Search results for "hydrogel"

showing 10 items of 373 documents

Degradable poly(amidoamine) hydrogels as scaffolds for in vitro culturing of peripheral nervous system cells.

2012

This paper reports on the synthesis and physico-chemical, mechanical, and biological characterization of two sets of poly(amidoamine) (PAA) hydrogels with potential as scaffolds for in vivo peripheral nerve regeneration. They are obtained by polyaddition of piperazine with N,N′-methylenebis(acrylamide) or 1,4-bis(acryloyl)piperazine with 1,2-diaminoethane as cross-linking agent and exhibit a combination of relevant properties, such as mechanical strength, biocompatibility, biodegradability, ability to induce adhesion and proliferation of Schwann cells (SCs) preserving their viability. Moreover, the most promising hydrogels, that is those deriving from 1,4-bis(acryloyl)piperazine, allow the …

Materials Chemistry2506 Metals and AlloysPoly(amidoamine)Cell SurvivalBioengineeringBiocompatible MaterialsNeural cell culturingPiperazinesRats Sprague-DawleyGanglia SpinalCell AdhesionPolyaminesAnimalsCell ProliferationNeuronsAcrylamidesPolymers and PlasticTissue EngineeringTissue ScaffoldsHydrogelsPolymer applicationEthylenediaminesBiomaterialNerve RegenerationRatsHydrogelBiodegradableSchwann CellsBiotechnologyMacromolecular bioscience
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Synthesis and evaluation of thermo-rheological behaviour and ionotropic crosslinking of new gellan gum-alkyl derivatives.

2018

Abstract This paper reports the synthesis and the physicochemical characterization of two series of gellan gum (GG) derivatives functionalized with alkyl chains with different number of carbon, from 8 to 18. In particular, low molecular weight gellan gum samples with 52.6 or 96.7 kDa, respectively, were functionalized with octylamine (C8), dodecylamine (C12) and octadecylamine (C18) by using bis(4-nitrophenyl) carbonate (4-NPBC) as a coupling agent. Thermo-rheological and ionotropic crosslinking properties of these gellan gum-alkyl derivatives were evaluated and related to the degree of derivatization in alkyl chains. Results suggested as length and degree of derivatization differently infl…

Materials Chemistry2506 Metals and AlloysPolymers and Plastics02 engineering and technologymacromolecular substances010402 general chemistry01 natural sciencesAlkylaminesGellan gumAlkylaminechemistry.chemical_compoundRheologyPolymer chemistryMaterials ChemistryDerivatizationAlkylchemistry.chemical_classificationPolymers and PlasticOrganic ChemistryHydrogels021001 nanoscience & nanotechnologyGellan gum0104 chemical sciencesHydrogelchemistrySettore CHIM/09 - Farmaceutico Tecnologico ApplicativoSelf-healing hydrogels0210 nano-technologyRheologyIonotropic effectCarbohydrate polymers
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Hyaluronic acid and beta cyclodextrins films for the release of corneal epithelial cells and dexamethasone

2016

In this work we prepared hydrogels based on hyaluronic acid and β-cyclodextrins to sustain the release of both corneal epithelial cells and dexamethasone. This steroid is administered as eye drops several times per day to reduce the risk of rejection in the post operative period after the cornea transplantation and cell release techniques. Hydrogels were produced by crosslinking an amino derivative of hyaluronic acid, with the divinyl sulfone derivative of β-cyclodextrins, this last employed as a crosslinker and solubilizing agent. Drug release studies revealed that dexamethasone containing samples are able to extend the release of this drug for at least five days. Biological studies, condu…

Materials Chemistry2506 Metals and AlloysPolymers and Plasticsmedicine.medical_treatmentCellBeta-CyclodextrinsCell release systemmacromolecular substances02 engineering and technologyPharmacology010402 general chemistry01 natural sciencesDexamethasoneSteroidCorneachemistry.chemical_compoundCorneaHyaluronic acidMaterials ChemistrymedicineCorneal woundHumansHyaluronic acid hydrogelHyaluronic AcidDexamethasoneCells CulturedDrug CarriersPolymers and Plasticbeta-CyclodextrinsOrganic Chemistrytechnology industry and agricultureEpithelial CellsHydrogelsAnatomy021001 nanoscience & nanotechnologyeye diseases0104 chemical sciencesTransplantationDrug Liberationmedicine.anatomical_structurechemistrySettore CHIM/09 - Farmaceutico Tecnologico ApplicativoSelf-healing hydrogelssense organs0210 nano-technologymedicine.drug
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Temporal control of xyloglucan self-assembly into layered structures by radiation-induced degradation

2016

Partially degalactosylated xyloglucan from tamarind seeds (Deg-XG) is a very appealing biopolymer for the production of in situ gelling systems at physiological temperature. In this work, we observe that the morphology of hydrogels evolves towards high degrees of structural organization with time, yielding to dense stacks of thin membranes within 24 h of incubation at 37 °C. We also explore the possibility offered by gamma irradiation of controlling the time scale of this phenomenon, the final morphology and mechanical properties of the system. Structural and molecular modifications of Deg-XG with dose are investigated by FTIR, dynamic light scattering (DLS) and rotational viscosimetry. The…

Materials Chemistry2506 Metals and AlloysTime FactorsMaterials scienceMorphology (linguistics)Polymers and PlasticsCell Survival02 engineering and technologyengineering.material010402 general chemistry01 natural sciencesPolymerizationNeuroblastomachemistry.chemical_compoundBiopolymersDynamic light scatteringCell Line TumorMaterials TestingSpectroscopy Fourier Transform InfraredMaterials ChemistryHumansHigh energy-irradiationComposite materialFourier transform infrared spectroscopyXyloglucanGlucansPolymers and PlasticViscosityMedicine (all)Organic ChemistryTemperatureHydrogelsSelf-assembly021001 nanoscience & nanotechnology0104 chemical sciencesXyloglucanHydrogelMembranechemistryChemical engineeringGamma RaysSelf-healing hydrogelsengineeringXylansThermoresponsive biopolymerBiopolymerSelf-assemblyShear Strength0210 nano-technologyCarbohydrate Polymers
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Nanosized hydrophobic gels: Advanced supramolecules for use in electrochemical bio- and immunosensing

2018

Abstract Nanosized hydrogels have emerging as versatile supramolecules materials with application in various electrochemical biosensing devices. This review reports a systematic study of the usefulness of nano-sized hydrogels in the different steps of the process of development of electrochemical biosensing systems. The advantages offered by nano-sized hydrogels in detection of analytes are illustrated with representative recent examples that highlight the scientific interest in widening the use of hydrogel nanoparticles in electrochemical biosensing methods. In this review, different types of hydrogel nanoparticles-based electrochemical biosensors, such as enzyme, protein, and nucleic acid…

Materials science010401 analytical chemistryNanoparticleNanotechnology02 engineering and technology021001 nanoscience & nanotechnologyElectrochemistry01 natural sciences0104 chemical sciencesAnalytical ChemistrySelf-healing hydrogelsElectrochemical biosensor0210 nano-technologySpectroscopyTrAC Trends in Analytical Chemistry
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Dynamic Tuning of Viscoelastic Hydrogels with Carbonyl Iron Microparticles Reveals the Rapid Response of Cells to Three-Dimensional Substrate Mechani…

2021

Current methods to dynamically tune three-dimensional hydrogel mechanics require specific chemistries and substrates that make modest, slow, and often irreversible changes to their mechanical properties, exclude the use of protein-based scaffolds, or alter hydrogel microstructure and pore size. Here, we rapidly and reversibly alter the mechanical properties of hydrogels consisting of extracellular matrix proteins and proteoglycans by adding carbonyl iron microparticles (MP) and applying external magnetic fields. This approach drastically alters hydrogel mechanics: rheology reveals that application of a 4,000 Oe magnetic field to a 5 mg/mL collagen hydrogel containing 10 wt% MPs increases th…

Materials science02 engineering and technologyCell morphologyMechanotransduction CellularViscoelasticityArticleExtracellular matrix03 medical and health sciencesMagneticsCarbonyl ironRheologyHumansGeneral Materials ScienceMechanotransductionParticle Sizeskin and connective tissue diseasesCells Cultured030304 developmental biologyCell Nucleus0303 health sciencesExtracellular Matrix ProteinsViscositytechnology industry and agricultureHydrogelsDynamic mechanical analysisMechanics021001 nanoscience & nanotechnologyElasticityExtracellular MatrixSelf-healing hydrogelsCalciumCollagen0210 nano-technologyIron CompoundsACS applied materialsinterfaces
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Influence of different parameters on drug release from hydrogel systems to a biomembrane model. Evaluation by differential scanning calorimetry techn…

2000

A comparative study on the drug release capacity of four water swellable polymeric systems was carried out by differential scanning calorimetry (DSC). The polymeric systems chosen were alpha,beta-polyaspartahydrazide (PAHy) crosslinked by glutaraldehyde (GLU) (PAHy-GLU) or by ethyleneglycoldiglycidylether (EGDGE), (PAHy-EGDGE), polyvinylalcohol (PVA) crosslinked by glutaraldehyde (PVA-GLU) and alpha,beta-poly(N-hydroxyethyl)-DL-aspartamide (PHEA) by gamma irradiation (PHEA-gamma matrices). The degree of crosslinking for PAHy-GLU, PAHy-EGDGE and PVA-GLU samples was about 0.4 and 0.8. These hydrogels were characterized as free of drugs and were loaded with diflunisal (DFN) (approximately 2.5%…

Materials science12-DipalmitoylphosphatidylcholinePolymersBiophysicsDiflunisalBioengineeringBiocompatible Materialsmacromolecular substancesBiomaterialschemistry.chemical_compoundDifferential scanning calorimetryDrug Delivery SystemsPolymer chemistryMaterials TestingmedicinePolyhydroxyethyl MethacrylateLiposomeCalorimetry Differential ScanningEpoxy ResinsVesicletechnology industry and agricultureHydrogelsMembranes ArtificialDiflunisalControlled releaseNylonsCross-Linking ReagentsHydrazineschemistryChemical engineeringMechanics of MaterialsGlutaralDipalmitoylphosphatidylcholineDelayed-Action PreparationsPolyvinyl AlcoholSelf-healing hydrogelsLiposomesCeramics and CompositesGlutaraldehydemedicine.drug
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Rheological characterization and release properties of inulin-based hydrogels

2012

Abstract In the present study the rheological properties of hydrogels obtained through UV irradiation of an aqueous solution of methacrylated inulin (INUMA) alone or in the presence of four different crosslinkers, have been recorded as a function of irradiation time, at two different wavelengths (320 and 365 nm) and fixed frequency and amplitude by oscillatory experiments. Each hydrogel has been analyzed by measurements of the frequency-dependency of the elastic modulus, G ′, in the linear viscoelastic region. The amount of polymeric chains giving an elastic response has been correlated to the chemical nature of the crosslinker used together with INUMA. Finally the release properties of the…

Materials scienceAqueous solutionPolymers and PlasticsOrganic ChemistryInulininulin hydrogelsInulinUV irradiationYoung's modulusDrug releaseViscoelasticityChemical hydrogelschemistry.chemical_compoundsymbols.namesakechemistryRheologySelf-healing hydrogelsMaterials ChemistrysymbolsIrradiationComposite materialElastic modulusRheological measurements
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Construction and evaluation of sponge scaffolds from hyaluronic acid derivatives for potential cartilage regeneration

2020

A two or one pot synthesis has been used for the reaction of hyaluronic acid (HA) with octadecylamine (C-18) and hydrazine (Hy). In both cases, the chemical derivatization involved primary hydroxyl groups of hyaluronic acid and not its carboxyl groups, whose presence is important for receptor interaction. In this way, Hy-HA-C-18 derivatives have been obtained with appropriate hydrophobic and hydrophilic character. Their ability to form homogeneous physical hydrogels has been evaluated as well as the possibility to obtain porous sponges through salt leaching technology. Sponges showing the highest porosity, potentially compatible with cell entrapment, have been characterized with regard to t…

Materials scienceBiomedical EngineeringSettore MED/08 - Anatomia PatologicaGlycosaminoglycanchemistry.chemical_compoundPhysiological conditionHyaluronidaseChemical derivatizationHyaluronic acidmedicineOrganic chemistryGeneral Materials ScienceHydrophobic and hydrophilicDerivatizationbiologyCartilageBovine chondrocyteGeneral ChemistryGeneral Medicinebiology.organism_classificationHyaluronic acid derivativeReceptor interactionSpongemedicine.anatomical_structurechemistryCartilage regenerationSettore CHIM/09 - Farmaceutico Tecnologico ApplicativoSelf-healing hydrogelsBiological propertieSwellingmedicine.symptommedicine.drugNuclear chemistryJournal of Materials Chemistry B
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Multifunctional Carrier Based on Halloysite/Laponite Hybrid Hydrogel for Kartogenin Delivery

2018

[Image: see text] A novel carrier system based on halloysite nanotubes (HNT), for the potential intraarticular delivery of kartogenin (KGN) by means laponite (Lap) hydrogel (HNT/KGN/Lap), is developed. The drug was first loaded into HNT, and the hybrid composite obtained was used as filler for laponite hydrogel. Both the filler and the hydrogel were thoroughly investigated by several techniques and the hydrogel morphology was imaged by transmission electron microscopy. Furthermore, the gelating ability of laponite in the presence of the filler and the rheological properties of the hybrid hydrogel were also investigated. The kinetic release of kartogenin from HNT and HNT/Lap hybrid hydrogel …

Materials scienceCarrier system010405 organic chemistryOrganic ChemistryComposite numbertechnology industry and agricultureSettore CHIM/06 - Chimica Organicamacromolecular substancesengineering.materialcomplex mixtures01 natural sciencesBiochemistryHalloysite0104 chemical sciencesKartogenin010404 medicinal & biomolecular chemistryHalloysite nanotubes kartogenin hybrid laponite hydrogelChemical engineeringDrug DiscoveryengineeringSettore CHIM/02 - Chimica FisicaACS Medicinal Chemistry Letters
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