Publications
202
Citations
8,897
Est. group size
—
Recurring co-author estimate
Active years
50
Publishing since 1977
Hang Lin's research focuses on cartilage biology and osteoarthritis, particularly how aging and molecular signaling pathways contribute to cartilage breakdown and joint disease. The work spans laboratory studies of chondrocytes (cartilage cells), stem cell-based tissue engineering approaches for cartilage and bone repair, and translational topics like joint implants and cartilage aging models. This research could interest students in regenerative medicine, orthopedics, or musculoskeletal biology.
Publication output has remained fairly steady over the last decade, fluctuating between roughly 9 and 19 papers per year without a clear long-term increase or decline.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Biomechanical evaluation of narrow-diameter Ti–Zr implant systems at different lingual inclination angles in the molar region
Frontiers in Oral Health · 2026
- Kaempferol Attenuates Spaceflight‐Associated Knee Cartilage Degradation by Targeting NOX4‐Mediated Mitochondrial Dysfunction
Advanced Science · 2026
- AI-Enhanced Virus Detection in Biopharmaceutical Production Processes
Applied Sciences · 2025
- Forkhead box O proteins in chondrocyte aging and diseases
Journal of Orthopaedic Translation · 2025
- VEGFC/VEGFR3 Signaling‐Dependent Lymphatic Remodeling Modulates Cardiac Response to Pressure Overload
Journal of the American Heart Association · 2025
- Estrogen receptor-α loss accelerates cartilage degradation through CLEC3B-mediated chondrocyte hypertrophy and inflammation
Osteoarthritis and Cartilage · 2025
- AN INNERVATED SYNOVIUM-CARTILAGE CHIP FOR MODELING KNEE JOINT INFLAMMATION AND ASSOCIATED PAIN
Osteoarthritis and Cartilage · 2025
- Generation of an In Vitro Cartilage Aging Model Using Human Sera from Old Donors
Bioengineering · 2025
- Bone Marrow Aspirate Concentrate to Treat Ankle Osteoarthritis: A Narrative Review of Progress and Challenges
Cartilage · 2025
- AGING-ASSOCIATED INCREASE OF GATA4 LEVELS IN ARTICULAR CARTILAGE IS LINKED TO IMPAIRED REGENERATIVE CAPACITY OF CHONDROCYTES AND OSTEOARTHRITIS
Osteoarthritis and Cartilage · 2025
- Aging-associated Increase of GATA4 levels in Articular Cartilage is Linked to Impaired Regenerative Capacity of Chondrocytes and Osteoarthritis
eLife · 2025
- Aging-associated Increase of GATA4 levels in Articular Cartilage is Linked to Impaired Regenerative Capacity of Chondrocytes and Osteoarthritis
bioRxiv (Cold Spring Harbor Laboratory) · 2025
- Aging-associated Increase of GATA4 levels in Articular Cartilage is Linked to Impaired Regenerative Capacity of Chondrocytes and Osteoarthritis
eLife · 2025
- Aging-associated Increase of GATA4 levels in Articular Cartilage is Linked to Impaired Regenerative Capacity of Chondrocytes and Osteoarthritis
eLife · 2025
- Detriment of subchondral plate violation in antegrade osteochondral procedures—lessons and future direction
Annals of Joint · 2025
- Acta Biomaterialia×6
- Biomaterials×5
- Stem Cell Research & Therapy×5
- Osteoarthritis and Cartilage×4
- Research Square×4
- Diane R. Wagner
Medicine · Purdue University West Lafayette
- Tatiana Motta
Medicine · The Ohio State University
- Min Chen
Medicine · The Ohio State University
- Taeyong Ahn
Medicine · Indiana University
- Sonali Karnik
Medicine · Indiana University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 20, 2026.
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