GelMA–silk fibroin composite hydrogels for articular cartilage regeneration: emerging strategies and translational frontiers

Articular cartilage (AC) is avascular and has a low cell density, which has limited its ability for self-repair. This leads to the generation of biomechanically inferior fibrocartilage after injury or degeneration. Hydrogels are promising scaffolds for cartilage regeneration because of their high-water content, viscoelasticity, and tunable degradation. They mimic the extracellular matrix (ECM) and enable controlled release of cells and bioactive factors. Gelatin methacryloyl (GelMA) is inherently bioactive and photocrosslinkable. However, it is mechanically weak and rapidly degrading. Silk fibroin (SF) offers excellent mechanical robustness and structural stability. Recent studies on GelMA/SF composite hydrogels explored interpenetrating networks (IPNs) and hybrid cross-linking strategies to improve mechanical stability while maintaining cell viability and supporting chondrogenic differentiation. Other novel approaches to improve cartilage-specific regeneration include growth factors, zonal architectures, cell-homing strategies, 3D bioprinting, and organoid-based systems. Preclinical trials reported encouraging results. Yet, challenges remain in matching scaffold degradation to tissue formation, long-term mechanical durability and integration, host responses and reproducible manufacturing. This is particularly the case for aged and osteoarthritic joints where the regenerative process is less supportive. Further validation in clinically relevant models and long-term studies are required to confirm the translational potential of GelMA/SF hydrogels for load bearing cartilage regeneration.

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Publication Details

Journal
International Journal of Polymeric Materials
Published
2026-10-09
DOI
https://doi.org/10.1080/00914037.2026.2742464
Primary Topic
Silk-based biomaterials and applications
Type
article
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article

GelMA–silk fibroin composite hydrogels for articular cartilage regeneration: emerging strategies and translational frontiers

Neelam Shobha Nirala, Upasana Kachroo, Shivangi Giri, Satya Subrahmanya Praveena Kumara
International Journal of Polymeric Materials
Silk-based biomaterials and applications
article

GelMA–silk fibroin composite hydrogels for articular cartilage regeneration: emerging strategies and translational frontiers

Neelam Shobha Nirala, Upasana Kachroo, Shivangi Giri, Satya Subrahmanya Praveena Kumara
article en

Abstract

Articular cartilage (AC) is avascular and has a low cell density, which has limited its ability for self-repair. This leads to the generation of biomechanically inferior fibrocartilage after injury or degeneration. Hydrogels are promising scaffolds for cartilage regeneration because of their high-water content, viscoelasticity, and tunable degradation. They mimic the extracellular matrix (ECM) and enable controlled release of cells and bioactive factors. Gelatin methacryloyl (GelMA) is inherently bioactive and photocrosslinkable. However, it is mechanically weak and rapidly degrading. Silk fibroin (SF) offers excellent mechanical robustness and structural stability. Recent studies on GelMA/SF composite hydrogels explored interpenetrating networks (IPNs) and hybrid cross-linking strategies to improve mechanical stability while maintaining cell viability and supporting chondrogenic differentiation. Other novel approaches to improve cartilage-specific regeneration include growth factors, zonal architectures, cell-homing strategies, 3D bioprinting, and organoid-based systems. Preclinical trials reported encouraging results. Yet, challenges remain in matching scaffold degradation to tissue formation, long-term mechanical durability and integration, host responses and reproducible manufacturing. This is particularly the case for aged and osteoarthritic joints where the regenerative process is less supportive. Further validation in clinically relevant models and long-term studies are required to confirm the translational potential of GelMA/SF hydrogels for load bearing cartilage regeneration.

International Journal of Polymeric Materials
Instituto Nacional de Tecnologia (BR), National Institute of Technology (JP), National Institute of Technology (NO), All India Institute of Medical Sciences (IN)
Openalex Percentile: Top 28%
Silk-based biomaterials and applications
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GelMA–silk fibroin composite hydrogels for articular cartilage regeneration: emerging strategies and translational frontiers — Neelam Shobha Nirala, Upasana Kachroo, et al. · International Journal of Polymeric Materials (2026) | TGRS Research Map | TGRS