Hydrogels in Orthopedic Tissue Engineering
Hydrogels in Orthopedic Tissue Engineering
Advances in Bone and Cartilage Regeneration
Chinnappan, Balaji Ayyanar; Misra, Namrata; Sharif, Faiza; Smrithi, N. S.; Bal, Trishna; Santhini, Elango; Pillai, Priyadarshini
Elsevier - Health Sciences Division
04/2026
250
Mole
Inglês
9780443367670
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2. Anatomy and physiology of bone and cartilage tissues
3. Pathologies and injuries requiring regeneration
4. Current challenges in bone and cartilage regeneration
5. Biomaterials for bone and cartilage tissue engineering
6. Hydrogel properties, types and design considerations for tissue engineering
7. Design, fabrication and characterization of hydrogels for bone regeneration
8. Design fabrication and characterization of hydrogels for cartilage regeneration
9. Drug/cell encapsulation and delivery strategies in hydrogel systems
10. Cell-hydrogel interactions in tissue regeneration 11. Growth factors and signaling molecules in tissue engineering scaffold degradation and tissue integration
2. Anatomy and physiology of bone and cartilage tissues
3. Pathologies and injuries requiring regeneration
4. Current challenges in bone and cartilage regeneration
5. Biomaterials for bone and cartilage tissue engineering
6. Hydrogel properties, types and design considerations for tissue engineering
7. Design, fabrication and characterization of hydrogels for bone regeneration
8. Design fabrication and characterization of hydrogels for cartilage regeneration
9. Drug/cell encapsulation and delivery strategies in hydrogel systems
10. Cell-hydrogel interactions in tissue regeneration 11. Growth factors and signaling molecules in tissue engineering scaffold degradation and tissue integration