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Combining a Density Gradient of Biomacromolecular Nanoparticles with Biological Effectors in an Electrospun Fiber-Based Nerve Guidance Conduit to Promote Peripheral Nerve Repair

  • Binghui Jin
  • , Yiling Yu
  • , Chenghao Lou
  • , Xiaodi Zhang
  • , Bowen Gong
  • , Jinghao Chen
  • , Xiangxiang Chen
  • , Zihan Zhou
  • , Liqun Zhang
  • , Jian Xiao
  • , Jiajia Xue
  • Beijing University of Chemical Technology
  • Wenzhou Medical University

科研成果: 期刊稿件文章同行评审

52 引用 (Scopus)

摘要

Peripheral nerve injury is a serious medical problem with limited surgical and clinical treatment options. It is of great significance to integrate multiple guidance cues in one platform of nerve guidance conduits (NGCs) to promote axonal elongation and functional recovery. Here, a multi-functional NGC is constructed to promote nerve regeneration by combining ordered topological structure, density gradient of biomacromolecular nanoparticles, and controlled delivery of biological effectors to provide the topographical, haptotactic, and biological cues, respectively. On the surface of aligned polycaprolactone nanofibers, a density gradient of bioactive nanoparticles capable of delivering recombinant human acidic fibroblast growth factor is deposited. On the graded scaffold, the proliferation of Schwann cells is promoted, and the directional extension of neurites from both PC12 cells and dorsal root ganglions is improved in the direction of increasing particle density. After being implanted in vivo for 6 and 12 weeks to repair a 10-mm rat sciatic nerve defect, the NGC promotes axonal elongation and remyelination, achieving the regeneration of the nerve not only in anatomical structure but also in functional recovery. Taken together, the NGC provides a favorable microenvironment for peripheral nerve regeneration and holds great promise for realizing nerve repair with an efficacy close to autograft.

源语言英语
文章编号2203296
期刊Advanced Science
10
4
DOI
出版状态已出版 - 3 2月 2023
已对外发布

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