Search results for "Polyelectrolyte"

showing 10 items of 214 documents

The collagen type I segment long spacing (SLS) and fibrillar forms: Formation by ATP and sulphonated diazo dyes.

2016

The collagen type I segment long spacing (SLS) crystallite is a well-ordered rod-like molecular aggregate, ∼300nm in length, which is produced in vitro under mildly acidic conditions (pH 2.5-3.5) in the presence of 1mM ATP. The formation of the SLS crystallite amplifies the inherent linear structural features of individual collagen heterotrimers, due to the punctate linear distribution and summation of the bulkier amino acid side chains along the length of individual collagen heterotrimers. This can be correlated structurally with the 67nm D-banded collagen fibril that is found in vivo, and formed in vitro. Although first described many years ago, the range of conditions required for ATP-in…

0301 basic medicineMaterials sciencePolymersMethyl blueMuscle Fibers SkeletalGeneral Physics and AstronomyFibrilNegative StainingCollagen Type I03 medical and health scienceschemistry.chemical_compoundAdenosine TriphosphateStructural BiologyPolymer chemistryGeneral Materials ScienceColoring AgentsSirius RedEvans Bluechemistry.chemical_classification030102 biochemistry & molecular biologyFibrillogenesisCell BiologyPolyelectrolytesAmino acidCongo redMicroscopy Electron030104 developmental biologychemistryBiophysicsCrystalliteAzo CompoundsEvans BlueMicron (Oxford, England : 1993)
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Smart inulin-based polycationic nanodevices for siRNA delivery

2017

The advances of short interfering RNA (siRNA) mediated therapy provide a powerful option for the treatment of many diseases by silencing the expression of targeted genes including cancer development and progression. Inulin is a very simple and biocompatible polysaccharide proposed by our groups to produce interesting delivery systems for Nucleic Acid Based Drugs (NABDs), such as siRNA, either as polycations able to give polyplexes and polymeric coatings for nanosystems having a metallic core. In this research field, different functionalizing groups were linked to the inulin backbone with specific aims including oligoamine such as Ethylendiammine (EDA), Diethylediamine (DETA), Spermine, (SPM…

3003Small interfering RNABiocompatibilitysiRNA complexing abilityInulinPharmaceutical ScienceSpermineNanotechnology02 engineering and technology010402 general chemistry01 natural scienceschemistry.chemical_compoundDrug Delivery SystemsPolyaminesBiocompatibility; Silencing ability; siRNA complexing ability; 3003HumansNanotechnologyGene silencingRNA Small InterferingChemistryInulin021001 nanoscience & nanotechnologyPolyelectrolytes0104 chemical sciencesBiochemistryNucleic acidBiocompatibilityCancer development0210 nano-technologySilencing abilityChemical design
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Amphotropic Ionomers by Attachment of Secondary Amines to a Reactive Ester Polymer

2004

We report on the synthesis of polyacrylamides that were prepared by the reaction of a reactive ester polymer with a mesogen-containing secondary amine and N-methyl-piperazine. As the polymers do not form hydrogen bonds near the amide groups, their mobility is significantly higher than that of poly(N-monoalkylacrylamides). The initially nonionic polymer shows no liquid-crystalline behavior in bulk and in mixture with ethylene glycol. This is due to the low polarity difference between the different side chains. The polarity difference can be increased by protonation or quarter-nization of the tertiary amino groups, and liquid-crystalline behavior is observed. The self-assembly multilayer buil…

Acrylate polymerchemistry.chemical_classificationPolymers and PlasticsHydrogen bondOrganic ChemistryPolymerCondensed Matter PhysicsPolyelectrolytechemistry.chemical_compoundchemistryAmidePolymer chemistryMaterials ChemistrySide chainPhysical and Theoretical ChemistryEthylene glycolIonomerMacromolecular Chemistry and Physics
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Molecular Recognition by Hydrogen Bonding in Polyelectrolyte Multilayers

1997

Functional polyanions were prepared by copolymerization of sulfopropyl acrylate and sulfopropyl methacrylate with monomers bearing triaminopyrimidine or barbituric acid functionalities, respectively. Functionalized polyelectrolyte multilayers were assembled from these copolymers by stepwise alternating adsorption with poly(choline methacrylate). These multilayers are suited for molecular recognition of substrates that are complementary to the functional groups incorporated. Thus, multilayers containing triaminopyrimidine moieties selectively bind barbituric acid, and vice versa, when exposed to solutions of the 1:1 complex of barbituric acid and triaminopyrimidine. The molecular recognition…

AcrylateBarbituric acidHydrogen bondOrganic Chemistrytechnology industry and agricultureGeneral ChemistryMethacrylateCatalysisPolyelectrolytechemistry.chemical_compoundMolecular recognitionMonomerchemistryPolymer chemistryCopolymerChemistry - A European Journal
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Multi-Arm Star Polyglycerol-block-poly(tert-butyl acrylate) and the Respective Multi-Arm Poly(acrylic acid) Stars

2006

Well-defined multi-arm star block copolymers, polyglycerol-block-poly(tert-butyl acrylate) (PG-b-PtBA), with average arm-numbers of 17, 27, 36, 66 and 90 arms, respectively, have been prepared by atom transfer radical polymerization (ATRP) of tBA in acetone, using a core-first strategy. After hydrolysis with excess concentrated HCl in refluxing dioxane, full hydrolysis of the tert-butyl ester groups was achieved, resulting in multi-arm star polyelectrolytes, polyglycerol-block-poly(acrylic acid) (PG-b-PAA). The hyperbranched macroinitiators employed were prepared on the basis of hyperbranched polyglycerols via esterification with 2-bromoisobutyryl bromide. Both CuBr/PMDETA and CuBr/Me 6 TRE…

AcrylatePolymers and PlasticsChemistryAtom-transfer radical-polymerizationOrganic ChemistryDispersityCondensed Matter PhysicsPolyelectrolytechemistry.chemical_compoundHydrolysisBromidePolymer chemistryMaterials ChemistryCopolymerPhysical and Theoretical ChemistryAcrylic acidMacromolecular Chemistry and Physics
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Buildup of Ultrathin Multilayer Films by a Self-Assembly Process: II. Consecutive Adsorption of Anionic and Cationic Bipolar Amphiphiles and Polyelec…

1991

We have recently reported on the consecutive physisorption of anionic and cationic bipolar amphiphiles onto charged surfaces, adsorbed out of aqueous solutions [1]. Here, we extend our previous concept to multipolar compounds such as polyelectrolytes. In contrast to the bipolar amphiphile system, it is not necessary to separate single charges by a rigid unit, when the polyelectrolyte is adsorbed from sufficiently concentrated solutions. In this case the physisorbed layer does not bind with all ionic groups to the surface and exposes free ionic groups at the new film/solution interface. Therefore a polyelectrolyte layer can replace a layer of bipolar amphiphiles in the consecutive buildup of…

AdsorptionAqueous solutionMaterials scienceChemical engineeringGeneral Chemical EngineeringMonolayerAmphiphileIonic bondingNanotechnologySurface chargeSelf-assemblyPolyelectrolyteBerichte der Bunsengesellschaft für physikalische Chemie
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Layer-by-Layer Adsorption: The Solid/Liquid-Interface as a Template for the Controlled Growth of Well-Defined Nanostructures of Polyelectrolytes, Pro…

1994

This report describes the construction of ultrathin films whose structure can be tailored on the molecular scale. The resulting supramolecular film architectures may include functional biological macromolecules such as proteins or polynucleotides. The average distances of two functional layers can be adjusted on the nanometer scale (from less than lnm to several tens of nanometers), with a precision of approximately 0.1 nm. This control is achieved by varying the number and the thickness of the polyelectrolyte interlayers and requires the capability of steering each adsorption step with high accuracy. A crucial factor is the fabrication and manipulation of the film surface at each adsorptio…

AdsorptionMaterials scienceNanostructureLayer by layerSupramolecular chemistryNanotechnologyNanometreLayer (electronics)PolyelectrolyteMacromolecule
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Thermodynamic versus Conformational Metastability in Fibril-Forming Lysozyme Solutions

2012

The role of intermolecular interaction in fibril-forming protein solutions and its relation with molecular conformation is a crucial aspect for the control and inhibition of amyloid structures. Here, we study the fibril formation and the protein-protein interactions of lysozyme at acidic pH and low ionic strength. The amyloid formation occurs after a long lag time and is preceded by the formation of oligomers, which seems to be off-pathway with respect to fibrillation. By measuring the osmotic isothermal compressibility and the collective diffusion coefficient of lysozyme in solution, we observe that the monomeric solution is kept in a thermodynamically metastable state by strong electrosta…

AmyloidConformational changeProtein ConformationDiffusionOsmolar ConcentrationHydrogen-Ion ConcentrationFibrilProtein tertiary structurePolyelectrolyteSurfaces Coatings and FilmsSolutionschemistry.chemical_compoundMonomerchemistryChemical physicsMetastabilityMaterials ChemistryThermodynamicsMuramidasePhysical and Theoretical ChemistryLysozymeProtein BindingThe Journal of Physical Chemistry B
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Homogeneous Langmuir-Blodgett Film of Double-Chain Ammonium Amphiphile Complexed with Anionic Polymer

1988

Heterogeneous textures suggesting the coexistence of a fluid and a solid phase were found both in a surface monolayer and in a deposited Langmuir-Blodgett (LB) film of double-chain ammonium amphiphiles by fluorescence microscopy. Although an annealing of the surface monolayer at 40°C allowed crystal growth, the heterogeneous phase separation remained in the LB film. A drastic change of the fluorescence image shows that the recrystallization of the complexed monolayer with anionic polymers conducted the homogeneous monolayer.

Anionic addition polymerizationChemical engineeringAnnealing (metallurgy)ChemistryPhase (matter)AmphiphileMonolayerGeneral EngineeringGeneral Physics and AstronomyOrganic chemistryCrystal growthLangmuir–Blodgett filmPolyelectrolyteJapanese Journal of Applied Physics
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Thermo-responsive hydrogels from cellulose-based polyelectrolytes and catanionic vesicles for biomedical application.

2016

In this study, negatively charged catanionic vesicles/hydrophobically modified hydroxyethylcellulose polymers thermo-responsive hydrogels have been fabricated. Vesicular aggregates were found to act as multifunctional junctions for networking of modified-cellulose water solutions. The contributions of the electrostatic and hydrophobic interactions were evaluated by changing either vesicles composition or the polymer hydrophobic substitution. Thermal-induced size and lamellarity of hydrogel-enclosed vesicles were detected, with further polygonal shape changes induced by cellulose-based polymer addition. The thermal transition was also found to tune hydrogel mechanical behaviour. The network …

AnionsProton Magnetic Resonance SpectroscopyBiomedical EngineeringBiomedical TechnologyCeramics and CompositeBiomaterialsDiffusioncatanionic vesicleTheophyllineCationsCellulosecatanionic vesicles; cellulose; diffusion; hydrogel; NMR; rheology; Ceramics and Composites; Biomaterials; Biomedical Engineering; 2506ViscositydiffusionTemperatureHydrogelsBiomaterialPolyelectrolytescelluloseNMRElasticityDrug LiberationSettore CHIM/09 - Farmaceutico Tecnologico Applicativocatanionic vesiclesCeramics and Compositesrheologyhydrogel2506RheologyJournal of biomedical materials research. Part A
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