Search results for "cellular uptake"

showing 9 items of 9 documents

Exploring the cellular uptake of hectorite clay mineral and its drug carrier capabilities.

2022

In the last years, the use of clay minerals for pharmaceutical purposes has increased due to their interesting properties. Hectorite (Ht) is a clay belonging to the smectite group which has attracted attention for applications in biology, tissue engineering and as drug carrier and delivery system. However, the mechanisms involved in Ht cellular uptake and transport into cells, are still unclear. Herein, we used a labeled Ht (Ht/1Cl) to study both the cellular uptake, by confocal laser scanning microscopy, and internalization pathways involved in the cellular uptake, by various endocytosis-inhibiting studies and fluorescence microscopy. These studies highlighted that Ht can penetrate the cel…

Drug CarriersCytotoxicitySilicatesSettore CHIM/06 - Chimica OrganicaSurfaces and InterfacesGeneral MedicineColloid and Surface ChemistryMethotrexateCellular internalizationCellular uptakeHectoriteSettore BIO/14 - FarmacologiaClayPhysical and Theoretical ChemistryBiotechnologyColloids and surfaces. B, Biointerfaces
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Cellular Uptake of siRNA-Loaded Nanocarriers to Knockdown PD-L1: Strategies to Improve T-cell Functions

2020

T-cells are a type of lymphocyte (a subtype of white blood cells) that play a central role in cell-mediated immunity. Currently, adoptive T-cell immunotherapy is being developed to destroy cancer cells. In this therapy, T-cells are harvested from a patient&rsquo

PD-L1Small interfering RNAT-LymphocytesLymphocytemedicine.medical_treatmentT cellImmunotherapy AdoptiveB7-H1 AntigenArticlemedicineHumansNanotechnologyRNA Small Interferinglcsh:QH301-705.5Gene knockdownnanocarriersChemistryT-cellsCancercellular uptakeGeneral MedicineImmunotherapymedicine.diseasemedicine.anatomical_structurelcsh:Biology (General)siRNACancer cellCancer researchNanocarriersadoptive immunotherapyCells
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Nanocarrier based on halloysite and fluorescent probe for intracellular delivery of peptide nucleic acids

2022

The development of systems able to deliver genetic material into a target site is a challenge for modern medicine. Single-stranded peptide nucleic acids have attracted attention as promising therapeutic molecules for diagnostic and gene therapy. However, their poor cell membrane permeability represents a drawback for biomedical applications. Halloysite nanotubes (HNTs) are emerging materials in drug delivery applications both for their ability to penetrate cell membranes and for enhancing the solubility of drugs in biological media. Herein, we report the first example of the use of a nanocarrier based on halloysite labelled with fluorescent switchable halochromic oxazine molecules, to deliv…

Peptide Nucleic AcidsNanotubesHalloysite nanotubesHalloysite nanotubes PNA Covalent modificationsSettore CHIM/06 - Chimica OrganicaHalochromic switchCovalent modificationsSettore CHIM/12 - Chimica Dell'Ambiente E Dei Beni CulturaliSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsBiomaterialsColloid and Surface ChemistryCell Line TumorCellular uptakeSettore BIO/14 - FarmacologiaClayPNAFluorescent Dyes
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Cellular Uptake of DNA Block Copolymer Micelles with Different Shapes

2008

The cellular uptake of DNA block copolymer micelles composed of DNA-b-PPO in Caco-2 cells was studied. In particular it was investigated if the shape of micelle aggregates influences the internalization. Rod-like polymeric particles were taken up 12 times more efficiently than their spherical counter parts although they were composed of the same constituents. Furthermore, it was observed that internalization of all the micelle systems was more efficient than the pristine DNA controls. A cytotoxicity assay proved the non-toxic nature of DNA-b-PPO micelle aggregates.

Polymers and PlasticsmicellesOligonucleotidemedia_common.quotation_subjectOrganic Chemistrycellular uptakeNanoparticleCaco-2DNAMicellechemistry.chemical_compoundchemistryCritical micelle concentrationMaterials ChemistryBiophysicsCopolymerOrganic chemistrynanoparticlesamphiphilic polymerInternalizationDrug carrierhybridizationDNAmedia_commonMacromolecular Rapid Communications
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Tuning the surface of nanoparticles: Impact of poly(2-ethyl-2-oxazoline) on protein adsorption in serum and cellular uptake

2016

Item does not contain fulltext Due to the adsorption of biomolecules, the control of the biodistribution of nanoparticles is still one of the major challenges of nanomedicine. Poly(2-ethyl-2-oxazoline) (PEtOx) for surface modification of nanoparticles is applied and both protein adsorption and cellular uptake of PEtOxylated nanoparticles versus nanoparticles coated with poly(ethylene glycol) (PEG) and non-coated positively and negatively charged nanoparticles are compared. Therefore, fluorescent poly(organosiloxane) nanoparticles of 15 nm radius are synthesized, which are used as a scaffold for surface modification in a grafting onto approach. With multi-angle dynamic light scattering, asym…

SerumTime FactorsPolymers and PlasticsSurface PropertiesNanoparticleBioengineeringProtein Corona02 engineering and technologyChemical Fractionation010402 general chemistry01 natural sciencesCell LineBiomaterialschemistry.chemical_compoundAdsorptionDynamic light scatteringMaterials ChemistryPolyaminesOrganic chemistryHumanspoly(2-ethyl-2-oxazoline)Particle SizeElectrophoresis Agar Gelpoly(ethylene glycol)RhodaminesProteinscellular uptake021001 nanoscience & nanotechnologyprotein adsorptionDynamic Light ScatteringEndocytosis0104 chemical scienceschemistryChemical engineeringSurface modificationNanomedicineInstitut für ChemienanoparticlesAdsorption0210 nano-technologyEthylene glycolNanomedicine Radboud Institute for Molecular Life Sciences [Radboudumc 19]BiotechnologyProtein adsorption
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Ferrocenyl-Coupled N-Heterocyclic Carbene Complexes of Gold(I)

2016

Four gold(I) carbene complexes featuring 4-ferro-cenyl-substituted imidazol-2-ylidene ligands were investigated for antiproliferative and antivascular properties. They were active against a panel of seven cancer cell lines, including multidrug-resistant ones, with low micromolar or nanomolar IC50 (72 h) values, according to their lipophilicity and cellular uptake. The delocalized lipophilic cationic complexes 8 and 10 acted by increasing the reactive oxygen species in two ways: through a genuine ferrocene effect and by inhibiting the thioredoxin reductase. Both complexes gave rise to a reorganization of the F-actin cytoskeleton in endothelial and melanoma cells, associated with a G1 phase c…

StereochemistryMetallocenesThioredoxin reductaseANTITUMOR-ACTIVITYDNA-BINDINGAntineoplastic AgentsCARCINOMA-CELLSCELLULAR UPTAKEPOTENTIAL ANTICANCER010402 general chemistrymetal-based drugs01 natural sciencesCatalysisantitumor agentschemistry.chemical_compoundMiceCoordination ComplexesAnimalsQDFerrous CompoundsIC50CANCER CELLSantivascular activitychemistry.chemical_classificationTube formationReactive oxygen species010405 organic chemistryChemistryOrganic ChemistryCell migrationGeneral ChemistryIN-VITROgold0104 chemical sciencescarbenesChorioallantoic membraneLipophilicityMETAL-COMPLEXESReactive Oxygen SpeciesTHIOREDOXIN REDUCTASE INHIBITORSCHORIOALLANTOIC MEMBRANE MODELCarbeneChemistry
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Clustering-triggered endocytic pathway of α2β1 integrin

2012

integriinitmonirakkulaiset endosomitechovirus 1 (EV 1)kolesterolihajoaminenkalpaiinitcholesterolläpäisevyysmultivesicular bodiescellular uptake mechanismssolukalvotintegrinspermeabilitycalpainsdegradation
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Composition influence on pulmonary delivery of rifampicin liposomes.

2012

The effects of lipid concentration and composition on the physicochemical properties, aerosol performance and in vitro toxicity activity of several rifampicin-loaded liposomes were investigated. To this purpose, six liposome formulations containing different amounts of soy phosphatidylcholine and hydrogenated soy phosphatidylcholine, with and without cholesterol and oleic acid, were prepared and fully characterized. Uni- or oligo-lamellar, small (~100 nm), negatively charged (~60 mV) vesicles were obtained. Lipid composition affected aerosol delivery features of liposomal rifampicin; in particular, the highest phospholipid concentration led to a better packing of the vesic…

liposomesaerosolPhospholipidpulmonary deliveryPharmaceutical Sciencelcsh:RS1-441liposomes; rifampicin; cholesterol; oleic acid; rheology; pulmonary delivery; aerosol; cell viability; cellular uptakerifampicinArticlelcsh:Pharmacy and materia medicachemistry.chemical_compoundPhosphatidylcholineMedicinecell viabilityLiposomeChromatographyCholesterolbusiness.industryVesiclecholesterolcellular uptakeIn vitroOleic acidchemistryBiochemistryoleic acidToxicitylipids (amino acids peptides and proteins)rheologybusinessPharmaceutics
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Systematic Study of a Library of PDMAEMA-Based, Superparamagnetic Nano-Stars for the Transfection of CHO-K1 Cells.

2017

The introduction of the DNA into mammalian cells remains a challenge in gene delivery, particularly in vivo. Viral vectors are unmatched in their efficiency for gene delivery, but may trigger immune responses and cause severe side-reactions. Non-viral vectors are much less efficient. Recently, our group has suggested that a star-shaped structure improves and even transforms the gene delivery capability of synthetic polycations. In this contribution, this effect was systematically studied using a library of highly homogeneous, paramagnetic nano-star polycations with varied arm lengths and grafting densities. Gene delivery was conducted in CHO-K1 cells, using a plasmid encoding a green fluore…

magnetic nanoparticlesPDMAEMAPolymers and PlasticsEGFP02 engineering and technologyATRPPDEGMAGene delivery010402 general chemistry01 natural sciencesArticleViral vectorGreen fluorescent proteinpolycationchemistry.chemical_compoundPlasmidIn vivogene deliveryChemistryChinese hamster ovary cellcellular uptakeCHO cellsGeneral ChemistryTransfection021001 nanoscience & nanotechnologyMolecular biology0104 chemical sciencestransfectionBiophysics0210 nano-technologyEthylene glycolATRP; cellular uptake; CHO cells; EGFP; gene delivery; magnetic nanoparticles; PDMAEMA; PDEGMA; polycation; transfectionPolymers
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