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Hydroxyapatite-Mediated Mechanical Modulation of GelMA Hydrogels Influences Osteogenic Differentiation of 3D Spheroids
- Amarbayasgalan, Narantungalag;
- Kim, Ji Hyeon;
- Koh, Won-Gun;
- Muthuramalingam, Karthika;
- Lee, Hyun Jong
WEB OF SCIENCE
2SCOPUS
2초록
Substrate stiffness critically regulates osteogenic differentiation, yet systematic identification of optimal mechanical conditions in three-dimensional culture remains limited. This study investigated how hydroxyapatite (HAp)-mediated mechanical modulation of gelatin methacryloyl (GelMA) hydrogels influences osteogenic differentiation of encapsulated SAOS-2 spheroids. GelMA hydrogels with HAp at 5, 10, and 15 mu g/mL were characterized for mechanical properties and used to encapsulate pre-formed spheroids under osteogenic conditions. GelMA+HAp5 achieved the highest compressive modulus, while higher HAp concentrations reduced crosslinking efficiency. All formulations maintained comparable viability and metabolic activity. Notably, GelMA+HAp10 produced the highest alkaline phosphatase activity at Days 7 and 14, despite lower stiffness than GelMA+HAp5, demonstrating a non-linear relationship between substrate mechanics and osteogenic response. These results establish that optimizing rather than maximizing mechanical properties represents a more effective scaffold design strategy for bone tissue engineering.
키워드
- 제목
- Hydroxyapatite-Mediated Mechanical Modulation of GelMA Hydrogels Influences Osteogenic Differentiation of 3D Spheroids
- 저자
- Amarbayasgalan, Narantungalag; Kim, Ji Hyeon; Koh, Won-Gun; Muthuramalingam, Karthika; Lee, Hyun Jong
- 발행일
- 2026-01
- 유형
- Article
- 저널명
- GELS
- 권
- 12
- 호
- 1