Search results for "Biomaterials"

showing 10 items of 1265 documents

Reactive Self-Assembly and Specific Cellular Delivery of NCO-sP(EO-stat-PO)-Derived Nanogels

2018

This study presents the reactive self-assembly of isocyanate functional and amphiphilic six-arm, star-shaped polyether prepolymers in water into nanogels. Intrinsic molecular amphiphilicity, mainly driven by the isophorone moiety at the distal endings of the star-shaped molecules, allows for the preparation of spherical particles with an adjustable size of 100-200 nm by self-assembly and subsequent covalent cross-linking without the need for organic solvents or surfactants. Covalent attachment of a fluorescence dye and either the cell-penetrating TAT peptide or a random control peptide sequence shows that only TAT-labeled nanogels are internalized by HeLa cells. The nanogels thus specifical…

Polymers and Plasticsta221Bioengineering02 engineering and technology010402 general chemistry01 natural sciencesPolyethylene GlycolsBiokemia solu- ja molekyylibiologia - Biochemistry cell and molecular biologyBiomaterialschemistry.chemical_compoundnanogelsDrug Delivery SystemsAmphiphileMaterials ChemistryHumansPolyethyleneimineMoleculeMoietynanopolymeeritreactive self-assemblyPeptide sequenceFluorescent DyesIsophoronegeelitta1182nanobiotekniikka021001 nanoscience & nanotechnologyIsocyanate0104 chemical scienceschemistryCovalent bondBiophysicsNanoparticlesSelf-assembly0210 nano-technologyHeLa CellsBiotechnology
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Polybutylene Succinate Processing and Evaluation as a Micro Fibrous Graft for Tissue Engineering Applications

2022

A microfibrous tubular scaffold has been designed and fabricated by electrospinning using poly (1,4-butylene succinate) as biocompatible and biodegradable material. The scaffold morphology was optimized as a small diameter and micro-porous conduit, able to foster cell integration, adhesion, and growth while avoiding cell infiltration through the graft’s wall. Scaffold morphology and mechanical properties were explored and compared to those of native conduits. Scaffolds were then seeded with adult normal human dermal fibroblasts to evaluate cytocompatibility in vitro. Haemolytic effect was evaluated upon incubation with diluted whole blood. The scaffold showed no delamination, and mech…

Polymers and Plasticstissue engineeringpoly (14-butylene succinate)General Chemistrybile ductsvascular graftselectrospinningbiomaterialspoly (14-butylene succinate); electrospinning; biomaterials; vascular grafts; bile ducts; tissue engineeringPolymers; Volume 14; Issue 21; Pages: 4486
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Polyphosphoester surfactants as general stealth coatings for polymeric nanocarriers

2020

Opsonization of nanocarriers is one of the most important biological barriers for controlled drug delivery. The typical way to prevent such unspecific protein adsorption and thus fast clearance by the immune system is the covalent modification of drug delivery vehicles with poly(ethylene glycol) (PEG), so-called PEGylation. Recently, polyphosphoesters (PPEs) were identified as adequate PEG substitutes, however with the benefits of controllable hydrophilicity, additional chemical functionality, or biodegradability. Here, we present a general strategy by non-covalent adsorption of different nonionic PPE-surfactants to nanocarriers with stealth properties. Polyphosphoester surfactants with dif…

Polymers0206 medical engineeringBiomedical EngineeringUT-Hybrid-DProtein Corona02 engineering and technologyStealth effectBiochemistryPolyethylene GlycolsBiomaterialschemistry.chemical_compoundSurface-Active AgentsPolyphosphoesterPEG ratioMolecular Biologychemistry.chemical_classificationDrug CarriersChemistryGeneral MedicinePolymer021001 nanoscience & nanotechnology020601 biomedical engineeringCombinatorial chemistryPEGProtein coronaDrug deliveryDrug deliveryPEGylationNanoparticlesNanocarriers0210 nano-technologyEthylene glycolBiotechnologyProtein adsorption
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Fluorescent Core/Shell Nanoparticles for Specific Cell‐Nucleus Staining

2008

The highly fluorescent perylene-3,4,9,10-tetracarboxdiimide (PDI) chromophore is a popular dye and pigment because of its excellent chemical, thermal, and photochemical stability. Due to these outstanding properties, there have been several successful applications of PDI chromophores in various fields. Water-soluble and fluorescent PDI dyes have been used in biological applications such as the in vitro staining of cells and proteins. The combination of water solubility and high fluorescence quantum yield still represents a challenging goal since PDI dyes have a strong tendency to form aggregates in aqueous solution even at very low concentrations. Water solubility and high fluorescence quan…

PolymersCarboxylic AcidsIonic bondingNanoparticleHistonesBiomaterialsDendrimerMaterials TestingNanotechnologyGeneral Materials ScienceColoring AgentsFluorescent DyesCell Nucleuschemistry.chemical_classificationMicroscopy ConfocalAqueous solutionChemistryGeneral ChemistryPolymerChromophoreFluorescenceMembraneSolubilityBiochemistryBiophysicsNanoparticlesBiotechnologySmall
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Uptake of polymeric nanoparticles in a human induced pluripotent stem cell-based blood-brain barrier model: Impact of size, material, and protein cor…

2021

The blood–brain barrier (BBB) maintains the homeostasis of the central nervous system, which is one of the reasons for the treatments of brain disorders being challenging in nature. Nanoparticles (NPs) have been seen as potential drug delivery systems to the brain overcoming the tight barrier of endothelial cells. Using a BBB model system based on human induced pluripotent stem cells (iPSCs), the impact of polymeric nanoparticles has been studied in relation to nanoparticle size, material, and protein corona. PLGA [poly(lactic-co-glycolic acid)] and PLLA [poly(d,l-lactide)] nanoparticles stabilized with Tween® 80 were synthesized (50 and 100 nm). iPSCs were differentiated into human brain m…

PolymersInduced Pluripotent Stem CellsStatic ElectricityGeneral Physics and AstronomyNanoparticleProtein Corona02 engineering and technology010402 general chemistryBlood–brain barrier01 natural sciencesModels BiologicalGeneral Biochemistry Genetics and Molecular BiologyBiomaterialschemistry.chemical_compoundPolylactic Acid-Polyglycolic Acid CopolymermedicineElectric ImpedanceHumansGeneral Materials ScienceParticle SizeInduced pluripotent stem cellEndothelial CellsCell DifferentiationGeneral ChemistryHuman brain021001 nanoscience & nanotechnologyDynamic Light ScatteringFractionation Field Flow0104 chemical sciencesPLGAmedicine.anatomical_structurechemistryBlood-Brain BarrierSelective adsorptionDrug deliveryCalibrationBiophysicsNanoparticlesPolystyrenesProtein Corona0210 nano-technologyBiointerphases
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Core Cross-Linked Polymeric Micelles for Specific Iron Delivery: Inducing Sterile Inflammation in Macrophages.

2021

Iron is an essential co-factor for cellular processes. In the immune system, it can activate macrophages and represents a potential therapeutic for various diseases. To specifically deliver iron to macrophages, iron oxide nanoparticles are embedded in polymeric micelles of reactive polysarcosine-block-poly(S-ethylsulfonyl-l-cysteine). Upon surface functionalization via dihydrolipoic acid, iron oxide cores act as crosslinker themselves and undergo chemoselective disulfide bond formation with the surrounding poly(S-ethylsulfonyl-l-cysteine) block, yielding glutathione-responsive core cross-linked polymeric micelles (CCPMs). When applied to primary murine and human macrophages, these nanoparti…

PolymersIronBiomedical EngineeringMacrophage polarizationIron oxidePharmaceutical Science02 engineering and technology010402 general chemistry01 natural sciencesBiomaterialschemistry.chemical_compoundMiceImmune systemDihydrolipoic acidMacrophageAnimalsMicellesInflammationMacrophages021001 nanoscience & nanotechnologyControlled release0104 chemical scienceschemistryBiophysics0210 nano-technologyIron oxide nanoparticlesIntracellularAdvanced healthcare materials
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Polymeric matrix hydrophobicity governs saponin packing-density on nanoparticle surface and the subsequent biological interactions.

2020

Abstract This study investigated the loading behavior of Quillaja saponin as a model surface-active cargo on (NP) nanoparticles prepared with various hydrophobic polymers and using different organic solvents through emulsification/solvent evaporation, and the impact of NP surface hydrophobicity upon the cytotoxic and hemolytic properties of the loaded entity. A superficial monolayered arrangement of saponins on NP was established (R2 > 0.9) for all NP, as the saponin loading values complied with the Langmuir adsorption isotherm over the entire concentration range. Next, based on the measurement of interfacial tension between formulation phases, and the subsequent use of Gibb’s adsorption is…

PolymersSurface PropertiesSaponinNanoparticle02 engineering and technology010402 general chemistry01 natural sciencesQuillaja SaponinsBiomaterialsSurface tensionsymbols.namesakeColloid and Surface ChemistryGibbs isothermAdsorptionchemistry.chemical_classificationbiologyChemistryLangmuir adsorption modelPolymerSaponins021001 nanoscience & nanotechnologybiology.organism_classification0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsChemical engineeringQuillajasymbolsNanoparticles0210 nano-technologyHydrophobic and Hydrophilic InteractionsJournal of colloid and interface science
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Influence of scaffold pore size on collagen I development: A new in vitro evaluation perspective

2013

Bone tissue engineering takes part in the complex process of bone healing by combining cells, chemical/physical signals, and scaffolds with the scaffolds providing an artificial extracellular matrix network. The role of the support template for cell activity is crucial to guide the healing process. This in vitro study compared three different poly(D,L-lactic acid) scaffolds obtained by varying the pore size generated by applying different salt leaching processes. The influence of pore dimensions on the extracellular matrix produced by human osteosarcoma-derived osteoblasts (MG63 cell line) seeded on these different materials was analyzed. This study is targeted on the intermediate stage of…

Pore sizeScaffoldPolymers and PlasticsChemistryConfocalBioengineeringBone healingIn vitroBiomaterialsExtracellular matrixGene expressionCollagen networkMaterials ChemistryBiomedical engineeringJournal of Bioactive and Compatible Polymers
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Blood absorption capacity of different xenograft bone substitutes. An in-vitro study

2019

Background Commercially available xenograft blocks, claim to have adequate characteristics to interact with biological media and thus permitting biological fluid absorption. The objective of this in vitro study was to compare the blood absorption capacity of four different xenograft block materials of different composition of collagen and porosity. Material and Methods Four brands of xenograft block materials were used (NuOss®, Bio-Oss®, Osteobiol® and Smartbone®). Five samples of each brand were analyzed, making a total of 20 tests. Human blood was used as the absorption liquid for the present experiment. The time period, in which the block remains in contact with the blood, was registered…

Porosidad616.3Absorption (skin)Regeneració òssiaOsteoconductionBiological fluidOsteoconducción03 medical and health sciences0302 clinical medicineAbsorción de sangreBiomaterials and Bioengineering in DentistryXenoinjertoIn vitro studyXenoinjertsRegeneración óseaBone regenerationGeneral DentistryCol·lagenXenograftsPorositatChemistryResearchSignificant differenceBiomaterialSmall sample030206 dentistry:CIENCIAS MÉDICAS [UNESCO]Bone regeneration030220 oncology & carcinogenesisUNESCO::CIENCIAS MÉDICASAbsorption capacityOsteoconduccióColágenoCollagenPorosityBiomedical engineeringAbsorció de sangBlood absorption
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Autofluorescence imaging of basal cell carcinoma by smartphone RGB camera

2015

The feasibility of smartphones for in vivo skin autofluorescence imaging has been investigated. Filtered autofluorescence images from the same tissue area were periodically captured by a smartphone RGB camera with subsequent detection of fluorescence intensity decreasing at each image pixel for further imaging the planar distribution of those values. The proposed methodology was tested clinically with 13 basal cell carcinoma and 1 atypical nevus. Several clinical cases and potential future applications of the smartphone-based technique are discussed.

PorphyrinsSkin NeoplasmsLightComputer scienceBiomedical EngineeringDermoscopyImage processingFluorescenceBiomaterialsOpticsmedicineHumansBasal cell carcinomaNevusSkinPhotobleachingPixelbusiness.industrySkin autofluorescenceNADmedicine.diseaseAtypical nevusAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsAutofluorescenceFluorescence intensityMicroscopy FluorescenceCarcinoma Basal CellRGB color modelCollagenSmartphonebusinessBiomedical engineeringJournal of Biomedical Optics
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