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Inorganic/Biopolymers Hybrid Hydrogels Dual Cross-Linked for Bone Tissue Regeneration. | LitMetric

AI Article Synopsis

  • Tissue engineering aims to regenerate new tissue, but progress has been limited, making the choice of biomaterial for scaffolding crucial.
  • The study focuses on creating hydrogels from biocompatible natural polymers, specifically gelatin and a pectin derivative, to enhance bone regeneration.
  • A double-reinforcement approach using Si-based compounds and cellulose nanofibers, along with a dual cross-linking method, is proposed to improve flexibility and strength in scaffolding materials.

Article Abstract

In tissue engineering, the potential of re-growing new tissue has been considered, however, developments towards such clinical and commercial outcomes have been modest. One of the most important elements here is the selection of a biomaterial that serves as a "scaffold" for the regeneration process. Herein, we designed hydrogels composed of two biocompatible natural polymers, namely gelatin with photopolymerizable functionalities and a pectin derivative amenable to direct protein conjugation. Aiming to design biomimetic hydrogels for bone regeneration, this study proposes double-reinforcement by way of inorganic/biopolymer hybrid filling composed of Si-based compounds and cellulose nanofibers. To attain networks with high flexibility and elastic modulus, a double-crosslinking strategy was envisioned-photochemical and enzyme-mediated conjugation reactions. The dual cross-linked procedure will generate intra- and intermolecular interactions between the protein and polysaccharide and might be a resourceful strategy to develop innovative scaffolding materials.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9777565PMC
http://dx.doi.org/10.3390/gels8120762DOI Listing

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