Search results for "biocompatibility"

showing 10 items of 233 documents

MRI-visible nanoparticles from hydrophobic gadolinium poly(ε-caprolactone) conjugates

2015

International audience; In this work we report on the synthesis of two hydrophobic and degradable gadolinium poly(ε-caprolactone) conjugates and their use for the preparation of MRI-visible nanoparticles intended for diagnosis applications. Advantage has been taken from functional poly(ε-caprolactone)s (PCL) bearing propargyl (PCL-yne) or amine groups (P(CL-co-NH2VL)) to yield conjugates by following two strategies. In a first approach, an azido-chelate of gadolinium (Gd(III)) has been conjugated by CuAAC to PCL-yne to yield a polymeric chelate containing 2.6 wt% of Gd(III). In a second approach, a dianhydride Gd(III)-ligand was reacted with P(CL-co-NH2VL) to yield, after complexation with …

[CHIM.POLY] Chemical Sciences/PolymersMaterials sciencePolymers and PlasticsBiocompatibility[SDV.IB.IMA]Life Sciences [q-bio]/Bioengineering/ImagingGadoliniumchemistry.chemical_elementNanoparticle02 engineering and technologyConjugated system010402 general chemistry01 natural scienceschemistry.chemical_compoundNanoparticlePolymer chemistryMaterials ChemistrypolyesterChelationOrganic Chemistry021001 nanoscience & nanotechnology0104 chemical sciences[CHIM.POLY]Chemical Sciences/Polymers[SDV.IB.IMA] Life Sciences [q-bio]/Bioengineering/ImagingchemistryPropargylnanoparticlesAmine gas treating0210 nano-technologyCaprolactoneMRIPolymer
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How is the biocompatibilty of dental biomaterials evaluated?

2007

All biomaterials used in dentistry must be evaluated for biocompatibility using screening assays to protect patient health and safety. The purpose of this review is to explain the international biocompatibility guidelines, and to explain the structure of a test program. The test program requires the structured assessment of materials into four phases; general toxicity, local tissue irritation, pre-clinical, and clinical evaluation. Different types of screening assays are available, and it is important to understand the advantages and limitations of the various types of assays that are available, so that they can be selected for appropriateness and interpreted accurately. New scientific adva…

biocompatibilityCytotoxicitytissue engineeringUNESCO::CIENCIAS MÉDICASgrowth factorsdental materials:CIENCIAS MÉDICAS [UNESCO]gene therapystem cell therapy
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CaP-Bioglass composite coating by galvanic deposition

Orthopedic devices are increasingly used in our life to improve the health of patients after bone fractures due to accidents, aging, or sports injuries. Metallic materials (i.e. stainless steel, titanium alloys chromium alloys) are widely employed to fabricate prostheses, screws, and osteosynthesis plates. Although metals could be good mechanical properties like human bone, corrosion phenomena could occur, causing in the worst cases the failure of orthopedic implants. In addition, metal ions released around periprosthetic tissues could arise allergenic and cancerogenic effects. Nowadays, the research was focused on coating science to deal with these issues. In particular, the development of…

bioglacorrosionbiocompatibilitySettore ING-IND/23 - Chimica Fisica ApplicatacoatingHydroxyapatite
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Fluorescein- and EGFR-Antibody Conjugated Silica Nanoparticles for Enhancement of Real-time Tumor Border Definition Using Confocal Laser Endomicrosco…

2019

Intraoperative definition of tumor free resection margins in head and neck cancer is challenging. In the current proof-of-principle study we evaluated a novel silica nanoparticle-based agent for its potential use as contrast enhancer. We synthesized silica nanoparticles with an average size of 45 nm and modified these particles with the fluorescence stain fluorescein isocyanate (FITC) for particle detection and with epidermal growth factor receptor (EGFR)-targeting antibodies for enhanced tumor specificity. The nanoparticles exhibited good biocompatibility and could be detected in vitro and in vivo by confocal laser scanning microscopy. Additionally, we show in an ex vivo setting that these…

biologyBiocompatibilityGeneral Chemical EngineeringConfocalEGFRcontrast agentsilica nanoparticlesStainEGFR AntibodyArticlelcsh:Chemistry03 medical and health scienceschemistry.chemical_compound0302 clinical medicinechemistrylcsh:QD1-999In vivo030220 oncology & carcinogenesisbiology.proteinGeneral Materials ScienceEpidermal growth factor receptorFluorescein030223 otorhinolaryngologyEx vivoBiomedical engineeringNanomaterials
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Use of Super Paramagnetic Iron Oxide Nanoparticles as Drug Carriers in Brain and Ear: State of the Art and Challenges

2021

International audience; Drug delivery and distribution in the central nervous system (CNS) and the inner ear represent a challenge for the medical and scientific world, especially because of the blood–brain and the blood–perilymph barriers. Solutions are being studied to circumvent or to facilitate drug diffusion across these structures. Using superparamagnetic iron oxide nanoparticles (SPIONs), which can be coated to change their properties and ensure biocompatibility, represents a promising tool as a drug carrier. They can act as nanocarriers and can be driven with precision by magnetic forces. The aim of this study was to systematically review the use of SPIONs in the CNS and the inner e…

blood­–perilymph barrierinner earDrugMaterials scienceBiocompatibilitySuperparamagnetic iron oxide nanoparticlesmedia_common.quotation_subjectNanotechnologyReviewblo-od–brain barrier02 engineering and technologylcsh:RC321-57103 medical and health scienceschemistry.chemical_compoundblood–perilymph barrier[INFO.INFO-IM]Computer Science [cs]/Medical ImagingDistribution (pharmacology)lcsh:Neurosciences. Biological psychiatry. Neuropsychiatry030304 developmental biologymedia_common0303 health sciencesGeneral Neuroscienceiron oxide nanoparticlescentral nervous system021001 nanoscience & nanotechnology3. Good healthchemistrydrug deliveryDrug deliveryblo­od–brain barriersense organsNanocarriers0210 nano-technologyDrug carrierIron oxide nanoparticlesBrain Sciences
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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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Hydrogen peroxide sensors for cellular imaging based on horse radish peroxidase reconstituted on polymer-functionalized TiO2 nanorods

2011

We describe the reconstitution of apo-horse radish peroxidase (apo-HRP) onto TiO2 nanorods functionalized with a multifunctional polymer. After functionalization, the horse radish peroxidase (HRP) functionalized TiO2 nanorods were well dispersible in aqueous solution, catalytically active and biocompatible, and they could be used to quantify and image H2O2 which is a harmful secondary product of cellular metabolism. The shape, size and structure of TiO2 nanorods (anatase) were analyzed by transmission electron microscopy (TEM), high resolution TEM (HRTEM), electron diffraction (ED) and X-ray diffraction (XRD). The surface functionalization, HRP reconstitution and catalytic activity were con…

chemistry.chemical_classificationAnataseMaterials sciencebiologyBiocompatibilityNanotechnologyPolymerchemistryChemical engineeringTransmission electron microscopybiology.proteinSurface modificationGeneral Materials ScienceNanorodHigh-resolution transmission electron microscopyPeroxidaseNanoscale
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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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Improvement of solubility and biocompatibility of MnO based nanoparticles in aqueous solutions

2011

ABSTRACTMnO nanoparticles were surface modified using two different multifunctional polymers. By introducing a PEG group, the long term stability, MRI applicability and sterile filtration could be greatly improved. Furthermore, PEGylated MnO NPs were less toxic compared to non-PEGylated NPs. The results suggest that these nanoparticles are suitable for in vivo applications.

chemistry.chemical_classificationAqueous solutionNanostructureMaterials scienceChemical engineeringchemistryBiocompatibilitySurface modifiedPEG ratioNanoparticlePolymerSolubilityMRS Proceedings
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ChemInform Abstract: 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_classificationBiocompatibilitychemistryBiomoleculeTherapeutic treatmentSurface modificationNanotechnologyTumor cellsGeneral MedicineNanocarriersChemInform
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