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Titel: Tyrosinase cross-linked PEG hydrogels with DAT and DATT as artificial substrates : design, structure, and functions
Autor(en): Racheva, MiroslavaIn der Gemeinsamen Normdatei der DNB nachschlagen
Basalo Lourido, Javier
Ece Gurdal, Enise
Herbst, MartinIn der Gemeinsamen Normdatei der DNB nachschlagen
Bayar, Seyhmus
Radzik, Daniela
Bähr, Elen
Zwies, ConstanzeIn der Gemeinsamen Normdatei der DNB nachschlagen
Neffe, Axel T.In der Gemeinsamen Normdatei der DNB nachschlagen
Pietzsch, MarkusIn der Gemeinsamen Normdatei der DNB nachschlagen
Lendlein, AndreasIn der Gemeinsamen Normdatei der DNB nachschlagen
Wischke, ChristianIn der Gemeinsamen Normdatei der DNB nachschlagen
Erscheinungsdatum: 2026
Art: Artikel
Sprache: Englisch
Zusammenfassung: Enzymes such as oxidases are sustainable tools for hydrogel synthesis, but complex competing reactions have limited the mechanistic understanding and biomedical applications of these materials. Guided by molecular docking and MM-GBSA calculations, we identified two artificial substrates, desaminotyrosine (DAT) and desaminotyrosyltyrosine (DATT), that were experimentally more efficiently converted by mushroom tyrosinase (mTyr) than the natural substrate tyrosine. These substrates were used to synthesize hydrogels from DAT/DATT-functionalized star-shaped oligoethylene glycol (sOEG). Model reactions elucidated the chemical nature and functionality of the hydrogel netpoints. Material properties were systematically investigated depending on sOEG molecular weight (5, 10, 20 kDa), substrate type, and mTyr concentration. Functional mesh sizes and controlled release functions were investigated with fluorescent dextrans (4−500 kDa) and heparin. Cell culture studies with L929 fibroblasts and THP-1 monocytes suggested inertness of the material. These findings provide fundamental insight into mTyr-catalyzed hydrogel formation and support further exploration for in situ hydrogel synthesis.
URI: https://opendata.uni-halle.de//handle/1981185920/124396
http://dx.doi.org/10.25673/122450
Open-Access: Open-Access-Publikation
Nutzungslizenz: (CC BY 4.0) Creative Commons Namensnennung 4.0 International(CC BY 4.0) Creative Commons Namensnennung 4.0 International
Journal Titel: Biomacromolecules
Verlag: American Chemical Soc.
Verlagsort: Columbus, Ohio
Band: 27
Heft: 2
Originalveröffentlichung: 10.1021/acs.biomac.5c01929
Seitenanfang: 1317
Seitenende: 1336
Enthalten in den Sammlungen:Open Access Publikationen der MLU