Decoupling stiffness and toughness of self-healing hydrogels for complex tissue regeneration via 3D bioprinting

  • Kim, Hyun Seung
  • Kim, Jun Seo
  • Hwang, Jiwon
  • Lee, In Young
  • Lee, Kuen Yong
Citations

WEB OF SCIENCE

14
Citations

SCOPUS

14

초록

Although polysaccharides are attractive biocompatible materials compared with synthetic polymers, most polysaccharide-based hydrogels exhibit suboptimal mechanical properties. In this study, we fabricated a hyaluronate (HA)-based self-healing hydrogel with enhanced toughness that can be used as a 3D bioink for complex tissue regeneration. We hypothesized that the incorporation of oxidation, aimed at minimizing the reduction in the molecular weight of HA, along with the introduction of a double network to the hydrogel, could facilitate the construction of 3D structures with decoupled stiffness and toughness. Various physicochemical properties of hydrogels comprising oxidized and hydrazide-modified HAs for potential use as bioinks were assessed. Bilayered constructs containing primary chondrocytes and osteoblasts were designed and fabricated using 3D printing to mimic the growth plate structure. Transplantation of the 3D-printed construct into a mouse model revealed the controlled differentiation stages of chondrocytes. This strategy for tailoring 3D scaffolds and addressing the limitations of polysaccharide-based hydrogels may hold promise for applications in the biomedical field, including the regeneration of complex tissues and organs.

키워드

3D bioprintingComplex tissueDecouplingStiffnessToughnessALGINATE HYDROGELSPOTENTIAL APPLICATIONHYBRID HYDROGELSHYALURONIC-ACIDSTRATEGYDIFFERENTIATIONCOCULTURECOMPOSITEPROPERTYSCAFFOLD
제목
Decoupling stiffness and toughness of self-healing hydrogels for complex tissue regeneration via 3D bioprinting
저자
Kim, Hyun SeungKim, Jun SeoHwang, JiwonLee, In YoungLee, Kuen Yong
DOI
10.1016/j.cej.2024.150551
발행일
2024-05
유형
Article
저널명
Chemical Engineering Journal
487
페이지
1 ~ 14