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Yu P, Peng X, Sun H, et al. Inspired by lubricin: a tailored cartilage-armor with durable lubricity and autophagy-activated antioxidation for targeted therapy of osteoarthritis[J]. Materials Horizons, 2024. 

Inspired by lubricin: a tailored cartilage-armor with durable lubricity and autophagy-activated antioxidation for targeted therapy of osteoarthritis

Zhang, Miao, et al. "Photoacoustic Imaging‐Guided Self‐Adaptive Hyperthermia Supramolecular Cascade Nano‐Reactor for Diabetic Periodontal Bone Regeneration." Advanced Science (2024): 2404143.

Photoacoustic Imaging-Guided Self-Adaptive Hyperthermia Supramolecular Cascade Nano-Reactor for Diabetic Periodontal Bone Regeneration

Gao, Wanshan, et al. "A Drop‐By‐Drop Self‐Assembled All‐Natural Hydrogel as a Desensitizer for Rapid and Enduring Management of Dentin Hypersensitivity." Advanced Healthcare Materials (2023): 2303153.

A Drop-By-Drop Self-Assembled All-Natural Hydrogel as a  Desensitizer for Rapid and Enduring Management of Dentin  Hypersensitivity

Shuaibing Wang, Kai Ren, Miao Zhang, Luxuan Shen, Guangwu Zhou, Yuan Ding, Qiangwei Xin, Jun Luo, Jing Xie, and Jianshu Li Self-Adhesive, Strong Antifouling, and Mechanically Reinforced Methacrylate Hyaluronic Acid Cross-Linked Carboxybetaine Zwitterionic Hydrogels Biomacromolecules 2024, 25, 474−485

Self-Adhesive, Strong Antifouling, and Mechanically Reinforced Methacrylate Hyaluronic Acid Cross-Linked Carboxybetaine Zwitterionic Hydrogels

Wang, Hao, et al. "Natural Underwater Bioadhesive Offering Cohesion Modulation via Hydrogen Bond Disruptor: A Highly Injectable and in Vivo Stable Remedy for Gastric Ulcer Resolution." Small (2024): 2307628.

Natural Underwater Bioadhesive Offering Cohesion Modulation via Hydrogen Bond Disruptor: A Highly Injectable and in Vivo Stable Remedy for Gastric Ulcer Resolution

Zhang H, Meng L, Zhang Y, et al. Light and Magnetism Orchestrating Aquatic Pollutant‐Degradation Robots in Programmable Trajectories[J]. Advanced Materials, 2024: 2311446.

Light and Magnetism Orchestrating Aquatic Pollutant-Degradation Robots in Programmable Trajectories
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