Search results for "NANOG"

showing 10 items of 140 documents

MicroRNA-29b-1 impairs in vitro cell proliferation, self‑renewal and chemoresistance of human osteosarcoma 3AB-OS cancer stem cells

2014

Osteosarcoma (OS) is the most common type of bone cancer, with a peak incidence in the early childhood. Emerging evidence suggests that treatments targeting cancer stem cells (CSCs) within a tumor can halt cancer and improve patient survival. MicroRNAs (miRNAs) have been implicated in the maintenance of the CSC phenotype, thus, identification of CSC-related miRNAs would provide information for a better understanding of CSCs. Downregulation of miRNA-29 family members (miR-29a/b/c; miR‑29s) was observed in human OS, however, little is known about the functions of miR-29s in human OS CSCs. Previously, during the characterization of 3AB-OS cells, a CSC line selected from human OS MG63 cells, we…

cancer stem cellsHomeobox protein NANOGCancer Research3AB-OS cells; Cancer stem cells; MicroRNA; MicroRNA-29b-1; Multidrug resistance; Osteosarcoma; Bone Neoplasms; Cell Line Tumor; Cell Movement; Cell Proliferation; Drug Resistance Neoplasm; Gene Expression Regulation Neoplastic; Humans; MicroRNAs; Neoplasm Invasiveness; Osteosarcoma; Cancer Research; OncologyDrug ResistanceBone NeoplasmsBiologyCell LineSOX2multidrug resistanceCell MovementCancer stem cellCell Line TumorSettore BIO/10 - BiochimicamicroRNAmedicineHumansNeoplasm InvasivenessClonogenic assaymicroRNA-29b-1Cell ProliferationNeoplasticOsteosarcomaTumormicroRNAOncogeneCancer3AB-OS cellsArticlesCell cyclemedicine.diseaseGene Expression Regulation Neoplasticosteosarcoma cancer stem cells microRNA microRNA-29b-1 multidrug resistance 3AB-OS cellsMicroRNAsGene Expression RegulationOncologyDrug Resistance NeoplasmImmunologyCancer researchNeoplasm
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Structure of e-beam sculptured poly(N-vinylpyrrolidone) networks across different length-scales, from macro to nano

2013

Abstract Study of macromolecular structure and dynamics of networks formed by pulsed electron-beam irradiation of poly(N-vinyl pyrrolidone) (PVP) aqueous solutions, at relatively low energy per pulse and across different concentration regimes, provides the basis for the understanding of a new generation of functional nanostructures. Networks are the result of the follow–up reactions initiated by a continuous series of electron pulse-generated hydroxyl radicals, which may have a different fate at the variance of polymer concentration. Different spectroscopic techniques, FT-IR, 13 C { 1 H} CP-MAS NMR and Raman, applied to characterize the formed networks, describe a profound modification of t…

chemistry.chemical_classificationAqueous solutionMaterials scienceNanostructurePolymers and PlasticsOrganic ChemistryNanotechnologyPolymersymbols.namesakeChemical engineeringchemistryNano-Materials ChemistrysymbolsElectron beam processingStatic light scatteringSettore CHIM/07 - Fondamenti Chimici Delle TecnologieRaman spectroscopyNanogels Irradiation Poly(N-vinylpyrrolidone)NanogelPolymer
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Numerical Simulation of the Kinetics of Radical Decay in Single-Pulse High-Energy Electron-Irradiated Polymer Aqueous Solutions

2019

A new method for the numerical simulation of the radiation chemistry of aqueous polymer solutions is introduced. The method makes use of a deterministic approach combining the conventional homogeneous radiation chemistry of water with the chemistry of polymer radicals and other macromolecular species. The method is applied on single-pulse irradiations of aqueous polymer solutions. The speciation of macromolecular species accounts for the variations in the number of alkyl radicals per chain, molecular weight, and number of internal loops (as a consequence of an intramolecular radical-radical combination). In the simulations, the initial polymer molecular weight, polymer concentration, and do…

chemistry.chemical_classificationAqueous solutionNanogels synthesi010304 chemical physicsComputer simulationKineticsPOLY(ETHYLENE OXIDE); SYNTHETIC-POLYMERS; RADIOLYSIS; NANOGELS; DEGRADATIONSingle pulseElectronPolymerRadiation chemistry010402 general chemistry01 natural sciencesradiation chemistry0104 chemical sciencesCondensed Matter::Soft Condensed MatterchemistryChemical physicsnumerical simulation0103 physical sciencesebeam irradiationSettore CHIM/07 - Fondamenti Chimici Delle TecnologieIrradiationPhysical and Theoretical ChemistryThe Journal of Physical Chemistry A
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On the origin of functionalization in one-pot radiation synthesis of nanogels from aqueous polymer solutions

2016

Radiation-engineered poly(N-vinyl pyrrolidone) nanogels are very interesting biocompatible nanocarriers for i.v. administration of therapeutics and contrast agents for bioimaging. The manufacturing process is fast and effective, it grants excellent control of particle size and simultaneous sterilization of the formed nanogels. Interestingly, primary amino groups and carboxyl groups, useful for (bio)conjugation, are also formed in a dose-dependent fashion. In this paper, by means of both numerical simulations and experiments, the origin of nanogel size control and functionalization is investigated. This understanding offers a new dimension for the design and production of radiation-sculpture…

chemistry.chemical_classificationAqueous solutionirradiationManufacturing processGeneral Chemical EngineeringNanotechnology02 engineering and technologyGeneral ChemistryPolymerradiation-sculptured multifunctional nanocarriers from aqueous solutions of polymers010402 general chemistry021001 nanoscience & nanotechnologyBiocompatible material01 natural sciences0104 chemical scienceschemistrySurface modificationSettore CHIM/07 - Fondamenti Chimici Delle TecnologieParticle sizeNanocarriers0210 nano-technologyhydrogelsNanogel
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Degradable cationic nanohydrogel particles for stimuli-responsive release of siRNA.

2014

Well-defined nanogels have become quite attractive as safe and stable carriers for siRNA delivery. However, to avoid nanoparticle accumulation, they need to provide a stimuli-responsive degradation mechanism that can be activated at the payload's site of action. In this work, the synthetic concept for generating well-defined nanohydrogel particles is extended to incorporate disulfide cross-linkers into a cationic nanonetwork for redox-triggered release of oligonucleotide payload as well as nanoparticle degradation under reductive conditions of the cytoplasm. Therefore, a novel disulfide-modified spermine cross-linker is designed that both allows disassembly of the nanogel as well as removal…

chemistry.chemical_classificationMagnetic Resonance SpectroscopyPolymers and PlasticsChemistryOligonucleotideSpermidineOrganic ChemistryCationic polymerizationNanoparticleNanogelsFluorescence correlation spectroscopyHydrogelsPolymerPolyethylene GlycolsNanotoxicologyCationsAgarose gel electrophoresisMaterials ChemistryBiophysicsPolyethyleneimineDisulfidesRNA Small InterferingNanogelMacromolecular rapid communications
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Soluble Single-Molecule Nanogels of Controlled Structure as a Matrix for Efficient Artificial Enzymes

2006

chemistry.chemical_classificationMolecular StructureNanogelsHomogeneous catalysisGeneral ChemistryMatrix (biology)Combinatorial chemistryCatalysisPolyethylene GlycolsMolecular WeightEnzymeMicroscopy Electron TransmissionchemistryPolyethyleneimineOrganic chemistryMoleculeMolecular imprintingAngewandte Chemie International Edition
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High-energy radiation processing, a smart approach to obtain PVP-graft-AA nanogels

2014

Abstract Poly(N-vinylpyrrolidone)-grafted-acrylic acid biocompatible nanogels (NGs) were prepared using an exiting industrial-type electron accelerator and setups, starting from semi-dilute aqueous solutions of a commercial PVP and the acrylic acid monomer. As a result, NGs with tunable size and structure can be obtained quantitatively. Sterility was also imparted at the integrated dose absorbed. The chemical structure of the NGs produced was confirmed through Fourier Transformer Infrared Spectroscopy (FT-IR). The molecular and physico-chemical properties of NGs, such as the hydrodynamic dimensions and surface charge densities, for various polymer and monomer concentrations in the irradiate…

chemistry.chemical_classificationPoly(N-vinylpyrrolidone) Acrylic acid grafting Nanogels E-beam irradiationRadiationMaterials scienceAqueous solutionAbsorption spectroscopyInfrared spectroscopyPolymerchemistry.chemical_compoundMonomerchemistryChemical engineeringPolymer chemistrySettore CHIM/07 - Fondamenti Chimici Delle TecnologieSurface chargeSpectroscopyPoly(N-vinylpyrrolidone); acrylic acid grafting; nanogels; e-beam irradiation.Acrylic acidRadiation Physics and Chemistry
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Studies of network organization and dynamics of e-beam crosslinked PVPs: From macro to nano

2012

Abstract In this work the influence of poly(N-vinyl pyrrolidone) (PVP) concentration in water on the organization and dynamics of the corresponding macro-/nanogel networks has been systematically investigated. Irradiation has been performed at the same irradiation dose (within the sterilization dose range) and dose rate. In the selected irradiation conditions, the transition between macroscopic gelation and micro-/nanogels formation is observed just below the critical overlap concentration (∼1 wt%), whereas the net prevalence of intra-molecular over inter-molecular crosslinking occurs at a lower polymer concentration (below 0.25 wt%). Dynamic–mechanical spectroscopy has been applied as a cl…

chemistry.chemical_classificationRadiationMaterials scienceAqueous solutionNMR spin–lattice relaxationSpin–lattice relaxationNanogelsPolymerDynamic mechanical analysise-Beam irradiation; PVP aqueous solutions; Nanogels; Dynamic mechanical spectroscopy; NMR spin–lattice relaxationDynamic mechanical spectroscopyNanogelPVP aqueous solutionsPolymerizationChemical engineeringchemistryNano-Polymer chemistrye-Beam irradiationElectron beam processingPVP aqueous solutionSettore CHIM/07 - Fondamenti Chimici Delle TecnologieNMR spin-lattice relaxationNanogelRadiation Physics and Chemistry
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Atomically Precise Distorted Nanographenes: The Effect of Different Edge Functionalization on the Photophysical Properties down to the Femtosecond Sc…

2023

Nanographenes (NGs) have been attracting widespread interest since they combine peculiar properties of graphene with molecular features, such as bright visible photoluminescence. However, our understanding of the fundamental properties of NGs is still hampered by the high degree of heterogeneity usually characterizing most of these materials. In this context, NGs obtained by atomically precise synthesis routes represent optimal benchmarks to unambiguously relate their properties to well-defined structures. Here we investigate in deep detail the optical response of three curved hexa-peri-hexabenzocoronene (HBC) derivatives obtained by atomically precise synthesis routes. They are constituted…

distorted hexa-peri-hexabenzocoronene derivativesoptical propertiesatomically precise nanographenesfluorescent nanomaterialsOptical propertiesSettore FIS/01 - Fisica SperimentaleAtomically precise nanographenesGeneral Materials Scienceatomically precise nanographenes; fluorescent nanomaterials; distorted hexa-<i>peri</i>-hexabenzocoronene derivatives; optical propertiesFluorescent nanomaterialsDistorted hexa-perihexabenzocoronene derivativesMaterials
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Studies of network structure and dynamics of e-beam crosslinked PVPs: From macro to nano

2011

Much interest has been paid to develop a variety of radiation-crosslinked hydrated polymeric materials, which swell in water but do not dissolve, as biocompatible materials used for wound healing, drug delivery system, surface-coating material for medically used devices, etc. With the aim of establishing design rules to produce hydrogels of controlled size at the nanoscale and desired internal network structure using conventional electron accelerators and set-ups, here we attempt a description in terms of structural and dynamic properties of polymer networks generated through e-beam irradiation of aqueous solutions of the same model polymer, a commercial grade poly(N-vinyl-pyrrolidone), sub…

e-Beam irradiationPVP aqueous solutions Nanogels Dynamic mechanical spectroscopy NMR spin–lattice relaxation
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