Dong-an Wang

City University of Hong Kong (CityU)

SCHOLARLY PAPERS

3

DOWNLOADS

105

TOTAL CITATIONS

0

Scholarly Papers (3)

1.

Repair of Large-Scale Osteochondral Defects Under an Induced Condition of Osteoarthritis in Rat Knee Joint with Decellularized Tissue-Engineered Hyaline Cartilage Graft

Number of pages: 22 Posted: 22 May 2023
City University of Hong Kong (CityU), City University of Hong Kong (CityU), City University of Hong Kong (CityU), City University of Hong Kong (CityU), Shandong University, Yangzhou University and City University of Hong Kong (CityU)
Downloads 48 (860,859)

Abstract:

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Osteoarthritis, osteochondral defect, Tissue Engineering, decellularized living hyaline cartilage graft

2.

In Situ Implantation of Type II Collagen-Based Double-Layer Scaffolds for Articular Osteochondral Regeneration Comprising Hyaline Cartilage and Vascularized Subchondral Bones

Number of pages: 24 Posted: 08 Jan 2025
City University of Hong Kong (CityU), Peking University - Beijing Jishuitan Hospital, City University of Hong Kong (CityU), City University of Hong Kong (CityU), City University of Hong Kong (CityU), City University of Hong Kong (CityU), City University of Hong Kong (CityU), Yangzhou University, Peking University - Beijing Jishuitan Hospital and City University of Hong Kong (CityU)
Downloads 43 (912,631)

Abstract:

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Osteochondral, Hyaline cartilage regeneration, Endochondral ossification, Type II collagen, Polydopamine

3.

Engineered Human Spinal Cord Organoid in Channel-Patterned Collagen Complex Scaffold Repairing Spinal Cord Injury

Number of pages: 38 Posted: 09 Apr 2025
City University of Hong Kong (CityU), City University of Hong Kong (CityU), City University of Hong Kong (CityU), City University of Hong Kong (CityU), City University of Hong Kong (CityU), City University of Hong Kong (CityU), City University of Hong Kong (CityU), City University of Hong Kong (CityU) and City University of Hong Kong (CityU)
Downloads 14 (1,227,340)

Abstract:

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Spinal cord organoids, Channel-patterned type II collagen, Spinal cord injury, Regeneration transplantation