Search results for "Biocompatible material"

showing 10 items of 290 documents

Characterization of Food Packaging Films with Blackcurrant Fruit Waste as a Source of Antioxidant and Color Sensing Intelligent Material

2021

Chitosan and pectin films were enriched with blackcurrant pomace powder (10 and 20% (w/w)), as bio-based material, to minimize food production losses and to increase the functional properties of produced films aimed at food coatings and wrappers. Water vapor permeability of active films increased up to 25%, moisture content for 27% in pectin-based ones, but water solubility was not significantly modified. Mechanical properties (tensile strength, elongation at break and Young’s modulus) were mainly decreased due to the residual insoluble particles present in blackcurrant waste. FTIR analysis showed no significant changes between the film samples. The degradation temperatures, determined by D…

antioxidantPectinChemical Phenomena030309 nutrition & dieteticsPharmaceutical ScienceOrganic chemistryBiocompatible MaterialsPRIRODNE ZNANOSTI. Kemija.AntioxidantsAnalytical ChemistryChitosanchemistry.chemical_compoundQD241-441Drug DiscoveryFood scienceWater contentchemistry.chemical_classificationpectin0303 health sciencesChemistryFood Packaging04 agricultural and veterinary sciencesPolymer040401 food scienceFood packagingSmart MaterialsChemistry (miscellaneous)Molecular MedicineLightnessfood.ingredientNATURAL SCIENCES. Chemistry.Article03 medical and health sciences0404 agricultural biotechnologyfoodintelligent sensingUltimate tensile strengthblackcurrant wasteblackcurrant waste ; chitosan ; pectin ; antioxidant ; intelligent sensing ; color changing ; packaging filmsPhysical and Theoretical ChemistryMechanical Phenomenapackaging filmsWaste ProductsChitosanSpectrum AnalysisPomaceMembranes ArtificialFruitcolor changingchitosan
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Intraperitoneal adhesions-an ongoing challenge between biomedical engineering and the life sciences

2011

Peritoneal adhesions remain a relevant clinical problem despite the currently available prophylactic barrier materials. So far, the physical separation of traumatized serosa areas using barriers represents the most important clinical strategy for adhesion prevention. However, the optimal material has not yet been found. Further optimization or pharmacological functionalization of these barriers could give an innovative input for peritoneal adhesion prevention. Therefore, a more complete understanding of pathogenesis is required. On the basis of the pathophysiology of adhesion formation the main barriers currently in clinical practice as well as new innovations are discussed in the present r…

business.industryMetals and AlloysBiomedical EngineeringBiocompatible MaterialsTissue AdhesionsPostoperative adhesionAdhesionPeritoneal adhesionsBiological Science DisciplinesEpitheliumBiomaterialsClinical PracticeBasic researchPhysical separationCeramics and CompositesHumansMedicinePeritoneal adhesionAdhesion preventionbusinessPeritoneal CavityBiomedical engineeringJournal of Biomedical Materials Research Part A
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Polylactic acid, a sustainable, biocompatible, transparent substrate material for Organ-On-Chip, and Microfluidic applications

2019

AbstractOrgan-on-chips are miniaturised devices aiming at replacing animal models for drug discovery, toxicology and studies of complex biological phenomena. The field of Organ-On-Chip has grown exponentially, and has led to the formation of companies providing commercial Organ-On-Chip devices. Yet, it may be surprising to learn that the majority of these commercial devices are made from Polydimethylsiloxane (PDMS), a silicone elastomer that is widely used in microfluidic prototyping, but which has been proven difficult to use in industrial settings and poses a number of challenges to experimentalists, including leaching of uncured oligomers and uncontrolled adsorption of small compounds. T…

chemistry.chemical_classification0303 health sciencesMaterials sciencePolydimethylsiloxaneBiocompatibilityMicrofluidicsNanotechnology02 engineering and technologyPolymer021001 nanoscience & nanotechnologyBiocompatible materialElastomer03 medical and health scienceschemistry.chemical_compoundSiliconechemistryPolylactic acid0210 nano-technology030304 developmental biology
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Langmuir-Blodgett films of biocompatible poly(HPMA)-block-poly(lauryl methacrylate) and poly(HPMA)-random-poly(lauryl methacrylate): influence of pol…

2010

Membranes based on functional biocompatible polymers can be regarded as a useful model system to study biological interactions, e.g. antibody-antigen interactions or protein polymer interactions. These model systems may give a better insight into these processes and may help to find suitable polymeric structures offering biocompatibility as well as reduced polymer protein interaction. In this respect, Langmuir-Blodgett (LB) layer formation at the air/water (A/W) interface is studied in respect to polymer architecture in this article. For this purpose, narrowly distributed N-(2-hydroxypropyl)-methacrylamide (HPMA) random and block copolymers have been prepared by the RAFT polymerization meth…

chemistry.chemical_classificationAqueous solutionMaterials scienceMagnetic Resonance SpectroscopyBiocompatibilityPolymersPolymer architectureBiocompatible MaterialsMembranes ArtificialSurfaces and InterfacesPolymerCondensed Matter PhysicsMicroscopy Atomic ForceLangmuir–Blodgett filmMembranechemistryPolymer chemistryElectrochemistryCopolymerMethacrylatesGeneral Materials ScienceReversible addition−fragmentation chain-transfer polymerizationSpectroscopyLangmuir : the ACS journal of surfaces and colloids
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On the origin of functionalization in one-pot radiation synthesis of nanogels from aqueous polymer solutions

2016

Radiation-engineered poly(N-vinyl pyrrolidone) nanogels are very interesting biocompatible nanocarriers for i.v. administration of therapeutics and contrast agents for bioimaging. The manufacturing process is fast and effective, it grants excellent control of particle size and simultaneous sterilization of the formed nanogels. Interestingly, primary amino groups and carboxyl groups, useful for (bio)conjugation, are also formed in a dose-dependent fashion. In this paper, by means of both numerical simulations and experiments, the origin of nanogel size control and functionalization is investigated. This understanding offers a new dimension for the design and production of radiation-sculpture…

chemistry.chemical_classificationAqueous solutionirradiationManufacturing processGeneral Chemical EngineeringNanotechnology02 engineering and technologyGeneral ChemistryPolymerradiation-sculptured multifunctional nanocarriers from aqueous solutions of polymers010402 general chemistry021001 nanoscience & nanotechnologyBiocompatible material01 natural sciences0104 chemical scienceschemistrySurface modificationSettore CHIM/07 - Fondamenti Chimici Delle TecnologieParticle sizeNanocarriers0210 nano-technologyhydrogelsNanogel
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Aminofunctional polyethers: smart materials for applications in solution and on surfaces

2013

In recent years, biocompatible polyethers with multi-aminofunctionality have been used for a variety of applications in different fields. Both established and recently developed synthesis strategies for such polymers and applications as stimuli-responsive materials, non-viral vectors, shell crosslinked micelles and for surface functionalization are reviewed. The intriguing potential of such materials is due to both polyether and polyamine components and can thus be readily tuned by the copolymer microstructure and composition. © 2013 Society of Chemical Industry

chemistry.chemical_classificationBiocompatible polymersMaterials sciencePolymers and PlasticsOrganic ChemistryNanotechnologyPolymerMicrostructureSmart materialBiocompatible materialMicellechemistryMaterials ChemistryCopolymerOrganic chemistrySurface modificationPolymer International
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Carbohydrate nanocarriers in biomedical applications: functionalization and construction

2015

The specific targeting of either tumor cells or immune cells in vivo by carefully designed and appropriately surface-functionalized nanocarriers may become an effective therapeutic treatment for a variety of diseases. Carbohydrates, which are prominent biomolecules, have shown their outstanding ability in balancing the biocompatibility, stability, biodegradability, and functionality of nanocarriers. The recent applications of sugar (mono/oligosaccharides and/or polysaccharides) for the development of nanomedicines are summarized in this review, including the application of carbohydrates for the surface-functionalization of various nanocarriers and for the construction of the nanocarrier its…

chemistry.chemical_classificationDrug CarriersBiomedical ResearchBiocompatibilitySurface PropertiesBiomoleculeTherapeutic treatmentCarbohydratesBiocompatible MaterialsNanotechnologyTumor cellsGeneral ChemistryBiocompatible materialNanostructureschemistryAnimalsHumansSurface modificationNanocarriersDrug carrier
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Fluorogenic Enzyme-Triggered Domino Reactions Producing Quinoxalin-2(1H)-one-based Heterocycles

2020

International audience; A simple and effective biocompatible domino reaction triggered by a model protease and leading to formation of strongly fluorescent quinoxalin-2(1H)-one N-heterocycles is described. Some positive attributes including versatility and ability to provide outstanding fluorescence "OFF-ON" responses were revealed by this work. They open the way for practical applications of this novel type of "covalent-assembly" based fluorescent probes in the fields of sensing and bioimaging. Among the myriad of synthetic transformations and catalysts currently available for concise and efficient synthesis of organic molecules, bioinspired approaches based on the use of enzymes often int…

chemistry.chemical_classificationProtease[CHIM.ORGA]Chemical Sciences/Organic chemistry010405 organic chemistryChemistrymedicine.medical_treatmentOrganic Chemistry010402 general chemistryBiocompatible material01 natural sciencesBiochemistryCombinatorial chemistryFluorescenceDomino0104 chemical sciencesEnzymeCascade reactionmedicinePhysical and Theoretical ChemistryOrganic Letters
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Chronic neural probe for simultaneous recording of single-unit, multi-unit, and local field potential activity from multiple brain sites

2017

Drug resistant focal epilepsy can be treated by resecting the epileptic focus requiring a precise focus localisation using stereoelectroencephalography (SEEG) probes. As commercial SEEG probes offer only a limited spatial resolution, probes of higher channel count and design freedom enabling the incorporation of macro and microelectrodes would help increasing spatial resolution and thus open new perspectives for investigating mechanisms underlying focal epilepsy and its treatment. This work describes a new fabrication process for SEEG probes with materials and dimensions similar to clinical probes enabling recording single neuron activity at high spatial resolution.Polyimide is used as a bi…

focal epilepsyMaterials scienceFocus (geometry)SEEGBiomedical EngineeringPosterior parietal cortexFOS: Physical sciencesBiocompatible Materials02 engineering and technologyLocal field potentialchronic; depth neural probe; focal epilepsy; in vivo; SEEG; single unit activity; stereoelectroencephalography; Biomedical Engineering; Cellular and Molecular NeuroscienceStereoelectroencephalographystereoelectroencephalography03 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicineParietal LobeAnimalsMulti unitImage resolutionEvoked PotentialsNeuronsBrainElectroencephalography021001 nanoscience & nanotechnologyPhysics - Medical PhysicsMacaca mulattadepth neural probesingle unit activityElectrodes ImplantedchronicMicroelectrodein vivoQuantitative Biology - Neurons and CognitionFOS: Biological sciencesElectrodeFemaleNeurons and Cognition (q-bio.NC)Epilepsies PartialMedical Physics (physics.med-ph)0210 nano-technologyMicroelectrodes030217 neurology & neurosurgeryBiomedical engineering
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Modular Small Diameter Vascular Grafts with Bioactive Functionalities.

2015

We report the fabrication of a novel type of artificial small diameter blood vessels, termed biomimetic tissue-engineered blood vessels (bTEBV), with a modular composition. They are composed of a hydrogel scaffold consisting of two negatively charged natural polymers, alginate and a modified chitosan, N,O-carboxymethyl chitosan (N,O-CMC). Into this biologically inert scaffold two biofunctionally active biopolymers are embedded, inorganic polyphosphate (polyP) and silica, as well as gelatin which exposes the cell recognition signal, Arg-Gly-Asp (RGD). These materials can be hardened by exposure to Ca(2+) through formation of Ca(2+) bridges between the polyanions, alginate, N,O-CMC, and polyP…

food.ingredientAlginateslcsh:MedicineBiocompatible Materialsmacromolecular substancesengineering.materialGelatinChitosanchemistry.chemical_compoundCalcium ChloridefoodTissue engineeringGlucuronic AcidBlood vessel prosthesisPolyphosphatesElastic ModulusTensile StrengthAbsorbable ImplantsMaterials TestingHuman Umbilical Vein Endothelial CellsHumanslcsh:ScienceBlood CoagulationCell Line Transformedchemistry.chemical_classificationChitosanMultidisciplinaryTissue EngineeringTissue ScaffoldsHexuronic Acidslcsh:Rtechnology industry and agricultureBiomaterialEndothelial CellsHydrogelsPolymerSilicon DioxideBlood Vessel ProsthesischemistrySelf-healing hydrogelsengineeringlcsh:QVascular GraftingBiopolymerOligopeptidesBiomedical engineeringResearch ArticlePloS one
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