetrazines, polymers with low dispersity and high end group integrity can be obtained as observed by gel permeation chromatography (GPC), nuclear magn…

Polymers and PlasticsChemistryOrganic ChemistryBioengineering02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesBiochemistryCombinatorial chemistry0104 chemical sciencesGel permeation chromatographyMiniemulsionEnd-groupchemistry.chemical_compoundTetrazineCycloocteneClick chemistryReactivity (chemistry)Bioorthogonal chemistry0210 nano-technologyPolymer Chemistry
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