ACS Medicinal Chemistry Letters · 2018 · 49 citations · 29 references
A novel carrier system based on halloysite nanotubes (HNT), for the potential intraarticular delivery of kartogenin (KGN) by means laponite (Lap) hydrogel (HNT/KGN/Lap), is developed. The drug was first loaded into HNT, and the hybrid composite obtained was used as filler for laponite hydrogel. Both the filler and the hydrogel were thoroughly investigated by several techniques and the hydrogel morphology was imaged by transmission electron microscopy. Furthermore, the gelating ability of laponite in the presence of the filler and the rheological properties of the hybrid hydrogel were also investigated. The kinetic release of kartogenin from HNT and HNT/Lap hybrid hydrogel was studied both in physiological conditions and in <i>ex vivo</i> synovial fluid. In the last case, the kinetic results highlighted that HNT carrier can effectively release KGN in a sustained manner for at least 38 days. Finally, a preliminary biological assays showed that the HNT/KGN/Lap hybrid hydrogel did not exhibit any cytotoxic effect.
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A Stem Cell–Based Approach to Cartilage Repair
Kristen Johnson, Shoutian Zhu, Matthew S. Tremblay et al. · Science · 2012 · 774 citations
Tissue Engineering, Small Molecule Kartogenin, Bone Repair +19
Photo-Cross-Linked Scaffold with Kartogenin-Encapsulated Nanoparticles for Cartilage Regeneration
Dongquan Shi, Xingquan Xu, Yanqi Ye et al. · ACS Nano · 2016 · 264 citations