0000000000718006

AUTHOR

Johannes Ewald

showing 4 related works from this author

A Nonconventional Approach toward Multihydroxy Functional Polystyrenes Relying on a Simple Grignard Reagent

2020

Capitalizing on the inertness of styrene toward Grignard reagents, 4-vinylphenylmagnesium bromide was utilized for the rapid and convenient preparation of the protected monomer 2,2-dimethyl-4-(4-vi...

Inorganic Chemistrychemistry.chemical_compoundMonomerPolymers and PlasticschemistryBromideSimple (abstract algebra)ReagentOrganic ChemistryMaterials ChemistryGrignard reagentCombinatorial chemistryStyreneMacromolecules
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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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Acid‐Cleavable Poly(ethylene glycol) Hydrogels Displaying Protein Release at pH 5

2020

Abstract PEG is the gold standard polymer for pharmaceutical applications, however it lacks degradability. Degradation under physiologically relevant pH as present in endolysosomes, cancerous and inflammatory tissues is crucial for many areas. The authors present anionic ring‐opening copolymerization of ethylene oxide with 3,4‐epoxy‐1‐butene (EPB) and subsequent modification to introduce acid‐degradable vinyl ether groups as well as methacrylate (MA) units, enabling radical cross‐linking. Copolymers with different molar ratios of EPB, molecular weights (M n) up to 10 000 g mol−1 and narrow dispersities (Đ<1.05) were prepared. Both the P(EG‐co‐isoEPB)MA copolymer and the hydrogels showed pH‐…

540 Chemistry and allied sciencesVinyl CompoundsBiocompatible MaterialsDegree of polymerization010402 general chemistry01 natural sciencesCatalysisPolyethylene GlycolsPolymerizationchemistry.chemical_compoundHydrolysisPolymer chemistryPEG ratioCopolymermedicinehydrogelsPolymer Technologieschemistry.chemical_classificationFull PaperEthylene oxide010405 organic chemistryHydrolysisOrganic ChemistryBiochemistry and Molecular BiologyProteinsprotein releaseHydrogelsGeneral ChemistryPolymerFull PapersHydrogen-Ion ConcentrationVinyl etherPolymerteknologiPEG0104 chemical sciencescopolymerizationchemistry540 Chemiedrug deliverySelf-healing hydrogelsMethacrylatesBiokemi och molekylärbiologimedicine.drugChemistry – A European Journal
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Tapered Multiblock Copolymers Based on Farnesene and Styrene: Impact of Biobased Polydiene Architectures on Material Properties

2020

The reactivity of the biobased monomer β-farnesene in the statistical anionic copolymerization with styrene and the effect of the bottlebrush-like polyfarnesene structure on the phase separation be...

Materials sciencePolymers and PlasticsFarneseneOrganic ChemistryMultiblock copolymer02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesStyreneInorganic Chemistrychemistry.chemical_compoundMonomerchemistryChemical engineeringMaterials ChemistryCopolymerReactivity (chemistry)0210 nano-technologyMaterial propertiesMacromolecules
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