Hydrogel-based microfluidics for vascular tissue engineering

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dc.identifier.uri http://dx.doi.org/10.15488/3129
dc.identifier.uri http://www.repo.uni-hannover.de/handle/123456789/3159
dc.contributor.author Koroleva, Anastasia
dc.contributor.author Deiwick, Andrea
dc.contributor.author Nguyen, Alexander
dc.contributor.author Narayan, Roger
dc.contributor.author Shpichka, Anastasia
dc.contributor.author Kufelt, Olga
dc.contributor.author Kiyan, Roman
dc.contributor.author Bagratashvili, Victor N.
dc.contributor.author Timashev, Peter
dc.contributor.author Scheper, Thomas
dc.contributor.author Chichkov, Boris
dc.date.accessioned 2018-04-18T13:04:39Z
dc.date.available 2018-04-18T13:04:39Z
dc.date.issued 2016
dc.identifier.citation Koroleva, A.; Deiwick, A.; Nguyen, A.; Narayan, R.; Shpichka, A. et al.: Hydrogel-based microfluidics for vascular tissue engineering. In: BioNanoMaterials 17 (2016), Nr. Februar, S. 19-32. DOI: https://doi.org/10.1515/bnm-2015-0026
dc.description.abstract In this work, we have explored 3-D co-culture of vasculogenic cells within a synthetically modified fibrin hydrogel. Fibrinogen was covalently linked with PEG-NHS in order to improve its degradability resistance and physico-optical properties. We have studied influences of the degree of protein PEGylation and the concentration of enzyme thrombin used for the gel preparation on cellular responses. Scanning electron microscopy analysis of prepared gels revealed that the degree of PEGylation and the concentration of thrombin strongly influenced microstructural characteristics of the protein hydrogel. Human umbilical vein endothelial cells (HUVECs) and human adipose-derived stem cells (hASCs), used as vasculogenic co-culture, could grow in 5:1 PEGylated fibrin gels prepared using 1:0.2 protein to thrombin ratio. This gel formulation supported hASCs and HUVECs spreading and the formation of cell extensions and cell-to-cell contacts. Expression of specific ECM proteins and vasculogenic process inherent cellular enzymatic activity were investigated by immunofluorescent staining, gelatin zymography, western blot and RT-PCR analysis. After evaluation of the optimal gel composition and PEGylation ratio, the hydrogel was utilized for investigation of vascular tube formation within a perfusable microfluidic system. The morphological development of this co-culture within a perfused hydrogel over 12 days led to the formation of interconnected HUVEC-hASC network. The demonstrated PEGylated fibrin microfluidic approach can be used for incorporating other cell types, thus representing a unique experimental platform for basic vascular tissue engineering and drug screening applications. © 2016 by De Gruyter. eng
dc.language.iso eng
dc.publisher Berlin : De Gruyter
dc.relation.ispartofseries BioNanoMaterials 17 (2016), Nr. Februar
dc.rights Es gilt deutsches Urheberrecht. Das Dokument darf zum eigenen Gebrauch kostenfrei genutzt, aber nicht im Internet bereitgestellt oder an Außenstehende weitergegeben werden. Dieser Beitrag ist aufgrund einer (DFG-geförderten) Allianz- bzw. Nationallizenz frei zugänglich.
dc.subject microfluidic hydrogels eng
dc.subject PEGylated fibrin eng
dc.subject tissue engineering eng
dc.subject vasculogenesis eng
dc.subject fibrin eng
dc.subject fibrinogen eng
dc.subject gelatinase A eng
dc.subject gelatinase B eng
dc.subject macrogol eng
dc.subject matrix metalloproteinase 14 eng
dc.subject matrix metalloproteinase 16 eng
dc.subject matrix metalloproteinase 19 eng
dc.subject silicone eng
dc.subject thrombin eng
dc.subject adipose derived stem cell eng
dc.subject angiogenesis eng
dc.subject Article eng
dc.subject cell encapsulation eng
dc.subject chemical composition eng
dc.subject chemical modification eng
dc.subject coculture eng
dc.subject concentration (parameters) eng
dc.subject confocal microscopy eng
dc.subject controlled study eng
dc.subject covalent bond eng
dc.subject human eng
dc.subject human cell eng
dc.subject hydrogel eng
dc.subject immunofluorescence test eng
dc.subject infrared spectroscopy eng
dc.subject microfluidics eng
dc.subject PEGylation eng
dc.subject priority journal eng
dc.subject protein expression eng
dc.subject protein modification eng
dc.subject reverse transcription polymerase chain reaction eng
dc.subject scanning electron microscopy eng
dc.subject tissue engineering eng
dc.subject umbilical vein endothelial cell eng
dc.subject vascular tissue eng
dc.subject Western blotting eng
dc.subject zymography eng
dc.subject.ddc 610 | Medizin, Gesundheit ger
dc.title Hydrogel-based microfluidics for vascular tissue engineering
dc.type Article
dc.type Text
dc.relation.issn 2193-0651
dc.relation.doi https://doi.org/10.1515/bnm-2015-0026
dc.bibliographicCitation.volume 17
dc.bibliographicCitation.firstPage 19
dc.bibliographicCitation.lastPage 32
dc.description.version publishedVersion
tib.accessRights frei zug�nglich


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