Interpenetrating Polymer Network Hydrogels with Tunable Viscoelasticity and Proteolytic Cleavability to Direct Stem Cells In Vitro

Abstract: The dynamic nature of cellular microenvironments, regulated by the viscoelasticity and enzymatic cleavage of the extracellular matrix, remains challenging to emulate in engineered synthetic biomaterials. To address this, a novel platform of cell‐instructive hydrogels is introduced, composed of two concurrently forming interpenetrating polymer networks (IPNs). These IPNs consist of the same basic building blocks – four‐armed poly (ethylene glycol) and the sulfated glycosaminoglycan (sGAG) heparin – are cross‐linked through either chemical or physical interactions, allowing for precise and selective tuning of the hydrogel's stiffness, viscoelasticity, and proteolytic cleavability. The studies of the individual and combined effects of these parameters on stem cell behavior revealed that human mesenchymal stem cells exhibited increased spreading and Yes‐associated protein transcriptional activity in more viscoelastic and cleavable sGAG‐IPN hydrogels. Furthermore, human induced pluripotent stem cell (iPSC) cysts displayed enhanced lumen formation, growth, and pluripotency maintenance when cultured in sGAG‐IPN hydrogels with higher viscoelasticity. Inhibition studies emphasized the pivotal roles of actin dynamics and matrix metalloproteinase activity in iPSC cyst morphology, which varied with the viscoelastic properties of the hydrogels. Thus, the introduced sGAG‐IPN hydrogel platform offers a powerful methodology for exogenous stem cell fate control.

Location
Deutsche Nationalbibliothek Frankfurt am Main
Extent
Online-Ressource
Language
Englisch

Bibliographic citation
Interpenetrating Polymer Network Hydrogels with Tunable Viscoelasticity and Proteolytic Cleavability to Direct Stem Cells In Vitro ; day:06 ; month:11 ; year:2024 ; extent:13
Advanced healthcare materials ; (06.11.2024) (gesamt 13)

Creator
Seth, Prannoy
Friedrichs, Jens
Limasale, Yanuar Dwi Putra
Fertala, Nicole
Freudenberg, Uwe
Zhang, Yixin
Lampel, Ayala
Werner, Carsten

DOI
10.1002/adhm.202402656
URN
urn:nbn:de:101:1-2411081327160.074288677542
Rights
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Last update
14.08.2025, 4:54 AM CEST

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Associated

  • Seth, Prannoy
  • Friedrichs, Jens
  • Limasale, Yanuar Dwi Putra
  • Fertala, Nicole
  • Freudenberg, Uwe
  • Zhang, Yixin
  • Lampel, Ayala
  • Werner, Carsten

Other Objects (12)