Search results for "Drug release"

showing 10 items of 61 documents

Development of an lbuprofen-Releasing Biodegradable PLA/PGA Electrospun Scaffold for Tissue Regeneration

2009

Our aim was to develop a biodegradable fibrous dressing to act as a tissue guide for in situ wound repair while releasing Ibuprofen to reduce inflammation in wounds and reduce pain for patients on dressing changes. Dissolving the acid form of Ibuprofen (from 1% to 10% by weight) in the same solvent as 75% polylactide, 25% polyglycolide (PLGA) polymers gave uniformly loaded electrospun fibers which gave rapid release of drug within the first 8 h and then slower release over several days. Scaffolds with 10% Ibuprofen degraded within 6 days. The Ibuprofen released from these scaffolds significantly reduced the response of fibroblasts to major pro-inflammatory stimulators. Fibroblast attachment…

KeratinocytesScaffoldPolyglycolidePolyesterswound healingBioengineeringBiocompatible MaterialsIbuprofenbiodegradationApplied Microbiology and Biotechnologychemistry.chemical_compoundTissue engineeringmedicineCell AdhesionHumansdrug releaseCells CulturedCell ProliferationTissue EngineeringTissue ScaffoldsChemistryorganic chemicalsRegeneration (biology)Anti-Inflammatory Agents Non-SteroidalFibroblastsIbuprofenPLGAinflammationSettore CHIM/09 - Farmaceutico Tecnologico ApplicativoDelayed-Action PreparationsLiberationWound healingPolyglycolic AcidBiotechnologyBiomedical engineeringmedicine.drug
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Relation between structural and release properties in a polysaccharide gel system.

2007

Abstract The potential utility of κ-carrageenan gels for preparing drug release devices is here shown. Structural properties of κ-carrageenan gels prepared with different salt composition and containing Ketoprofen sodium salt, as model drug, have been evaluated with static light scattering and rheological measurements. These properties have been correlated with release profiles in vitro at pH 5.5. Release properties from gelled matrices have been compared with those obtained by two commercial products containing the same drug. Results show that: i) in this system it is possible to easily control the gel texture by using different cationic concentration; ii) the kinetics of drug release by κ…

KetoprofenKineticsBiophysicsSalt (chemistry)Franz's cellsPolysaccharideCarrageenanBiochemistryStructure-Activity RelationshipK-carrageenanRheologyPolysaccharidesmedicineStatic light scatteringTexture (crystalline)drug releasechemistry.chemical_classificationDrug CarriersChromatographyOrganic ChemistryCationic polymerizationgel structural propertieKineticschemistryKetoprofenGelsmedicine.drugBiophysical chemistry
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Near-Infrared, Light-Triggered, On-Demand Antiinflammatories and Antibiotics Release by Graphene Oxide/Elecrospun PCL Patch for Wound Healing

2019

Very recently, significant attention has been focused on the adsorption and cell adhesion properties of graphene oxide (GO), because it is expected to allow high drug loading and controlled drug release, as well as the promotion of cell adhesion and proliferation. This is particularly interesting in the promotion of wound healing, where antibiotics and anti-inflammatories should be locally released for a prolonged time to allow fibroblast proliferation. Here, we designed an implantable patch consisting of poly(caprolactone) electrospun covered with GO, henceforth named GO&ndash

Ketoprofenvancomycinwound healing02 engineering and technology010402 general chemistry01 natural scienceslcsh:QD241-441chemistry.chemical_compoundlcsh:Organic chemistryIn vivopolycaprolactonemedicineFibroblastCell adhesionplasmaGeneral MedicineAdhesion021001 nanoscience & nanotechnologyon-demand drug release0104 chemical sciencesmedicine.anatomical_structurechemistryPolycaprolactoneBiophysicsgraphene oxide0210 nano-technologyWound healingCaprolactonemedicine.drug
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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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SELF-ASSEMBLED AMPHIPHILIC HYALURONIC ACID GRAFT COPOLYMERS FOR TARGETED RELEASE OF ANTITUMORAL DRUG

2009

Polymeric micelles obtained by self-assembling of amphiphilic hyaluronic acid (HA) graft copolymers have been prepared and characterized. In particular, hyaluronic acid (HA) has been grafted to polylactic acid (PLA) and polyethylenglycol chains (PEG), then the copolymers able to form micelles in aqueous medium have been chosen to entrap the antitumoral drug Doxorubicin. The critical aggregation concentration of HA-g-PLA or HA-g-PLA-g-PEG micelles has been determined by using pyrene as a fluorescent probe, whereas their shape and size have been evaluated by light scattering measurements, scanning and transmission electron microscopies. The selective cytotoxicity of drug loaded micelles towar…

Magnetic Resonance SpectroscopySELF ASSEMBLING HYALURONIC ACID DRUG RELEASEPolymersMolecular Sequence DataPharmaceutical ScienceAntineoplastic Agentsmacromolecular substancesMicelleCell Linechemistry.chemical_compoundMiceDrug Delivery SystemsPolylactic acidCell Line TumorHyaluronic acidPEG ratioAmphiphileCopolymerOrganic chemistryAnimalsHumansHyaluronic AcidMicellesDrug CarriersChemistrytechnology industry and agricultureMicroscopy ElectronCarbohydrate SequenceMicroscopy FluorescenceSettore CHIM/09 - Farmaceutico Tecnologico ApplicativoBiophysicsPyreneDrug carrier
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Hyaluronic Acid Derivative with Improved Versatility for Processing and Biological Functionalization

2016

A hydrophobic/amino functionalized derivative of hyaluronic acid (HA-EDA-C18 ) has been processed by salt leaching technique as porous scaffold without need of chemical crosslinking. Aim of this work is to demonstrate the improved versatility of HA-EDA-C18 in terms of processing and biological functionalization. In particular, the chemical procedure to tether thiol bearing RGD peptide has been described. Moreover, the possibility to load and to control the release of slightly water soluble effectors has been demonstrated by using dexamethasone. First, the swelling and degradation profiles of the scaffolds have been investigated, then the evaluation of metabolic activity of bovine chondrocyt…

Materials Chemistry2506 Metals and AlloysChemical procedurePolymers and PlasticsBioengineering02 engineering and technologyMaleimide chemistry010402 general chemistry01 natural sciencesDexamethasoneBiomaterialschemistry.chemical_compoundChondrocytesHyaluronic acidCell AdhesionmedicineMaterials ChemistryAnimalsOrganic chemistryHyaluronic AcidCell adhesionCell Proliferationchemistry.chemical_classificationRGDPolymers and PlasticTissue ScaffoldsRGD peptideDrug release021001 nanoscience & nanotechnologyHyaluronic acid derivativeBiomaterial0104 chemical scienceschemistryCollagen type IIThiolBiophysicsSurface modificationCattleLeaching (metallurgy)Swellingmedicine.symptom0210 nano-technologyPorosityBiotechnologyMacromolecular Bioscience
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2020

For medical application, easily accessible biomaterials with tailored properties are desirable. Collagen type I represents a biomaterial of choice for regenerative medicine and tissue engineering. Here, we present a simple method to modify the properties of collagen and to generate collagen laminates. We selected three commercially available collagen sheets with different thicknesses and densities and examined the effect of rose bengal and green light collagen crosslinking (RGX) on properties such as microstructure, swelling degree, mechanical stability, cell compatibility and drug release. The highest impact of RGX was measured for Atelocollagen, for which the swelling degree was reduced f…

Materials science0206 medical engineering02 engineering and technologyCatalysisInorganic Chemistrychemistry.chemical_compoundTissue engineeringRose bengalmedicinePhysical and Theoretical ChemistryComposite materialMolecular BiologySpectroscopyOrganic ChemistryBiomaterialGeneral Medicine021001 nanoscience & nanotechnologyMicrostructure020601 biomedical engineeringComputer Science ApplicationschemistryMechanical stabilityCovalent bondDrug releaseSwellingmedicine.symptom0210 nano-technologyInternational Journal of Molecular Sciences
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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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Nanocapsules with specific targeting and release properties using miniemulsion polymerization.

2013

The field of application for nanosized materials ranges from mere technical purposes to a growing field of applications in biomedicine. Among the different techniques and processes to produce these materials for encapsulation of reporter molecules and drugs, the miniemulsion process has been proven to be highly adaptable to these specific needs.The review covers the recent developments in the field of miniemulsion as a very powerful technique for the formation of complex carriers for the encapsulation of different kinds of reporter molecule and drugs. The use of a wide variety of polymerization techniques in the miniemulsion process and possible utilization of a wide range of monomers as re…

Materials scienceChemistry PharmaceuticalPharmaceutical ScienceNanotechnologyMagnetic Resonance ImagingNanocapsulesNanostructuresMiniemulsionchemistry.chemical_compoundMonomerDrug Delivery SystemschemistryPolymerizationNanocapsulesPharmaceutical PreparationsDrug deliveryDrug releaseSurface modificationOrganic chemistryAnimalsHumansNanoparticlesEmulsionsMolecular Targeted TherapyHydrophobic and Hydrophilic InteractionsExpert opinion on drug delivery
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Development and In Vitro Evaluation of Lyotropic Liquid Crystals for the Controlled Release of Dexamethasone.

2017

Made available in DSpace on 2018-12-11T17:33:26Z (GMT). No. of bitstreams: 0 Previous issue date: 2017-08-02 Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES) In this study, amphiphilic polymers were investigated as biomaterials that can control dexamethasone (DXM) release. Such materials present interfacial properties in the presence of water and an oily phase that can result in lyotropic liquid crystalline systems (LLCS). In addition, they can form colloidal nanostructures similar to those in living organisms, such as bilayers and hexagonal and cubic phases, which can be exploited to solubilize lipophilic drugs to sustain their release and enhance bioavailability. It was…

Materials sciencePolymers and PlasticsAmphiphilic polymersdexamethasone02 engineering and technology030226 pharmacology & pharmacyArticleDexamethasonelcsh:QD241-44103 medical and health scienceschemistry.chemical_compound0302 clinical medicinelcsh:Organic chemistryLyotropicControlled releaseNanostructured systemsLamellar structurelyotropic liquid crystalsIsopropyl myristatedrug releasechemistry.chemical_classificationPolarized light microscopyChromatographySmall-angle X-ray scatteringfungiDrug releaseGeneral ChemistryPolymerkinetic modelKinetic modelamphiphilic polymers; lyotropic liquid crystals; controlled release; drug release; kinetic model; dexamethasone; nanostructured systems021001 nanoscience & nanotechnologyControlled releaseLyotropic liquid crystalschemistryChemical engineeringnanostructured systemsLyotropic liquid crystal0210 nano-technologycontrolled releaseamphiphilic polymersPolymers
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