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Mechanical Reinforced and Self-healing Hydrogels: Bioprinted Biomimetic Methacrylated Collagen Peptide-Xanthan Gum Constructs for Ligament Regeneration

  • Hongjuan Weng
  • , Monize Caiado Decarli
  • , Lei He
  • , Wen Chen
  • , Sabine van Rijt
  • , Katrien V. Bernaerts
  • , Lorenzo Moroni*
  • *Corresponding author voor dit werk

Onderzoeksoutput: ArticleAcademicpeer review

2 Citaten (Scopus)
16 Downloads (Pure)

Samenvatting

Collagen peptide (COP) is water soluble, bioactive, and tends to be a promising alternative to collagen for tissue regeneration. However, its low viscosity and lack of readily polymerizable groups hinder its bioprinting and limit its wide applications in tissue engineering. In this study, methacrylated collagen peptide-xanthan gum (COPMA-XG) bioinks with interpenetrating networks are developed for bioprinting stable constructs, followed by stem cell differentiation. First, self-healing COPMA hydrogels are developed with rapid UV-curing and tunable mechanical properties. To increase the printability and the mechanical properties of COPMA, XG is mixed to create a set of COPMA-XG bioinks. COPMA-XG hydrogels show self-healing properties, optimal printability, and stable morphology in the medium. The bioprinted human bone marrow mesenchymal stem cells (hMSCs) laden COPMA-XG constructs are biocompatible and bioactive, with increased production of extracellular matrix, collagen type I, and scleraxis over 28 days. Overall, bioprinted COPMA-XG constructs are versatile matrices to support hMSCs proliferation and differentiation with potential for ligament tissue engineering.

Originele taal-2English
Artikelnummer2502341
Aantal pagina's15
TijdschriftAdvanced healthcare materials
Volume14
Nummer van het tijdschrift25
Vroegere onlinedatum16-jul.-2025
DOI's
StatusPublished - 2025

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