Search results for "polyethylene glycol"

showing 10 items of 337 documents

Biodegradable pH-Sensitive Poly(ethylene glycol) Nanocarriers for Allergen Encapsulation and Controlled Release

2015

In the last decades, the number of allergic patients has increased dramatically. Allergen-specific immunotherapy (SIT) is the only available cause-oriented therapy so far. SIT reduces the allergic symptoms, but also exhibits some disadvantages; that is, it is a long-lasting procedure and severe side effects like anaphylactic shock can occur. In this work, we introduce a method to encapsulate allergens into nanoparticles to avoid severe side effects during SIT. Degradable nanocarriers combine the advantage of providing a physical barrier between the encapsulated cargo and the biological environment as well as responding to certain local stimuli (like pH) to release their cargo. This work int…

Polymers and PlasticsProton Magnetic Resonance SpectroscopyNanoparticleBioengineeringmacromolecular substancesmedicine.disease_causePolyethylene GlycolsBiomaterialschemistry.chemical_compoundAllergenPolymer chemistryPEG ratioMaterials ChemistrymedicineHumansNanotechnologyDrug CarriersAcetalAllergensHydrogen-Ion ConcentrationEndolysosomeControlled releaseCombinatorial chemistrychemistrySpectrometry Mass Matrix-Assisted Laser Desorption-IonizationChromatography GelNanocarriersEthylene glycolBiomacromolecules
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Poly(Ethylene Glycol) Dimethacrylates with Cleavable Ketal Sites: Precursors for Cleavable PEG-Hydrogels.

2017

The authors introduce poly(ethylene glycol) (PEG) based macromonomers containing acid-labile ketal moieties as well as terminal methacrylate units that are amenable to radical polymerization. The synthesis of PEGs of different molecular weights (ranging from 2000 to 13 000 g mol-1 with polydispersities <1.15) with a central ketal unit (PEG-ketal-diol) and their conversion to PEG-ketal-dimethacrylates (PEG-ketal-DMA) is introduced. Degradation rates of both PEG-ketal-diols and PEG-ketal-DMA are investigated by in situ 1 H NMR kinetic studies in deuterated phosphate buffer. Hydrogels containing 0, 5, or 10 wt% of PEG-ketal-DMA and 100, 95, or 90 wt% of PEG-DMA, respectively, are synthesized a…

Polymers and PlasticsRadical polymerizationBioengineeringBiocompatible Materialsmacromolecular substances02 engineering and technology010402 general chemistryMethacrylate01 natural sciencesHydrogel Polyethylene Glycol DimethacrylatePolymerizationBiomaterialschemistry.chemical_compoundPEG ratioPolymer chemistryMaterials ChemistryMolecular massChemistryHydrolysistechnology industry and agricultureHydrogen-Ion Concentration021001 nanoscience & nanotechnology0104 chemical sciencesMolecular WeightKineticsDrug deliverySelf-healing hydrogelsProton NMR0210 nano-technologyEthylene glycolBiotechnologyMacromolecular bioscience
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pH-Responsive protein nanoparticlesviaconjugation of degradable PEG to the surface of cytochromec

2020

Proteins represent a versatile biopolymer material for the preparation of nanoparticles. For drug delivery applications an acid-triggered disassembly and payload release is preferred. Herein, we present a protein nanoparticle system based on cytochrome c, which is surface-modified with acid-degradable polyethylene glycol (PEGylation). pH-Sensitivity was obtained through vinyl ether moieties distributed in the polyether backbone. When PEGylated, cytochrome c shows a different solubility behaviour in organic solvents, which allows for particle preparation using an emulsion-based solvent evaporation method. The resulting particles are stable under physiological conditions but degrade at acidic…

Polymers and PlasticsbiologyChemistryCytochrome cOrganic Chemistrytechnology industry and agricultureNanoparticleBioengineeringPolyethylene glycolVinyl etherengineering.materialBiochemistrychemistry.chemical_compoundChemical engineeringDrug deliverybiology.proteinmedicineengineeringPEGylationBiopolymerSolubilitymedicine.drugPolymer Chemistry
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Reactive Self-Assembly and Specific Cellular Delivery of NCO-sP(EO-stat-PO)-Derived Nanogels

2018

This study presents the reactive self-assembly of isocyanate functional and amphiphilic six-arm, star-shaped polyether prepolymers in water into nanogels. Intrinsic molecular amphiphilicity, mainly driven by the isophorone moiety at the distal endings of the star-shaped molecules, allows for the preparation of spherical particles with an adjustable size of 100-200 nm by self-assembly and subsequent covalent cross-linking without the need for organic solvents or surfactants. Covalent attachment of a fluorescence dye and either the cell-penetrating TAT peptide or a random control peptide sequence shows that only TAT-labeled nanogels are internalized by HeLa cells. The nanogels thus specifical…

Polymers and Plasticsta221Bioengineering02 engineering and technology010402 general chemistry01 natural sciencesPolyethylene GlycolsBiokemia solu- ja molekyylibiologia - Biochemistry cell and molecular biologyBiomaterialschemistry.chemical_compoundnanogelsDrug Delivery SystemsAmphiphileMaterials ChemistryHumansPolyethyleneimineMoleculeMoietynanopolymeeritreactive self-assemblyPeptide sequenceFluorescent DyesIsophoronegeelitta1182nanobiotekniikka021001 nanoscience & nanotechnologyIsocyanate0104 chemical scienceschemistryCovalent bondBiophysicsNanoparticlesSelf-assembly0210 nano-technologyHeLa CellsBiotechnology
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Polyphosphoester surfactants as general stealth coatings for polymeric nanocarriers

2020

Opsonization of nanocarriers is one of the most important biological barriers for controlled drug delivery. The typical way to prevent such unspecific protein adsorption and thus fast clearance by the immune system is the covalent modification of drug delivery vehicles with poly(ethylene glycol) (PEG), so-called PEGylation. Recently, polyphosphoesters (PPEs) were identified as adequate PEG substitutes, however with the benefits of controllable hydrophilicity, additional chemical functionality, or biodegradability. Here, we present a general strategy by non-covalent adsorption of different nonionic PPE-surfactants to nanocarriers with stealth properties. Polyphosphoester surfactants with dif…

Polymers0206 medical engineeringBiomedical EngineeringUT-Hybrid-DProtein Corona02 engineering and technologyStealth effectBiochemistryPolyethylene GlycolsBiomaterialschemistry.chemical_compoundSurface-Active AgentsPolyphosphoesterPEG ratioMolecular Biologychemistry.chemical_classificationDrug CarriersChemistryGeneral MedicinePolymer021001 nanoscience & nanotechnology020601 biomedical engineeringCombinatorial chemistryPEGProtein coronaDrug deliveryDrug deliveryPEGylationNanoparticlesNanocarriers0210 nano-technologyEthylene glycolBiotechnologyProtein adsorption
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Hydrophilic/Hydrophobic Nanostripes in Lipopolymer Monolayers

2000

PolymersAir water interfaceChemistryElectronsAtomic and Molecular Physics and OpticsNanostructuresPolyethylene GlycolsChemical engineeringLiposomesAmphiphileMonolayerPhysical and Theoretical ChemistryHydrophilic hydrophobicHydrophobic and Hydrophilic InteractionsAmphiphilic copolymerChemPhysChem
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Unusual triskelion patterns and dye-labelled GUVs: consequences of the interaction of cholesterol-containing linear-hyperbranched block copolymers wi…

2015

Cholesterol (Ch) linked to a linear-hyperbranched block copolymer composed of poly(ethylene glycol) (PEG) and poly(glycerol) (hbPG) was investigated for its membrane anchoring properties. Two polyether-based linear-hyperbranched block copolymers with and without a covalently attached rhodamine fluorescence label (Rho) were employed (Ch-PEG30-b-hbPG23 and Ch-PEG30-b-hbPG17-Rho). Compression isotherms of co-spread 1,2-dipalmitoyl-sn-glycero-3-phosphocholine (DPPC) or 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine (POPC) with the respective polymers were measured on the Langmuir trough and the morphology development of the liquid-condensed (LC) domains was studied by epi-fluorescence microsc…

PolymersPolyestersLipid BilayersPolyethylene GlycolsRhodaminechemistry.chemical_compoundMonolayerLactic AcidPOPCPhospholipidsUnilamellar Liposomeschemistry.chemical_classificationAqueous solutionChromatographyRhodaminesVesicletechnology industry and agricultureGeneral ChemistryPolymerCondensed Matter PhysicsGlycerylphosphorylcholineCrystallographyCholesterolMembraneMicroscopy FluorescencechemistryPhosphatidylcholineslipids (amino acids peptides and proteins)Ethylene glycolSoft Matter
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Learning from nature: beta-sheet-mimicking copolymers get organized.

2007

The solution structures formed by coil-coil copolymers arise from the selective solvation of one of the two blocks and have been well described. In most cases in such relatively simple synthetic structures there are no specific attractive forces that can aid the aggregation process. Nature, however, provides plenty of inspiring polymeric architectures that are shaped and ordered hierarchically by noncovalent forces. The high level of structural definition displayed by proteins, for example, is unmatched by synthetic polymers. An emerging area of interest in polymer science tries to combine the best of both worlds, the natural and the synthetic, by conjugating synthetic polymers and beta-she…

PolymersSupramolecular chemistryBeta sheetNanotechnologyMicroscopy Atomic ForceProtein EngineeringCatalysisProtein Structure SecondaryPolyethylene GlycolsMicroscopy Electron TransmissionCopolymerchemistry.chemical_classificationIntermolecular forceSolvationProteinsGeneral ChemistryPolymerSolution structureProtein Structure TertiarySupramolecular polymersChemistrychemistryModels ChemicalNanoparticlesPeptidesOligopeptidesAngewandte Chemie (International ed. in English)
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Galactosylated polyaspartamide copolymers for siRNA targeted delivery to hepatocellular carcinoma cells

2017

The limited efficacy of available treatments for hepatocellular carcinoma (HCC) requires the development of novel therapeutic approaches. We synthesized a novel cationic polymer based on α,β-poly-(N-2-hydroxyethyl)-D,L-aspartamide (PHEA) for drug delivery to HCC cells. The copolymer was synthesized by subsequent derivatization of PHEA with diethylene triamine (DETA) and with a polyethylene glycol (PEG) derivative bearing galactose (GAL) molecules, obtaining the cationic derivative PHEA-DETA-PEG-GAL. PHEA-DETA-PEG-GAL has suitable chemical-physical characteristics for a potential systemic use and can effectively deliver a siRNA (siE2F1) targeted against the transcription factor E2F1, a gen…

Polyplexes HCC siRNA E2F1 PHEA-DETA-PEG-GALCarcinoma HepatocellularPolymersPharmaceutical ScienceE2F1; HCC; PHEA-DETA-PEG-GAL; Polyplexes; siRNA.02 engineering and technologyPolyethylene glycol03 medical and health scienceschemistry.chemical_compound0302 clinical medicineCell Line TumorPEG ratiomedicineHumansE2F1Gene silencingGene SilencingRNA Small InterferingHCCReceptorCell growthChemistryLiver NeoplasmssiRNA.021001 nanoscience & nanotechnologymedicine.diseaseMolecular biologyPHEA-DETA-PEG-GALPolyplexeE2F1030220 oncology & carcinogenesisHepatocellular carcinomasiRNADrug deliveryCancer researchPeptides0210 nano-technologyE2F1 Transcription FactorPolyplexes
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Polypropylene-based melt mixed composites with singlewalled carbon nanotubes for thermoelectric applications: Switching from p-type to n-type by the …

2017

Abstract The thermoelectric properties of melt processed conductive nanocomposites consisting of an insulating polypropylene (PP) matrix filled with singlewalled carbon nanotubes (CNTs) and copper oxide (CuO) were evaluated. An easy and cheap route to switch p-type composites into n-type was developed by adding polyethylene glycol (PEG) during melt mixing. At the investigated CNT concentrations of 0.8 wt% and 2 wt% (each above the electrical percolation threshold of ∼0.1 wt%), and a fixed CuO content of 5 wt%, the PEG addition converted p-type composites (positive Seebeck coefficient (S)) into n-type (negative S). PEG was also found to improve the filler dispersion inside the matrix. Two co…

PolypropyleneMaterials scienceNanocompositePolymers and PlasticsOrganic ChemistryPercolation threshold02 engineering and technologyPolyethylene glycolCarbon nanotube010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical scienceslaw.inventionchemistry.chemical_compoundchemistrylawSeebeck coefficientPEG ratioThermoelectric effectMaterials ChemistryComposite material0210 nano-technologyPolymer
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