Search results for "Hydrogel"

showing 10 items of 373 documents

CROSSLINKED HYALURONAN WITH A PROTEIN-LIKE POLYMER: NOVEL BIORESORBABLE FILMS FOR BIOMEDICAL APPLICATIONS

2007

In this work, novel hydrogel films based on hyaluronan (HA) chemically crosslinked with the alpha,beta-poly(N-2-hydroxyethyl) (2-aminoethylcarbamate)-D,L-aspartamide (PHEA-EDA) were produced by solution casting method. The goal was to exploit both the biological key role of HA in tissue repair and regeneration, and the versatility of a synthetic protein-like polymer as the PHEA-EDA, in order to obtain biomaterials with physicochemical and biological properties suitable for a clinical use. By varying the molar ratio between the PHEA-EDA amino groups and HA carboxyl groups, three different films were obtained and characterized. Particularly FTIR, swelling, hydrolysis, and enzymatic degradatio…

Materials scienceCell SurvivalBiomedical EngineeringTetrazolium SaltsBiomaterialsHydrolysischemistry.chemical_compoundTissue engineeringCoated Materials BiocompatibleHyaluronidaseNephelometry and TurbidimetryPolymer chemistryHyaluronic acidSpectroscopy Fourier Transform InfraredmedicineCell AdhesionPolyaminesHumansHyaluronic AcidAspartameSkinchemistry.chemical_classificationWound HealingHydrolysisMetals and AlloysProteinsCalorimetry IndirectHydrogelsPolymerTrypan BlueFibroblastsThiazolesCross-Linking ReagentschemistryChemical engineeringHYDROGELS HYALURONIC ACIDSettore CHIM/09 - Farmaceutico Tecnologico ApplicativoSelf-healing hydrogelsCeramics and CompositesTrypan blueSwellingmedicine.symptommedicine.drug
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Naphthalimide imidazolium-based supramolecular hydrogels as bioimaging and theranostic soft materials

2020

1,8-Naphthalimide-based imidazolium salts differing for the alkyl chain length and the nature of the anion were synthesized and characterized to obtain fluorescent probes for bioimaging applications. First, their self-assembly behavior and gelling ability were investigated in water and water/dimethyl sulfoxide binary mixtures. Only salts having longer alkyl chains were able to give supramolecular hydrogels, whose properties were investigated by using a combined approach of fluorescence, resonance light scattering, and rheology measurements. Morphological information was obtained by scanning electron microscopy. In addition, conductive properties of organic salts in solution and gel state we…

Materials scienceCell SurvivalMacromolecular SubstancesSurface PropertiesScanning electron microscopeimidazolium salts010402 general chemistry01 natural sciencesTheranostic Nanomedicinechemistry.chemical_compoundbioimaging; fluorescence; imidazolium salts; naphthalimide; supramolecular hydrogelsCell Line TumorPhase (matter)HumansGeneral Materials ScienceParticle SizeSettore BIO/06 - Anatomia Comparata E CitologiabioimagingAlkylFluorescent Dyeschemistry.chemical_classificationMolecular Structure010405 organic chemistryDimethyl sulfoxideOptical ImagingImidazolesHydrogelsBiological activitySettore CHIM/06 - Chimica OrganicaResonance (chemistry)Combinatorial chemistryFluorescencenaphthalimide0104 chemical sciencesNaphthalimideschemistrySelf-healing hydrogelssupramolecular hydrogelsfluorescence
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Drug release from alpha,beta-poly(N-2-hydroxyethyl)-DL-aspartamide-based microparticles.

2004

Abstract Spherical pH-sensitive microparticles have been prepared by reverse phase suspension polymerization technique. Starting polymer has been α , β -poly( N -2-hydroxyethyl)- dl -aspartamide (PHEA) partially derivatized with glycidylmethacrylate (GMA). PHEA-GMA copolymer (PHG) has been crosslinked in the presence of acrylic acid (AA) or methacrylic acid (MA) at various concentration. The obtained microparticles have been characterized by FT-IR spectrophotometry, particle size distribution analysis and scanning electron microscopy. In order to have information about water affinity of the prepared samples, swelling measurements have been carried out in aqueous media which simulate some bi…

Materials scienceChemical structureBiophysicsDrug Evaluation PreclinicalMolecular ConformationBioengineeringAbsorptionBiomaterialsDiffusionchemistry.chemical_compoundDrug Delivery SystemsSpectrophotometryPolymer chemistrymedicineCopolymerParticle SizeAcrylic acidchemistry.chemical_classificationDrug Carriersmedicine.diagnostic_testWaterHydrogelsPolymerMicrospheresBody FluidschemistryMethacrylic acidPharmaceutical PreparationsMechanics of MaterialsDelayed-Action PreparationsCeramics and CompositesSuspension polymerizationSwellingmedicine.symptomPeptidesNuclear chemistryBiomaterials
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RFID epidermal sensor including hydrogel membranes for wound monitoring and healing

2015

This contribution experimentally demonstrates for the first time the feasibility of joint application of passive UHF RFID technology and hydrogel membranes to fabricate smart plasters able to gather and remotely transmit information on the conditions of human skin. In particular, this intelligent plaster is sensitive to temperature and fluid uptake/release and could open interesting scenarios in wound healing monitoring and drug delivery.

Materials scienceComputer Networks and CommunicationsRFID sensortechnology industry and agriculturesmart plasterSettore ING-INF/02 - Campi ElettromagneticiWound monitoringepidermal electronics; hydrogel; RFID sensor; smart plaster; would healing;epidermal electronicDrug deliveryHydrogel membraneepidermal electronicsElectrical and Electronic Engineeringhydrogelwould healingBiomedical engineering
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Biological oxygen apparent transmissibility of hydrogel contact lenses with and without organosilicon moieties.

2003

The instrument oxygen transmissibility (IOT) of organosilicon hydrogels, measured by electrochemical procedures, is 5-10 times larger than that of conventional hydrogels. A method is described that allows the estimation of the oxygen tension at the lens-cornea interface for closed- and open-eyelids situations by combining the IOT of the hydrogels and corneal parameters such as corneal thickness, corneal permeability and oxygen flux across the cornea. From these results the biological oxygen apparent transmissibility (BOAT) is obtained, an important parameter which an multiplication with the pressure of oxygen on the external part of the lens gives the oxygen flux onto the cornea. Contact le…

Materials scienceContact LensesPartial PressureBiophysicschemistry.chemical_elementBioengineeringElectrochemistryOxygenlaw.inventionBiomaterialsCorneaOpticslawCorneamedicineHumansOrganosilicon CompoundsComposite materialTransmissibility (structural dynamics)business.industryHydrogelsPartial pressureeye diseasesOxygen tensionLens (optics)Oxygenmedicine.anatomical_structurechemistryMechanics of MaterialsSelf-healing hydrogelsCeramics and Compositessense organsbusinessBiomaterials
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Multi-scale structural analysis of xyloglucan colloidal dispersions and hydro-alcoholic gels

2020

Xyloglucans are highly branched, hydroxyl rich polyglucans that for their abundance in nature, biocompatibility, film forming and gelation ability may take a prominent role in the design and fabrication of biomedical devices, including in situ forming scaffolds for tissue engineering, wound dressings and epidermal sensors. The understanding and exploitation of their self-assembly behavior is key for the device performance optimization. A multi-scale analysis, conducted combining small-angle X-ray scattering, both static and dynamic light scattering at large and small angles, and rheological measurements, provides a description of the supramolecular organization of this biopolymer, from the …

Materials scienceFabricationPolymers and PlasticsBiocompatibilitySupramolecular chemistry02 engineering and technologyengineering.material010402 general chemistry01 natural scienceschemistry.chemical_compoundColloidDynamic light scatteringRheologyRHEOLOGYSupramolecular structureXyloglucanDYNAMIC LIGHT-SCATTERINGHydrogelsSelf-assembly021001 nanoscience & nanotechnologyGELATION0104 chemical sciencesXyloglucanHydrogelchemistryChemical engineeringengineeringSettore CHIM/07 - Fondamenti Chimici Delle TecnologieBiopolymer0210 nano-technology
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An Inverse Thermogelling Bioink Based on an ABA-Type Poly(2-oxazoline) Amphiphile

2021

Hydrogels are key components in several biomedical research areas such as drug delivery, tissue engineering, and biofabrication. Here, a novel ABA-type triblock copolymer comprising poly(2-methyl-2-oxazoline) as the hydrophilic A blocks and poly(2-phenethyl-2-oxazoline) as the aromatic and hydrophobic B block is introduced. Above the critical micelle concentration, the polymer self-assembles into small spherical polymer micelles with a hydrodynamic radius of approx 8-8.5 nm. Interestingly, this specific combination of hydrophilic and hydrophobic aromatic moieties leads to rapid thermoresponsive inverse gelation at polymer concentrations above a critical gelation concentration (20 wt %) into…

Materials scienceHydrodynamic radiusPolymers and Plastics0206 medical engineering116 Chemical sciencesBioengineering02 engineering and technology010402 general chemistry01 natural sciencesMicelleBiomaterialsMiceAmphiphileMaterials ChemistryCopolymerAnimalsOxazoleschemistry.chemical_classificationTissue EngineeringBioprintingHydrogelsPolymer021001 nanoscience & nanotechnology020601 biomedical engineering0104 chemical sciencesChemical engineeringchemistryCritical micelle concentrationPrinting Three-DimensionalSelf-healing hydrogels0210 nano-technologyBiofabrication
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Surface-Assisted Self-Assembly of a Hydrogel by Proton Diffusion

2018

International audience; Controlling supramolecular growth at solid surfaces is of great importance to expand the scope of supramolecular materials. Here we describe a dendritic benzene-1,3,5-tricarboxamide peptide conjugate whose assembly can be triggered by a pH jump. Stopped flow kinetics and mathematical modeling provide a quantitative understanding of the nucleation, elongation, and fragmentation behavior in solution. To assemble the molecule at a solid-liquid interface, we use proton diffusion from the bulk. The latter needs to be slower than the lag phase of nucleation in order to progressively grow a hydrogel outwards from the surface. Our method of surface-assisted self-assembly is …

Materials scienceKineticsNucleationSupramolecular chemistry02 engineering and technology010402 general chemistry01 natural sciencesCatalysisFragmentation (mass spectrometry)Molecule010405 organic chemistry[CHIM.ORGA]Chemical Sciences/Organic chemistryGeneral MedicineGeneral Chemistry[CHIM.ORGA] Chemical Sciences/Organic chemistry021001 nanoscience & nanotechnology[PHYS.COND.CM-SCM] Physics [physics]/Condensed Matter [cond-mat]/Soft Condensed Matter [cond-mat.soft]0104 chemical sciencesChemical engineering[CHIM.OTHE] Chemical Sciences/OtherSelf-healing hydrogelsSelf-assemblyElongation0210 nano-technology[CHIM.OTHE]Chemical Sciences/Other[PHYS.COND.CM-SCM]Physics [physics]/Condensed Matter [cond-mat]/Soft Condensed Matter [cond-mat.soft]
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Thermodynamic control over energy dissipation modes in dual-network hydrogels based on metal-ligand coordination.

2020

Modern polymeric hydrogels use reversible bonds to mimic biological functionalities. However, true biological materials benefit from several supramolecular elements and deliver multiple functions at the same time. To approach similar creation and control of multiple different functional elements in a synthetic soft material, we develop a model dual-network hydrogel in which multiple energy dissipating modes are formed by metal–ligand coordination and regulated by their association thermodynamics. This idea is realized by using linear and tetra-arm poly(ethylene glycol) (PEG) precursors with complementary reactive end groups. The former also carries terpyridine ligands on both ends, which fo…

Materials scienceLigandMetal ions in aqueous solutionSupramolecular chemistry02 engineering and technologyGeneral ChemistryDissipation010402 general chemistry021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciences0104 chemical sciencesIonMetalchemistry.chemical_compoundchemistryChemical physicsvisual_artSelf-healing hydrogelsvisual_art.visual_art_mediumTerpyridine0210 nano-technologySoft matter
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Wavelength-Selective Softening of Hydrogel Networks.

2021

Photoresponsive hydrogels hold key potential in advanced biomedical applications including tissue engineering, regenerative medicine, and drug delivery, as well as intricately engineered functions such as biosensing, soft robotics, and bioelectronics. Herein, the wavelength-dependent degradation of bio-orthogonal poly(ethylene glycol) hydrogels is reported, using three selective activation levels. Specifically, three chromophores are exploited, that is, ortho-nitrobenzene, dimethyl aminobenzene, and bimane, each absorbing light at different wavelengths. By examining their photochemical action plots, the wavelength-dependent reactivity of the photocleavable moieties is determined. The wavele…

Materials scienceLightCell SurvivalNanotechnologyBiocompatible MaterialsCell LinePolyethylene Glycolschemistry.chemical_compoundMiceBimaneTissue engineeringCell AdhesionAnimalsGeneral Materials ScienceNitrobenzenesBioelectronicsDrug CarriersMechanical Engineeringtechnology industry and agricultureHydrogelsChromophoreBridged Bicyclo Compounds HeterocyclicchemistryMechanics of MaterialsDrug deliverySelf-healing hydrogelsBiosensorEthylene glycolAdvanced materials (Deerfield Beach, Fla.)
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