bioRxiv · 10.1101/2021.08.10.455755
Decellularized micro-scaffolds as stem cell carriers for regeneration of cartilage defects
Abstract
Cartilage regeneration remains a great challenge in orthopedic treatment owing to their avascular in nature and lack of self-healing ability. Various clinical treatment options are widely used including osteochondral graft transplantation, micro-fracture, blood clot formation and tissue debridement to recover the damaged cartilage. In this circumstance, cartilage defect recovery via tissue engineered functional micro tissue delivery is becoming an emerging trend in musculoskeletal therapeutics. In this study, functional micro-scaffolds (MS) were generated from Capra ear cartilage, and were separated into size-wise groups. The scaffolds were decellularized via NaOH treatment. The cell adhesion study indicated that Capra adipose tissue derived mesenchymal stem cells (ADMSCs) adhesion is more in ~100 m MSs in comparison to 150-300 m MSs. It may be assumed that the cells are compatible to grow on fibrous surface area (100 m) in comparison to dense surface (150-300 m). Further, 100 m MSs were transformed into functional micro tissues (FMTs) in presence of high density ADMSCs in a hanging droplet culture system. The FMTs was transferred to F127 block polymer hydrogel for 3D culture. After 21 d cultures, the FMT clusters were evaluated for quantitative gene expression. To assess the in vivo cartilage defect regeneration potential, FMTs were delivered to rabbit auricular cartilage defect for 15, 30 and 60 d studies. The H&E-stained histological analysis showed that the cartilage defect is almost healed in 60 d study in comparison to 15 and 30 d study.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Maity, P., Mukherjee, S., Mandal, M., Das, S., Dhara, S.. 2021-08-12. Decellularized micro-scaffolds as stem cell carriers for regeneration of cartilage defects. https://doi.org/10.1101/2021.08.10.455755
Cite the original work for its findings. Save a collection to share your selection of sources.