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- Dobos, Agnes [remove] 7
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- Bioengineering -- Periodicals 2
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- 1H-NMR proton-nuclear magnetic resonance spectroscopy -- 2PP two-photon polymerization -- Ala alanine -- BMSC Bone marrow Stromal Cells -- CAD computer aided design -- Cys cysteine -- DAS tetrapotassium 4, 4′-(1, 2-ethenediyl)bis(2-(3-sulfo-phenyl)diazenesulfonate) -- DBA diisobutylacrylamide -- DLP digital light projection -- DMD digital micromirror device -- DS degree of substitution -- DSC differential scanning calorimetry -- DTP 3, 3′-dithiobis(propionic hydrazide) -- DTT dithiothreitol -- ECM extracellular matrix -- FI furfuryl isocyanate -- FA furfuryl amine -- G′ storage modulus -- G″ Loss modulus -- GAGs glycosaminoglycans -- gel-AA gelatin-acrylamide -- gel-AC gelatin-anthracene -- gel-AGE gelatin allylglycidyl ether -- gelatin-cys gelatin-cysteine -- gelatin-Cys-2-MPD gelatin modified with cysteine and 2-mercaptopyrimidine-4, 6 diol -- gelatin-FA gelatin furfuryl amine -- gelatin-FI gelatin furfuryl isocyanate -- gelatin-PEG gelatin modified with poly(ethylene) glycol acrylate -- gelatin-TBA-MNA gelatin-thiobutylamidine modified with 2-mercaptonicotinic acid (MNA) -- gelatin-tyramine gelatin modified with tyramine -- gelatin/tyramine/heparin gelatin modified with tyramine and heparin -- gel-boc-AEMA gelatin with boc protected primary amines and aminoethylmethacrylate coupled to the carboxylic acids -- gel-BTHE gelatin-3, 3′, 4, 4′-benzophenone tetra carboxylic dihydroxyethylmethacrylate -- gel-FGE gelatin furfuryl glycidyl ether -- gel-MA gelatin-methacrylamide -- gelMA-DA gelatin-methacrylamide-dopamine -- gel-MFVF gelatin-5-(2-(5-methyl furylene vinylene)) furancarboxyaldehyde -- gel-MOD gelatin-methacryloyl -- gel-MOD-AEMA gelatin-methacryloyl-aminoethylmethacrylate -- gel-NB gelatin-norbornene -- gel-NC gelatin-nitrocinnamate -- gel-PEG-cys gelatin-poly(ethylene glycol) cysteine -- gel-S thiolated gelatin -- gel-T gelatin tetrazine -- gel-VE gelatin-vinylester -- Gln glutamine -- Gly glycine -- GMA gelatin-methacryloyl-acyl -- Hν UV irradiation -- HRP horseradish peroxidase -- Irgacure 2959 (2-hydroxy-1-(4-(hydroxyethoxy)-phenyl)-2-methyl-1-propanone) -- Ile isoleucine -- LAP lithium phenyl-2, 4, 6-trimethylbenzoylphosphinate -- MPG methacrylated poly(ethylene glycol)-modified gelatin -- MFVF 5-(2-(5-methyl furylene vinylene))furancarboxyaldehyde -- MMP-1 matrix metalloproteinase -- MSC mesenchymal stem cell -- NHS n-hydroxysuccinimide -- NMR nuclear magnetic resonance spectroscopy -- P2CK sodium 3, 3′-(((1E, 1E′)-(2-oxocyclopentane-1, 3-diylidene) bis (methanylydiebe))bis(4, 1-phenylene))bis(methylazanediyl))dipropanoate -- P3-A tripropylene glycol diacrylate -- PBS phosphate buffered saline -- PEG poly(ethylene glycol) -- PEGDA poly(ethylene glycol) di acrylate -- PEGdNB poly(ethylene glycol) dinorbornene -- PEG4NB 4-arm poly(ethylene glycol)-norbornene -- PEG4SH 4-arm poly(ethylene glycol)-tetra thiol -- PEGTA 4-arm poly(ethylene glycol) tetra acrylate -- PI photoinitiator -- PPA dipentaerythritol pentaacrylate -- Pro proline -- PTA pentaerythritol triacrylate -- PVA poly(vinyl alcohol) -- PVA-MA polyvinylalcohol-methacrylate -- Ru/SPS photoinitiator based on a ruthenium complex (tris-bipyridyl-ruthenium (II) hexahydrate) and sodium persulfate (SPS) -- SLA stereolithography -- SPS sodium persulfate -- Td dissociation temperature -- Tg glass transition temperature -- TTA trimethylolpropane triacrylate -- TNBSA 2, 4, 6-trinitrobenzene sulfonic acid -- UDMA urethane-dimethacrylate -- UV Ultraviolet -- κ-carrageenan-MA kappa-carrageenan-methacrylate 1