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FLight Biofabrication Supports Maturation of Articular Cartilage with Anisotropic Properties.

Anna Puiggalí-JouRiccardo RizzoAngela BonatoPhilipp FischSimone PontaDaniel M WeberMarcy Zenobi-Wong
Published in: Advanced healthcare materials (2023)
Tissue engineering approaches that recapitulate cartilage biomechanical properties are emerging as promising methods to restore the function of injured or degenerated tissue. However, despite significant progress in this research area, the generation of engineered cartilage constructs akin to native counterparts still represents an unmet challenge. In particular, the inability to accurately reproduce cartilage zonal architecture with different collagen fibril orientations is a significant limitation. The arrangement of the extracellular matrix (ECM) plays a fundamental role in determining the mechanical and biological functions of the tissue. In this study, we show that a novel light-based approach, Filamented Light (FLight) biofabrication, can be used to generate highly porous, 3D cell-instructive anisotropic constructs that lead to directional collagen deposition. Using a photoclick-based photoresin optimized for cartilage tissue engineering, we demonstrate a significantly improved maturation of the cartilaginous tissues with zonal architecture and remarkable native-like mechanical properties. This article is protected by copyright. All rights reserved.
Keyphrases
  • tissue engineering
  • extracellular matrix
  • finite element
  • single cell
  • gene expression
  • stem cells
  • cell therapy