Search results for "Self-healing"

showing 10 items of 222 documents

In Vivo Gene-Silencing in Fibrotic Liver by siRNA-Loaded Cationic Nanohydrogel Particles

2015

Cationic nanohydrogel particles loaded with anti-Col1α1 siRNA suppress collagen synthesis and deposition in fibrotic mice: Systemically administered 40 nm sized nanogel particles accumulate in collagen-expressing cells in the liver. Their siRNA payload induces a sequence specific in vivo gene knockdown affording an efficient antifibrotic effect in mice with liver fibrosis.

Liver CirrhosisMaterials scienceBiomedical EngineeringNanogelsPharmaceutical ScienceCell LinePolyethylene GlycolsBiomaterialsMiceIn vivoFibrosisCationsmedicineAnimalsPolyethyleneimineGene silencingTissue DistributionGene SilencingRNA Small InterferingGene knockdownGene Transfer TechniquesCationic polymerizationHydrogelsmedicine.diseaseMolecular biologyCell biologyCell cultureSelf-healing hydrogelsNanoparticlesNanogelAdvanced Healthcare Materials
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Guar gum/borax hydrogel: Rheological, low field NMR and release characterizations

2013

Guar gum (GG) and Guar gum/borax (GGb) hydrogels are studied by means of rheology, Low Field Nuclear Magnetic Resonance (LF NMR) and model drug release tests. These three approaches are used to estimate the mesh size (ζ) of the polymeric network. A comparison with similar Scleroglucan systems is carried out. In the case of GGb, the rheological and Low Field NMR estimations of ζ lead to comparable results, while the drug release approach seems to underestimate ζ. Such discrepancy is attributed to the viscous effect of some polymeric chains that, although bound to the network to one end, can freely fluctuate among meshes. The viscous drag exerted by these chains slows down drug…

Low field NMRMaterials sciencePolymers and PlasticsField (physics)General Chemical EngineeringDiffusionTransport processeslcsh:Chemical technologyPolymer Gels; Rheology; Low Field NMR; Transport processes; Mesh-sizechemistry.chemical_compoundRheologylcsh:TA401-492Materials ChemistryPolymer Gellcsh:TP1-1185Physical and Theoretical ChemistryComposite materialTransport processeGuar gumBoraxPolymer gelsOrganic ChemistryMesh-sizeLow field nuclear magnetic resonanceLow Field NMRlow field nmr; mesh-size; polymer gels; rheology; transport processesChemical engineeringchemistrySettore CHIM/09 - Farmaceutico Tecnologico ApplicativoSelf-healing hydrogelsViscous effectlcsh:Materials of engineering and construction. Mechanics of materialsRheologyExpress Polymer Letters
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3D printing novel in vitro cancer cell culture model systems for lung cancer stem cell study

2021

Two-dimensional (2D) in vitro cell cultures and laboratory animals have been used traditionally as the gold-standard preclinical cancer model systems. However, for cancer stem cell (CSC) studies, they exhibit notable limitations on simulating native environment, which depreciate their translatability for clinical development purposes. In this study, different three-dimensional (3D) printing platforms were used to establish novel 3D cell cultures enriched in CSCs from non-small cell lung cancer (NSCLC) patients and cell lines. Rigid scaffolds with an elevated compressive modulus and uniform pores and channels were produced using different filaments. Hydrogel-based scaffolds were printed with…

Lung NeoplasmsStereolithographyMaterials scienceCell Culture TechniquesBioengineeringFused deposition modeling02 engineering and technology010402 general chemistry01 natural sciencesBiomaterialsCancer stem cellIn vivoCarcinoma Non-Small-Cell LungAnimalsHumansCancer modelLungTissue ScaffoldsCancer stem cellsSpheroidHydrogels3D printing021001 nanoscience & nanotechnologyIn vitro0104 chemical sciencesCell biologyMechanics of MaterialsCell culturePrinting Three-DimensionalSelf-healing hydrogelsCancer cellNeoplastic Stem CellsLung cancerStem cell0210 nano-technologyMaterials Science and Engineering: C
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Design, synthesis and stimuli responsive gelation of novel stigmasterol-amino acid conjugates.

2020

Abstract An efficient synthesis of three novel stigmasterol-amino acid (glycine, l -leucine and l -phenylalanine) conjugates as stimuli responsive gelators is reported. The gelation properties of the prepared compounds were investigated in a variety of organic as well as aqueous solvents. The most striking finding of our investigation was that the hydrochloride salts of the prepared conjugates acted as gelators, whereas the neutral conjugates were either non-gelators or formed only a weak gel in anisole. The hydrochloride salts of stigmasteryl glycinate and l -leucinate form gels in n-alcohols (n = 4–10) and in ethane-1,2-diol, and that of stigmasteryl l -phenylalaninate forms gels in aroma…

Magnetic Resonance SpectroscopyHydrochloridePhenylalanineGlycineStigmasterolPhenylalaninePhase TransitionBiomaterialschemistry.chemical_compoundColloid and Surface ChemistryLeucineSpectroscopy Fourier Transform InfraredOrganic chemistrychemistry.chemical_classificationBiological ProductsAqueous solutionChemistryWaterHydrogen BondingHydrogen-Ion ConcentrationAnisoleSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsAmino acidDelayed-Action PreparationsGlycineSelf-healing hydrogelsMicroscopy Electron ScanningSolventsHydrochloric AcidLeucineGelsJournal of colloid and interface science
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DIFFERENTIAL SCANNING CALORIMETRY STUDY ON DRUG RELEASE FROM AN INULIN-BASED HYDROGEL AND ITS INTERACTION WITH A BIOMEMBRANE MODEL:pH AND LOADING EFF…

2008

Inulin has been derivatized with methacrylic anhydride (MA) and succinic anhydride (SA) to obtain a methacrylated/succinilated derivative (INU-MA-SA) able to produce a pH sensitive hydrogel after UV irradiation. The hydrogel was characterized and loaded with diflunisal (10.4, 17 and 24%, w/w) chosen as a model drug. The drug release from INU-MA-SA-based hydrogel to a biomembrane model made by unilamellar vesicles of dimyristoylphosphatidyl-choline (DMPC) was investigated at pH 4.0 and 7.4 by differential scanning calorimetry (DSC) that appears to be a suitable technique to follow the transfer kinetics of a drug from a controlled release system to a biomembrane model. The drug release from t…

Magnetic Resonance SpectroscopyINULIN HYDROGELS DRUG RELEASE DIFFERENTIAL SCANNING CALORIMETRYPharmaceutical ScienceDiflunisalMethacrylic anhydrideCentrifugationInsulysinDosage formchemistry.chemical_compoundDifferential scanning calorimetryX-Ray DiffractionSpectroscopy Fourier Transform InfraredmedicineHypoglycemic AgentsChromatography High Pressure LiquidChromatographyCalorimetry Differential ScanningVesicleAnti-Inflammatory Agents Non-Steroidaltechnology industry and agricultureSuccinic anhydrideInulinHydrogelsMembranes ArtificialSuccinatesHydrogen-Ion ConcentrationDiflunisalControlled releaseMolecular WeightchemistryChemical engineeringSolubilitySelf-healing hydrogelsSpectrophotometry UltravioletChromatography Thin LayerDimyristoylphosphatidylcholinemedicine.drug
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Disulfide-crosslinked hyaluronan-gelatin hydrogel films: a covalent mimic of the extracellular matrix for in vitro cell growth

2003

A new disulfide crosslinking method was developed for the preparation of blended hyaluronan (HA)-gelatin hydrogels to form a synthetic, covalently linked mimic of the extracellular matrix (ECM). The HA and gelatin were chemically modified using 3,3′-dithiobis(propionic hydrazide) (DTP). After reduction with dithiothreitol (DTT), the thiol derivatives of HA (HA-DTPH) and gelatin (gelatin-DTPH) were obtained and characterized. To minimize interference with biological function, the degree of substitution of HA-DTPH and gelatin-DTPH was kept below 50%. Solutions of HA-DTPH and gelatin-DTPH in varying blends (20%, 40%, 60%, 80% gelatin) were prepared in 1% w/v NaCl and crosslinked by disulfide b…

Magnetic Resonance SpectroscopyTime FactorsBiocompatible MaterialsSodium ChlorideGelatinHydrogel Polyethylene Glycol DimethacrylateDithiothreitolCell growthMicechemistry.chemical_compoundHyaluronic acidDisulfidesHyaluronic Acidchemistry.chemical_classificationMice Inbred BALB CBiomaterialHydrogels3T3 CellsMethylgalactosidesExtracellular MatrixCross-Linking ReagentsMechanics of MaterialsCovalent bondSelf-healing hydrogelsThiolCell DivisionBiotechnologyfood.ingredientMaterials scienceCell SurvivalBiomedical EngineeringBiophysicsHyaluronoglucosaminidaseBioengineeringmacromolecular substancesIn Vitro TechniquesHydrazideBiomaterialsDisulfidefoodPolymer chemistryCell AdhesionAnimalsSulfhydryl Compoundstechnology industry and agricultureFibroblastsBiomaterialDithiothreitolModels ChemicalchemistryCeramics and CompositesGelatinPolystyrenesBiomaterials
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Self-assembling and auto-crosslinkable hyaluronic acid hydrogels with a fibrillar structure

2008

Abstract A hyaluronic acid derivative bearing pendant l -benzoyl-cysteine portions (with a derivatization degree equal to 10 mol.%) was synthesized by linking N,N′-dibenzoyl- l -cystine to the polysaccharide and then reducing its disulfide bridge to thiol groups. The formation of π–π stacking interactions between the benzoyl moieties was studied by fluorescence spectroscopy as a function of polymer concentration and oxidation time. The efficiency of oxidation of thiol groups to disulfide bridges occurring in phosphate buffer pH 7.4, was determined by colorimetric assays. The hydrogel formed by means of oxidative crosslinking has shown the presence of fibrillar aggregates as detected by ligh…

Magnetic Resonance SpectroscopyTime FactorsMaterials scienceCell SurvivalPolymersBiomedical EngineeringCystineStackingBiochemistryFluorescence spectroscopyPhosphatesBiomaterialschemistry.chemical_compoundMaterials TestingSpectroscopy Fourier Transform InfraredPolymer chemistryHyaluronic acidHumansDisulfidesHyaluronic AcidDerivatizationMolecular BiologyCell Proliferationchemistry.chemical_classificationHydrogelsGeneral MedicinePolymerFibroblastsHydrogen-Ion ConcentrationOxygenCross-Linking ReagentschemistrySettore CHIM/09 - Farmaceutico Tecnologico ApplicativoSelf-healing hydrogelsMicroscopy Electron ScanningThiolCystineself assembling tissue engineering hyaluronic acid cell entrapmentBiotechnology
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Collagen-low molecular weight hyaluronic acid semi-interpenetrating network loaded with gelatin microspheres for cell and growth factor delivery for …

2015

Intervertebral disc (IVD) degeneration is one of the main causes of low back pain. Current surgical treatments are complex and generally do not fully restore spine mobility. Development of injectable extracellular matrix-based hydrogels offers an opportunity for minimally invasive treatment of IVD degeneration. Here we analyze a specific formulation of collagen-low molecular weight hyaluronic acid (LMW HA) semi-interpenetrating network (semi-IPN) loaded with gelatin microspheres as a potential material for tissue engineering of the inner part of the IVD, the nucleus pulposus (NP). The material displayed a gel-like behavior, it was easily injectable as demonstrated by suitable tests and did …

MaleMaterials scienceBiomedical EngineeringMice SCIDMesenchymal Stem Cell TransplantationBiochemistryChondrocyteInjectionsBiomaterialsExtracellular matrixchemistry.chemical_compoundTransforming Growth Factor beta3Tissue engineeringImplants ExperimentalElastic ModulusHyaluronic acidmedicineAnimalsHumansRegenerationHyaluronic AcidIntervertebral DiscMolecular BiologyMesenchymal stem cellViscosityRegeneration (biology)Mesenchymal stem cellMesenchymal Stem CellsGeneral MedicineChondrocyteChondrogenesisMicrospheresMolecular WeightHydrogelmedicine.anatomical_structurechemistrySelf-healing hydrogelsGelatinCollagenRheologyChondrogenesisBiotechnologyBiomedical engineeringActa biomaterialia
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In situ crosslinkable hyaluronan hydrogels for tissue engineering

2003

We describe the development of an injectable, cell-containing hydrogel that supports cell proliferation and growth to permit in vivo engineering of new tissues. Two thiolated hyaluronan (HA) derivatives were coupled to four alpha,beta-unsaturated ester and amide derivatives of poly(ethylene glycol) (PEG) 3400. The relative chemical reactivity with cysteine decreased in the order PEG-diacrylate (PEGDA)>>PEG-dimethacrylate>PEG-diacrylamide>PEG-dimethacrylamide. The 3-thiopropanoyl hydrazide derivative (HA-DTPH) was more reactive than the 4-thiobutanoyl hydrazide, HA-DTBH. The crosslinking of HA-DTPH with PEGDA in a molar ratio of 2:1 occurred in approximately 9 min, suitable for an in situ cr…

MaleMaterials sciencePolyethylene glycolCell SurvivalBiophysicsMice NudeBioengineeringBiocompatible Materialsmacromolecular substancesPolyethylene glycolBiomaterialschemistry.chemical_compoundMiceTissue engineeringIn vivoPEG ratioHyaluronic acidMaterials TestingmedicineAnimalsHumansHyaluronic AcidCell encapsulationFibroblastCells CulturedTissue EngineeringForeign-Body Reactiontechnology industry and agricultureHydrogelsCell encapsulationFibroblastsmedicine.anatomical_structureCross-Linking ReagentsBiochemistrychemistryGlycosaminoglycanDiacrylateCell-compatible crosslinkingMechanics of MaterialsSelf-healing hydrogelsCeramics and CompositesBiophysicsIn vivo biocompatibilityCell Division
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INULIN BASED HYDROGEL FOR ORAL DELIVERY OF FLUTAMIDE: PREPARATION, CHARACTERIZATION AND IN VIVO RELEASE STUDIES

2012

The ability of a hydrogel obtained by crosslinking INUDV and PEGBa to facilitate sustained release of flutamide is examined. The hydrogel is prepared in pH = 7.4 PBS and no toxic solvents or catalysts are used. It is recovered in microparticulate form and its size distribution is determined. Mucoadhesive properties are evaluated in vitro by reproducing gastrointestinal conditions. Flutamide is loaded into the hydrogel using a post-fabrication encapsulation procedure that allows a drug loading comparable to that of market tablets. Drug-loaded microparticles are orally administered to cross-bred dogs and the in vivo study demonstrates their ability to prolong the half-life of the principal ac…

MalePolymers and PlasticsInulinAdministration OralBiological AvailabilityBioengineeringPharmacologyFlutamideBiomaterialschemistry.chemical_compoundDogsDrug Delivery SystemsIn vivoMaterials ChemistryDistribution (pharmacology)AnimalsHypoglycemic AgentsInsulinActive metabolitetechnology industry and agricultureAndrogen AntagonistsHydrogelsIn vitroFlutamideBioavailabilitychemistrySelf-healing hydrogelsBiotechnologyHalf-Life
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