Cartilage organoid precursors
Intervention1 paper2 findings
C · W · M · H: cells, worms or flies, mice, humans. Dark: independent labs found the same change there. Light: one lab or one study. Outline: nothing yet.
Labs are independent when their papers share no last author and no institution.
Against: findings that point the other way from most findings on the same outcome.
No results posted: trials that ended more than a year ago with no results on ClinicalTrials.gov and no paper in ARN’s record.
Company ties: findings with an author at a company, or from a paper that declares the maker’s interest.
Funder: National Natural Science Foundation of China
- Animals1
Outcomes
2Cartilage injury
downin O. cuniculus1
1 study
Cartilage injury
downin O. cuniculus1
Cartilage organoid precursors decrease cartilage injury in O. cuniculus.
Animalsin situ implantation in rabbit articular cartilage defect model12 weeks
Cartilage matrix-inspired engineered organoid precursors using digital light processing 3D bioprinting for articular cartilage regeneration · Journal of Nanobiotechnology · 25 Aug 2026
SOX9
upin human cells1
1 study
SOX9
upin human cells1
Cartilage organoid precursors increase SOX9 in human cells.
Cellsin human umbilical cord mesenchymal stem cells
Cartilage matrix-inspired engineered organoid precursors using digital light processing 3D bioprinting for articular cartilage regeneration · Journal of Nanobiotechnology · 25 Aug 2026