ACS Nano · 2023 · 137 citations · 56 references
As chondrocytes from osteoarthritic cartilage usually exhibit aging and senescent characteristics, targeting aging chondrocytes could be a potential therapeutic strategy. In this study, exosomes derived from umbilical cord-derived mesenchymal stem cells (UCMSC-EXOs) combined with the chondrocyte-targeting capacity and controlled-release system were proposed for osteoarthritis (OA) treatment via rejuvenating aging chondrocytes. The essential functional miRNAs within UCMSC-EXOs were investigated, with the p53 signaling pathway identified as the key factor. To improve the therapeutic efficiency and retention time of UCMSC-EXOs <i>in vivo</i>, the exosomes (EXOs) were engineered on membranes with a designed chondrocyte-targeting polymers, and encapsulated within thiolated hyaluronic acid microgels to form a "two-phase" releasing system, which synergistically facilitated the repair of OA cartilage in a rat model. Together, this study highlighted the rejuvenating effects of UCMSC-EXOs on OA chondrocytes and the potential to combine with chondrocyte-targeting and sustained-release strategies toward a future cell-free OA treatment.
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Bert Vogelstein, David P. Lane, Arnold J. Levine · Nature · 2000 · 6.6K citations
Reassessment of Exosome Composition
Dennis K. Jeppesen, Aidan M. Fenix, Jeffrey L. Franklin et al. · Cell · 2019 · 2.8K citations · Full text
Ok Hee Jeon, Chaekyu Kim, Remi-Martin Laberge et al. · Nature Medicine · 2017 · 1.4K citations · Full text
Regenerative Medicine, Inflammation, Post-traumatic Osteoarthritis +11