Search results for "Biomedical"

showing 10 items of 2328 documents

Putting molecules in their place.

2014

Each class of microscope is limited to imaging specific aspects of cell structure and/or molecular organization. However, imaging the specimen by complementary microscopes and correlating the data can overcome this limitation. Whilst not a new approach, the field of correlative imaging is currently benefitting from the emergence of new microscope techniques. Here we describe the correlation of cryogenic fluorescence tomography (CFT) with soft X‐ray tomography (SXT). This amalgamation of techniques integrates 3D molecular localization data (CFT) with a high‐resolution, 3D cell reconstruction of the cell (SXT). Cells are imaged in both modalities in a near‐native, cryopreserved state. Here we…

Biochemistry & Molecular BiologyImage ProcessingStatistics as TopicMedical PhysiologymikroskopiaArticleFluorescenceCORRELATED IMAGINGImagingImaging Three-DimensionalComputer-AssistedCORRELATEDtomografiaYeastsTOMOGRAPHYImage Processing Computer-AssistedHumansMicroscopyTomography X-RayfluorecenceMicroscopy FluorescenceThree-DimensionalX-RaySOFT X-RAYBiomedical ImagingGeneric health relevanceBiochemistry and Cell BiologyBiotechnology
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The excellent biocompatibility and negligible immune response of the titanium heterometallic MOF MUV-10

2021

The Ti-Ca heterometallic MOF MUV-10 exhibits good dispersibility in phosphate buffer and low phosphate-induced degradation in comparison to other MOF systems. It induces no cytotoxicity towards cells of the immune system and no inmune response, making it an attractive candidate for biomedical applications and demonstrating its safe use for other applications.

BiocompatibilityBiomedical Engineeringchemistry.chemical_elementBiocompatible Materials02 engineering and technology010402 general chemistry01 natural sciencesMiceImmune systemMaterials TestingAnimalsHumansGeneral Materials ScienceParticle SizeCytotoxicityMetal-Organic FrameworksTitaniumfungiPhosphate buffered salineImmunityGeneral ChemistryGeneral Medicine021001 nanoscience & nanotechnologyCombinatorial chemistry0104 chemical scienceschemistryDegradation (geology)Calcium0210 nano-technologyTitaniumJournal of Materials Chemistry B
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Effects in cigarette smoke stimulated bronchial epithelial cells of a corticosteroid entrapped into nanostructured lipid carriers

2014

Background Nanomedicine studies have showed a great potential for drug delivery into the lung. In this manuscript nanostructured lipid carriers (NLC) containing Fluticasone propionate (FP) were prepared and their biocompatibility and effects in a human bronchial epithelial cell line (16-HBE) stimulated with cigarette smoke extracts (CSE) were tested. Results Biocompatibility studies showed that the NLC did not induce cell necrosis or apoptosis. Moreover, it was confirmed that CSE increased intracellular ROS production and TLR4 expression in bronchial epithelial cells and that FP-loaded NLC were more effective than free drug in modulating these processes. Finally, the nanoparticles increased…

BiocompatibilityCellBiomedical EngineeringMedicine (miscellaneous)Pharmaceutical ScienceApoptosisBronchiBioengineeringChronic obstructive pulmonary disease; Asthma; hronic obstructive pulmonary disease.PharmacologyFluticasone propionatemedicine.disease_causeApplied Microbiology and BiotechnologyNanostructured lipid carriers Corticosteroid Fluticasone propionate Cigarette smoke Airway epithelial cell Chronic obstructive pulmonary disease Asthmachemistry.chemical_compoundAirway epithelial cellmedicineHumansCorticosteroidCells CulturedFluticasoneDrug CarriersNanostructured lipid carriersbusiness.industryResearchChronic obstructive pulmonary diseaseSmokingCigarette smokeEpithelial CellsGlutathioneGlutathioneLipidsAsthmaNanostructuresToll-Like Receptor 4medicine.anatomical_structurechemistrySettore CHIM/09 - Farmaceutico Tecnologico ApplicativoApoptosisDrug deliveryFluticasoneMolecular MedicineReactive Oxygen SpeciesbusinessOxidative stressIntracellularmedicine.drugJournal of Nanobiotechnology
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Particles of vaterite, a metastable CaCO3polymorph, exhibit high biocompatibility for human osteoblasts and endothelial cells and may serve as a biom…

2018

We have previously described a promising alternative to conventional synthetic bone biomaterials using vaterite, a metastable CaCO3 polymorph that increases the local Ca2+ concentration in vitro and leads to an oversaturation of phosphate, the primary bone mineral. This stimulates a natural bone-like mineralisation in a short period of time. In this study, sterile and endotoxin-free vaterite particles were synthesised in a nearly quantitative yield. The 500-1,000 nm vaterite particles did not exhibit any cytotoxic effects as measured by MTS, lactate dehydrogenase, or crystal violet assays on the human osteoblast cell line (MG-63) exposed to concentrations up to 500 μg/ml vaterite up to 72 h…

BiocompatibilityChemistryCellular differentiationBiomedical EngineeringMedicine (miscellaneous)Biomaterial02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesBiomaterialsCell cultureVateriteSelf-healing hydrogelsBiophysicsAlkaline phosphatase0210 nano-technologyBone regenerationJournal of Tissue Engineering and Regenerative Medicine
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Bone Scaffolds Based on Degradable Vaterite/PEG‐Composite Microgels

2019

Vaterite, a metastable modification of calcium carbonate, embedded in a flexible microgel packaging with adjustable mechanical properties, functionality, and biocompatibility, provides a powerful scaffolding for bone tissue regeneration, as it is easily convertible to bone-like hydroxyapatite (HA). In this study, the synthesis and physical analysis of a packaging material to encapsulate vaterite particles and osteoblast cells into monodisperse, sub-millimeter-sized microgels, is described whereby a systematic approach is used to tailor the microgel properties. The size and shape of the microgels is controlled via droplet-based microfluidics. Key requirements for the polymer system, such as …

BiocompatibilityDispersityBiomedical EngineeringPharmaceutical Science02 engineering and technology010402 general chemistryBone tissue01 natural sciencesBone and BonesCalcium CarbonateBiomaterialschemistry.chemical_compoundOsteogenesisVateritePEG ratiomedicineddc:610chemistry.chemical_classificationMicrogelsOsteoblastPolymer021001 nanoscience & nanotechnology0104 chemical sciencesmedicine.anatomical_structurechemistryChemical engineering0210 nano-technologyGelsEthylene glycol
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Biocompatibility of alginates for grafting: impact of alginate molecular weight.

2003

Optimising microencapsulation technology towards the effective clinical transplantation has created the need for highly biocompatible alginates. Therefore, in this study the biocompatibility of different beads prepared from alginates with varying average molecular weight was examined. In some experiments the beads were covered with a multilayer membrane surrounded by an alginate layer. First of all, we found that beads made of a lower weight average alginate elicted a much stronger fibrotic response compared to beads made of a higher weight average alginate (LV-alginate > MV-alginate). The results were confirmed by the observation that the extent of tissue fibrosis was significantly increas…

BiocompatibilityMolecular massChemistryAlginatesDrug CompoundingBiomedical EngineeringBiocompatible MaterialsGraftingBiocompatible materialFibrosisMicrospheresRatsTransplantationMolecular WeightRats Sprague-DawleyViscosityChemical engineeringImplants ExperimentalTissue fibrosisMaterials TestingMolar mass distributionAnimalsBiotechnologyBiomedical engineeringArtificial cells, blood substitutes, and immobilization biotechnology
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Spectroscopic study of the loading of cationic porphyrins by carbon nanohorns as high capacity carriers of photoactive molecules to cells

2019

Carbon nanomaterials are attractive candidates for drug delivery due to their high surface area, ease of functionalisation and biocompatibility. This work describes the spectroscopic monitoring of the loading capacity of oxidised carbon nanohorns for two cationic porphyrins. Addition of the COOH functionalised carbon nanohorns to both meso-tetra(4-N-methylpyridyl) free base (H2TMPyP4) and platinum (PtTMPyP4) porphyrin in aqueous solution results in hypochromism of the Soret band and quenching of the porphyrin emission. These changes are used to monitor the non-covalent binding interactions with the nanohorn surface and determine the surface loading. The colloidal stability of the nanohorns …

BiocompatibilityNANOTUBESBiomedical Engineeringchemistry.chemical_element02 engineering and technology010402 general chemistryPhotochemistry01 natural scienceschemistry.chemical_compoundpolycyclic compoundsGeneral Materials ScienceDRUG-DELIVERYPHOTOTHERMAL THERAPYNANOMATERIALSQuenching (fluorescence)Aqueous solutionCationic polymerizationFree baseSettore CHIM/06 - Chimica OrganicaGeneral ChemistryGeneral Medicine021001 nanoscience & nanotechnologyPorphyrin0104 chemical scienceschemistry0210 nano-technologyPlatinumCarbonJournal of Materials Chemistry B
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[68Ga]Ga-THP-Pam: A Bisphosphonate PET Tracer with Facile Radiolabeling and Broad Calcium Mineral Affinity

2020

Calcium minerals such as hydroxyapatite (HAp) can be detected non-invasively in vivo using nuclear imaging agents such as [18F]NaF (available from cyclotrons), for positron emission tomography (PET) and 99mTc-radiolabelled bisphosphonates (BP; available from 99mTc generators for single photon emission computed tomography (SPECT) or scintigraphy). These two types of imaging agents allow detection of bone metastases (based on the presence of HAp) and vascular calcification lesions (that contain HAp and other calcium minerals). With the aim of developing a cyclotron-independent PET radiotracer for these lesions, with broad calcium mineral affinity and simple one-step radiolabelling, we develop…

BiodistributionBiomedical EngineeringPharmaceutical Sciencechemistry.chemical_elementBioengineering02 engineering and technologyCalciumScintigraphyBone tissue01 natural sciencesIn vivomedicineChelationPharmacologymedicine.diagnostic_test010405 organic chemistryOrganic ChemistryRadiochemistry021001 nanoscience & nanotechnologyIn vitro0104 chemical sciencesmedicine.anatomical_structurechemistryPositron emission tomography0210 nano-technologyBiotechnologyBioconjugate Chemistry
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Influence of Surface Charge and Polymer Coating on Internalization and Biodistribution of Polyethylene Glycol-Modified Iron Oxide Nanoparticles

2015

International audience; The aim of this study was to investigate the influence of the surface charge and coating of Superparamagnetic Iron Oxide Nanoparticles (SPIONs) on their in vitro and in vivo behaviors. Neutral and negatively-charged PEG-based SPIONs were synthesized and compared to Resovist (R), a carboxydextran-based SPION currently used in clinics. Their cytotoxicity, cell internalization, and potential as contrast agents for magnetic resonance imaging were assessed. Neutral pegylated SPIONs were internalized less readily by the reticuloendothelial system and showed a lower uptake by the liver, compared to negatively-charged SPIONs (with carboxydextran and PEG). These results sugge…

BiodistributionMaterials scienceCell SurvivalStatic ElectricityBiomedical EngineeringPharmaceutical ScienceMedicine (miscellaneous)NanoparticleBioengineeringNanotechnology02 engineering and technologyPolyethylene glycolMRI (Magnetic Resonance Imaging)engineering.material010402 general chemistry01 natural sciencesNanocapsulesCell LinePolyethylene GlycolsMiceStructure-Activity Relationshipchemistry.chemical_compoundCoated Materials BiocompatibleNanocapsulesIn Vivo AssaysCoatingMaterials TestingPEG ratioAnimalsHumansTissue DistributionGeneral Materials ScienceSurface chargeParticle Size[SPI.NANO]Engineering Sciences [physics]/Micro and nanotechnologies/MicroelectronicsMagnetite NanoparticlesMacrophagesSurface GraftingDextransHep G2 Cells021001 nanoscience & nanotechnology0104 chemical scienceschemistryChemical engineeringOrgan SpecificityengineeringNanoparticles0210 nano-technologyIron oxide nanoparticlesJournal of Biomedical Nanotechnology
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Bisphosphonate-polyaspartamide conjugates as bone targeted drug delivery systems.

2015

Poly-hydroxy-aspartamide was used as a backbone to synthesize bisphosphonate derivatives thus achieving macromolecular carriers to be potentially used as targeting agents for bone drug delivery. Molecules bearing bisphosphonate groups, such as aminobisphosphonate (ABP) and neridronate (NRD), have been conjugated to polyaspartamide (α,β-poly(N-2-hydroxyethyl)-dl-aspartamide, PHEA), with or without a spacer (succinic acid or 6-aminocaproic acid) thus obtaining PHEA-succinate-ABP and PHEA-caproylcarbamate-ABP and PHEA-ABP and PHEA-NRD, respectively. Bisphosphonate-polymer conjugates were physico-chemically characterized using size exclusion chromatography and 1H-NMR; and their in vitro and e…

BiodistributionMaterials scienceMedicine (all)medicine.medical_treatmentChemistry (all)Biomedical EngineeringGeneral ChemistryGeneral MedicineBisphosphonateBone tissueIn vitromedicine.anatomical_structureBiochemistryTargeted drug deliverySettore CHIM/09 - Farmaceutico Tecnologico ApplicativoIn vivoDrug deliverymedicineGeneral Materials ScienceMaterials Science (all)Ex vivoJournal of materials chemistry. B
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