ACS Biomaterials Science & Engineering · 2022 · 30 citations · 48 references
Tissue EngineeringEngineeringSily PeptidesBiomaterials DesignBone RepairBiomedical EngineeringOrthopaedic SurgeryRegenerative MedicineIi Blend HydrogelCollagen TypeOsteoarthritisMatrix BiologyAttached Collagen-binding PeptidesFunctional Tissue EngineeringCartilage Tissue EngineeringMesenchymal Stem CellBiopolymer GelMedicineCs RetentionBiocompatible MaterialExtracellular Matrix
Adding chondroitin sulfate (CS) to collagen scaffolds has been shown to improve the outcomes for articular cartilage tissue engineering. Instead of physical entrapment or chemical crosslinking of CS within a scaffold, this study investigated the use of CS with attached collagen-binding peptides (termed CS-SILY). This method better recapitulates the aspects of native cartilage while retaining CS within a collagen type I and II blend (Col I/II) hydrogel. CS retention, average fibril diameter, and mechanical properties were altered by varying the number of SILY peptides attached to the CS backbone. When mesenchymal stromal cells (MSCs) were encapsulated within the scaffolds, the addition of CS-SILY molecules resulted in higher sulfated glycosaminoglycan production, and these results suggest that CS-SILY promotes MSC differentiation into chondrocytes. Taken together, our study shows the promise of adding a CS-SILY molecule to a Col I/II hydrogel with encapsulated MSCs to promote cartilage repair.
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Multilineage Potential of Adult Human Mesenchymal Stem Cells
Mark F. Pittenger, Alastair M. Mackay, Stephen C. Beck et al. · Science · 1999 · 20.9K citations
Adult Stem Cell, Multilineage Potential, Biomedical Engineering +16
Proteoglycans: many forms and many functions
Tim Hardingham, Amanda Fosang · The FASEB Journal · 1992 · 1.2K citations · Full text
Shigeyuki Wakitani, K. Imoto, Tetsuya Yamamoto et al. · Osteoarthritis and Cartilage · 2002 · 958 citations · Full text
Tissue Engineering, Regenerative Medicine, Osteoarthritic Knees +15