Cell adhesion on UV-crosslinked polyurethane gels with adjustable mechanical strength and thermoresponsiveness

dc.contributor.authorBreul, Katharina
dc.contributor.authorStengelin, Elena
dc.contributor.authorUrschbach, Moritz
dc.contributor.authorMondeshki, Mihail
dc.contributor.authorWüst, Laura
dc.contributor.authorSirleaf, Jason
dc.contributor.authorSeitel, Sebastian
dc.contributor.authorEmt, Theresa
dc.contributor.authorPschierer, Sarah
dc.contributor.authorBesenius, Pol
dc.contributor.authorSeiffert, Sebastian
dc.date.accessioned2022-10-27T07:13:05Z
dc.date.available2022-10-27T07:13:05Z
dc.date.issued2021
dc.description.abstractTemperature-responsive polyurethane (PU) hydrogels represent a versatile material platform for modern tissue engineering and biomedical applications. However, besides intrinsic advantages such as high mechanical strength and a hydrolysable backbone composition, plain PU materials are generally lacking bio-adhesive properties. To overcome this shortcoming, the authors focus on the synthesis of thermoresponsive PU hydrogels with variable mechanical and cell adhesive properties obtained from linear precursor PUs based on poly(ethylene glycol)s (pEG) with different molar masses, isophorone diisocyanate, and a dimerizable dimethylmaleimide (DMMI)-diol. The cloud point temperatures of the dilute, aqueous PU solutions depend linearly on the amphiphilic balance. Rheological gelation experiments under UV-irradiation reveal the dependence of the gelation time on photosensitizer concentration and light intensity, while the finally obtained gel strength is determined by the polymer concentration and spacing of the crosslinks. The swelling ratios of these soft hydrogels show significant changes between 5 and 40 °C whereby the extent of this switch increases with the hydrophobicity of the precursor. Moreover, it is shown that the incorporation of a low amount of catechol groups into the networks through the DMMI dimerization reaction leads to strongly improved cell adhesive properties without significantly weakening the gels.en_GB
dc.identifier.doihttp://doi.org/10.25358/openscience-8032
dc.identifier.urihttps://openscience.ub.uni-mainz.de/handle/20.500.12030/8047
dc.language.isoeng
dc.rightsCC-BY-4.0
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/
dc.subject.ddc540 Chemiede_DE
dc.subject.ddc540 Chemistry and allied sciencesen_GB
dc.titleCell adhesion on UV-crosslinked polyurethane gels with adjustable mechanical strength and thermoresponsivenessen_GB
dc.typeZeitschriftenaufsatzde_DE
jgu.apc.pricePAR-Fee
jgu.journal.issue24
jgu.journal.titleMacromolecular rapid communications
jgu.journal.volume42
jgu.organisation.departmentFB 09 Chemie, Pharmazie u. Geowissensch.de_DE
jgu.organisation.nameJohannes Gutenberg-Universität Mainzde_DE
jgu.organisation.number7950
jgu.organisation.placeMainz
jgu.organisation.rorhttps://ror.org/023b0x485
jgu.pages.alternative2100505
jgu.publisher.doi10.1002/marc.202100505
jgu.publisher.issn1521-3927
jgu.publisher.nameWiley-VCH
jgu.publisher.placeWeinheim
jgu.publisher.year2021
jgu.rights.accessrightsopenAccessen_GB
jgu.subject.ddccode540
jgu.type.dinitypeArticleen_GB
jgu.type.resourceTexten_GB
jgu.type.versionPublished versionen_GB

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