Smart injectable hydrogels for periodontal regeneration: Recent advancements in biomaterials and biofabrication strategies

Bohan Yin, Jagan Mohan Dodda*, Siu Hong Dexter Wong*, G. Roshan Deen, Jeffrey S. Bate, Abhishek Pachauri, Behzad Shiroud Heidari, Tomáš Kovářík, Chi An Luo, Shiao Wen Tsai*

*Corresponding author for this work

Research output: Contribution to journalReview articlepeer-review

4 Scopus citations

Abstract

Periodontitis is a globally prevalent chronic inflammatory disease that leads to periodontal pocket formation and eventually destroys tooth-supporting structures. Hence, the drastic increase in dental implants for periodontitis has become a severe clinical issue. Injectable hydrogel based on extracellular matrix (ECM) is highly biocompatible and tissue-regenerative with tailor-made mechanical properties and high payload capacity for in situ delivery of bioactive molecules to treat periodontitis. This therapeutic tool not only enhances the drug release efficiency and treatment efficacy but also reduces operation time. Nevertheless, it remains challenging to optimize the mechanical properties and intelligent control drug release rate of injectable hydrogels to achieve the highest therapeutic outcome. Literature precedent has shown the modulation of polymer backbones (synthetic polymers, natural polysaccharides, and proteins), crosslinking strategies, other bioactive constituents, and potentially the incorporation of nanomaterials that overall improve the desirable physiochemical and biological performances as well as biodegradability. In this review, we summarize the recent advances in the development, design, and material characterizations of common injectable hydrogels. Furthermore, we highlight cutting-edge representative examples of polysaccharide-, protein- and nanocomposite-based hydrogels that mediate regenerative factors and anti-inflammatory drugs for periodontal regeneration. Finally, we express our perspectives on potential challenges and future development of multifunctional injectable hydrogels for periodontitis.

Original languageEnglish
Article number101855
Pages (from-to)101855
JournalMaterials Today Bio
Volume32
DOIs
StatePublished - 06 2025

Bibliographical note

Publisher Copyright:
© 2025 The Authors

Keywords

  • Injectable hydrogel
  • Local drug delivery system
  • Periodontal regeneration
  • Periodontitis
  • Tissue engineering

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