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Current osteochondral (OC) defect repair approaches using premade scaffolds face clinical limitations due to invasiveness, weak integrity, and/or insufficient interfacial bonding. An injectable hydrophobic laminous adhesive is developed that rapidly photocross‐link subaqueously and forms robust bi‐layered structure that orchestrates biophysical‐chemical cues for stimulating OC repair. Liquid hydrophobic...
Recovery from bone, osteochondral, and cartilage injuries/diseases has been burdensome owing to the damaged vasculature of large defects and/or avascular nature of cartilage leading to a lack of nutrients and supplying cells. However, traditional means of treatment such as microfractures and cell‐based therapy only display limited efficacy due to the inability to ensure cell survival and potential...
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