Search results for "Nanomedicine"

showing 10 items of 140 documents

Mechanisms of nanotoxicity – biomolecule coronas protect pathological fungi against nanoparticle-based eradication

2020

Whereas nanotoxicity is intensely studied in mammalian systems, our knowledge of desired or unwanted nano-based effects for microbes is still limited. Fungal infections are global socio-economic health and agricultural problems, and current chemical antifungals may induce adverse side-effects in humans and ecosystems. Thus, nanoparticles are discussed as potential novel and sustainable antifungals via the desired nanotoxicity but often fail in practical applications. In our study, we found that nanoparticles' toxicity strongly depends on their binding to fungal spores, including the clinically relevant pathogen

Antifungal AgentsSurface PropertiesBiomedical EngineeringMedizinNanoparticleNanotechnology02 engineering and technology010501 environmental sciencesToxicologyModels Biological01 natural sciencesDrug Resistance FungalAnimalsHumansEcosystem0105 earth and related environmental scienceschemistry.chemical_classificationMicrobial ViabilityBiomoleculeSpores FungalSilicon Dioxide021001 nanoscience & nanotechnologychemistryNanotoxicologyNanoparticlesNanomedicineAdsorptionBotrytis0210 nano-technologyBiologie
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Zinc oxide nanoparticles for therapeutic purposes in cancer medicine.

2020

The importance of zinc as a trace metal in the human body has long been overlooked. We now gradually discover that the impact of zinc on the health of our body might be as far-reaching as that of iron. Concurrently, nanomaterials containing zinc, in particular zinc oxide nanoparticles (ZnO NPs), are becoming increasingly attractive as innovative agents for medical applications. Zinc oxide is characterized by a good biocompatibility which allows the exploitation of its antibacterial, antifungal, antiviral, and anti-cancer qualities in a therapeutic setting. This perspective outlines the current state of knowledge concerning the interaction of zinc oxide nanoparticles with eukaryotic cells an…

AntifungalBiocompatibilitymedicine.drug_classCell SurvivalBiomedical EngineeringNanoparticlechemistry.chemical_elementContext (language use)NanotechnologyAntineoplastic Agents02 engineering and technologyZincNanomaterials03 medical and health sciencesCancer MedicineNeoplasmsmedicineAnimalsHumansGeneral Materials Science030304 developmental biologyCell Proliferation0303 health sciencesMolecular StructureChemistryGeneral ChemistryGeneral Medicine021001 nanoscience & nanotechnologyNanomedicineNanomedicineNanoparticlesZinc Oxide0210 nano-technologyJournal of materials chemistry. B
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Alteration of the Mitochondrial Effects of Ceria Nanoparticles by Gold: An Approach for the Mitochondrial Modulation of Cells Based on Nanomedicine

2020

Ceria nanoparticles are cell compatible antioxidants whose activity can be enhanced by gold deposition and by surface functionalization with positive triphenylphosphonium units to selectively target the mitochondria. The antioxidant properties of these nanoparticles can serve as the basis of a new strategy for the treatment of several disorders exhibiting oxidative stress, such as cancer, diabetes or Alzheimer&rsquo

AntioxidantantioxidantGeneral Chemical Engineeringmedicine.medical_treatmentNanoparticleceria nanoparticles02 engineering and technologyMitochondrionmedicine.disease_causeArticlelcsh:Chemistry03 medical and health scienceschemistry.chemical_compoundQUIMICA ORGANICAmitochondrial functionmedicineGeneral Materials ScienceNRF1Gold-supported ceria nanoparticles030304 developmental biology0303 health sciencesChemistryfungigold-supported ceria nanoparticlesfood and beveragestriphenylphosphonium gold-supported ceria nanoparticles021001 nanoscience & nanotechnologylcsh:QD1-999Colloidal goldBiophysicsNanomedicineMitochondrial functionAntioxidant0210 nano-technologyAdenosine triphosphateCeria nanoparticlesOxidative stressTriphenylphosphonium gold-supported ceria nanoparticles
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Effect of endothelial cell heterogeneity on nanoparticle uptake.

2020

Endothelial cells exhibit distinct properties in morphology and functions in different organs that can be exploited for nanomedicine targeting. In this work, endothelial cells from different organs, i.e. brain, lung, liver, and kidney, were exposed to plain, carboxylated, and amino-modified silica. As expected, different protein coronas were formed on the different nanoparticle types and these changed when foetal bovine serum (FBS) or human serum were used. Uptake efficiencies differed strongly in the different endothelia, confirming that the cells retained some of their organ-specific differences. However, all endothelia showed higher uptake for the amino-modified silica in FBS, but, inter…

Biodistributionmedia_common.quotation_subjectReceptor expressionEndothelial cellsBristol Heart InstitutePharmaceutical ScienceUptake02 engineering and technologyADHESIONBlood–brain barrier030226 pharmacology & pharmacySERUM03 medical and health sciencesDELIVERY0302 clinical medicineBIODISTRIBUTIONmedicineHumansBovine serum albuminInternalization/dk/atira/pure/core/keywords/heart_SRImedia_commonchemistry.chemical_classificationKidneyPROTEIN-CORONAbiologyChemistryBLOOD-BRAIN-BARRIEREndothelial CellsBiological Transportrespiratory system021001 nanoscience & nanotechnologyCell biologyEndothelial stem cellSURFACE-CHARGEmedicine.anatomical_structureSIZENanomedicineTransferrinProtein coronabiology.proteinINTERNALIZATIONNanoparticlesProtein CoronaHeterogeneityMEMBRANE0210 nano-technologyEndothelial cell targetingInternational journal of pharmaceutics
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Nanomedicine: In Vivo Gene-Silencing in Fibrotic Liver by siRNA-Loaded Cationic Nanohydrogel Particles (Adv. Healthcare Mater. 18/2015)

2015

BiomaterialsChemistryIn vivoLiver fibrosisBiomedical EngineeringCationic polymerizationPharmaceutical ScienceNanomedicineGene silencingPharmacologyAdvanced Healthcare Materials
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Gold Nanoclusters: Atomically Precise Gold Nanoclusters: Towards an Optimal Biocompatible System from a Theoretical–Experimental Strategy (Small 27/2…

2021

BiomaterialsExperimental strategyMaterials scienceBiocompatibilityNanomedicineGeneral Materials ScienceNanotechnologyGeneral ChemistryBiocompatible materialBiotechnologyNanoclustersSmall
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A multifuctional nanoplatform for drug targeted delivery based on radiation-engineered nanogels

2020

Abstract Under a rational design, combining biologically active molecules, ligands to specific cell receptors and fluorescent, radioactive or paramagnetic labels into a single nano-object can bridge the unique properties of the individual components and improve conventional sensing, imaging and therapeutic efficacies. The validation of these functional nano-objects requires careful testing both in terms of physico-chemical properties and biological behaviour in vitro and in vivo, prior to translation into the clinic. Ionising radiation of aqueous polymer solutions is a viable strategy to produce multifunctional nanogels from aqueous solutions of hydrophilic polymers. By proper selection of …

COLON-CANCER CELLSPULSE-RADIOLYSISDrugINDUCED CROSS-LINKINGSPECTRAL PROPERTIESmedia_common.quotation_subjectNanogelsConjugation reactionsNanotechnology01 natural sciencesAQUEOUS-SOLUTIONFLUORESCEIN030218 nuclear medicine & medical imagingNanogel03 medical and health sciences0302 clinical medicineHydrophilic polymers0103 physical sciencesNANOPARTICLESMoleculeIonising radiation synthesiIN-VIVOmedia_commonchemistry.chemical_classificationRadiationAqueous solution010308 nuclear & particles physicsIonising radiation synthesisRational designPolymerINSULINNanomedicineConjugation reactionchemistryDrug deliveryDrug deliveryNanomedicineSettore CHIM/07 - Fondamenti Chimici Delle TecnologieACID) NANOGELSRadiation Physics and Chemistry
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Robust Antigen-Specific T Cell Activation within Injectable 3D Synthetic Nanovaccine Depots

2021

Contains fulltext : 244693.pdf (Publisher’s version ) (Open Access) Synthetic cancer vaccines may boost anticancer immune responses by co-delivering tumor antigens and adjuvants to dendritic cells (DCs). The accessibility of cancer vaccines to DCs and thereby the delivery efficiency of antigenic material greatly depends on the vaccine platform that is used. Three-dimensional scaffolds have been developed to deliver antigens and adjuvants locally in an immunostimulatory environment to DCs to enable sustained availability. However, current systems have little control over the release profiles of the cargo that is incorporated and are often characterized by an initial high-burst release. Here,…

Cancer development and immune defence Radboud Institute for Molecular Life Sciences [Radboudumc 2]T-LymphocytesT cellBiomedical Engineering02 engineering and technologySDG 3 – Goede gezondheid en welzijnantigen-specific T cellsCancer VaccinesArticleBiomaterials03 medical and health sciencesbiomaterial-based scaffoldsImmune systemAntigenSDG 3 - Good Health and Well-beingAntigen specificControlled deliverymedicineLactic Aciddendritic cells030304 developmental biology0303 health sciencesChemistryBiomaterial021001 nanoscience & nanotechnologyCell biologymedicine.anatomical_structureDelivery efficiencynanoparticles0210 nano-technologycancer vaccinationNanomedicine Radboud Institute for Molecular Life Sciences [Radboudumc 19]Polyglycolic Acid
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Functionalization of Metal and Carbon Nanoparticles with Potential in Cancer Theranostics

2021

Cancer theranostics is a new concept of medical approach that attempts to combine in a unique nanoplatform diagnosis, monitoring and therapy so as to provide eradication of a solid tumor in a non-invasive fashion. There are many available solutions to tackle cancer using theranostic agents such as photothermal therapy (PTT) and photodynamic therapy (PDT) under the guidance of imaging techniques (e.g., magnetic resonance—MRI, photoacoustic—PA or computed tomography—CT imaging). Additionally, there are several potential theranostic nanoplatforms able to combine diagnosis and therapy at once, such as gold nanoparticles (GNPs), graphene oxide (GO), superparamagnetic iron oxide nanoparticles (SP…

Carbon nanoparticlesMaterials scienceCancer therapySuperparamagnetic iron oxide nanoparticlesCarbon NanoparticlesMetal NanoparticlesPharmaceutical ScienceNanotechnologyReviewTheranostic NanomedicineAnalytical Chemistrylaw.inventionQD241-441BiopolymersCancer MedicinelawCell Line TumorNeoplasmsDiagnosisDrug DiscoverymedicineCarbon dotsHumansPhysical and Theoretical ChemistryConjugationGraphenePrecision medicineOrganic ChemistryCancerPhotothermal therapyTheranosticsmedicine.diseaseCarbonSettore CHIM/09 - Farmaceutico Tecnologico ApplicativoChemistry (miscellaneous)Colloidal goldMolecular MedicineSurface modificationGraphiteGrapheneMolecules
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Biomolecule-corona formation confers resistance of bacteria to nanoparticle-induced killing: Implications for the design of improved nanoantibiotics

2018

Abstract Multidrug-resistant bacterial infections are a global health threat. Nanoparticles are thus investigated as novel antibacterial agents for clinical practice, including wound dressings and implants. We report that nanoparticles' bactericidal activity strongly depends on their physical binding to pathogens, including multidrug-resistant primary clinical isolates, such as Staphylococcus aureus , Klebsiella pneumoniae or Enterococcus faecalis . Using controllable nanoparticle models, we found that nanoparticle-pathogen complex formation was enhanced by small nanoparticle size rather than material or charge, and was prevented by 'stealth' modifications. Nanoparticles seem to preferentia…

ChemieMedizinBiophysicsBioengineeringMicrobial Sensitivity Tests02 engineering and technologymedicine.disease_causeEnterococcus faecalisMicrobiologyBiomaterials03 medical and health sciencesAntibiotic resistanceListeria monocytogenesDrug Resistance Multiple BacterialEscherichia colimedicine030304 developmental biologychemistry.chemical_classification0303 health sciencesMicrobial ViabilitybiologyBiomolecule021001 nanoscience & nanotechnologybiology.organism_classificationAnti-Bacterial AgentschemistryMechanics of MaterialsStaphylococcus aureusCeramics and CompositesNanoparticlesNanomedicineAdsorption0210 nano-technologyAntibacterial activityBacteriaBiomaterials
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