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Porous Organic Materials in Tissue Engineering: Recent Advances and Applications for Severed Facial Nerve Injury Repair

  • Jingxuan Sun
  • , Wenxin Cao
  • , Shuang Pan
  • , Lina He
  • , Dongchao Ji
  • , Nannan Zheng
  • , Xiangyu Sun
  • , Ranxu Wang*
  • , Yumei Niu*
  • *Corresponding author for this work
  • The First Affiliated Hospital of Harbin Medical University
  • Harbin Institute of Technology
  • School of Medicine and Health, Harbin Institute of Technology

Research output: Contribution to journalReview articlepeer-review

Abstract

The prevalence of facial nerve injury is substantial, and the restoration of its structure and function remains a significant challenge. Autologous nerve transplantation is a common treatment for severed facial nerve injury; however, it has great limitations. Therefore, there is an urgent need for clinical repair methods that can rival it. Tissue engineering nerve conduits are usually composed of scaffolds, cells and neurofactors. Tissue engineering is regarded as a promising method for facial nerve regeneration. Among different factors, the porous nerve conduit made of organic materials, which has high porosity and biocompatibility, plays an indispensable role. This review introduces facial nerve injury and the existing treatment methods and discusses the necessity of the application of porous nerve conduit. We focus on the application of porous organic polymer materials from production technology and material classification and summarize the necessity and research progress of these in repairing severed facial nerve injury, which is relatively rare in the existing articles. This review provides a theoretical basis for further research into and clinical interventions on facial nerve injury and has certain guiding significance for the development of new materials.

Original languageEnglish
Article number566
JournalMolecules
Volume29
Issue number3
DOIs
StatePublished - Feb 2024

Keywords

  • facial nerve injury
  • facial nerve regeneration
  • nerve conduit
  • porous organic materials
  • tissue engineering

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