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March 30, 2026Journal of Materials Science Materials in Medicine2 citationsOpen Access

Harnessing biopolymeric double network hydrogels for cartilage repair: a review of current strategies

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VRVahid RahimkhoeiYAYuksel AkinayAAAli Akbari

Key Points

  • To review the use of biopolymeric double network hydrogels for cartilage repair and tissue regeneration.
  • Reviewed preclinical studies on double network hydrogels for cartilage regeneration
  • Analyzed the incorporation of growth factors and therapeutic agents in DN hydrogels
  • Evaluated hydration and structural integrity of cartilage tissue with DN hydrogels
  • Double network hydrogels showed improved cartilage growth
  • Enhanced hydration of cartilage tissue observed
  • Maintained structural integrity indicates potential for clinical application

Abstract

Hydrogels with a double network (DN) structure that are based on carbohydrates have shown potential as scaffolds for the regeneration of cartilage. We postulate that these hydrogels can aid in the repair of cartilage and sustain the regeneration of tissue because of their ability to hold large quantities of water and large amounts of bioactive molecules. Some recent preclinical studieswith DN hydrogels that have been modified with growth factors, other biological molecules, and or therapeutic agents have shown enhanced growth of the cartilage tissue, hydration, and structural integrity of the tissue. In this review, we detail these advancements as potential carbohydrate-based double network hydrogels for the treatment of cartilage defects and osteoarthritis. Optimized DN hydrogels are tissue engineering scaffolds for cartilage regeneration, with the potential to translate to clinical practice.

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Cite This Study

Rahimkhoei et al. (2026) studied this question.

synapsesocial.com/papers/69c9c553f8fdd13afe0bd4bahttps://doi.org/10.1007/s10856-026-07023-4
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Macroporous PEG-Alginate Hybrid Double-Network Cryogels with Tunable Degradation Rates Prepared via Radical-Free Cross-Linking for Cartilage Tissue Engineering2024 · 11 citations
  2. 2Hybrid Hydrogel System Integrating Thermoresponsive Microspheres and KGN-Loaded Nanofibers Enables Efficient Cartilage Matrix Regeneration2026
  3. 3Functional Hydrogel: Novel Avenue for Cartilage Regeneration2024
  4. 4Facile synthesis of mechanically robust and injectable tetra-polyethylene glycol/methacrylate chitosan double-network hydrogel cartilage repair2024 · 10 citations
  5. 5Double-network polysaccharide hydrogel for guided tissue repair2025