4.6 Review

Engineered Schwann Cell-Based Therapies for Injury Peripheral Nerve Reconstruction

期刊

FRONTIERS IN CELLULAR NEUROSCIENCE
卷 16, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fncel.2022.865266

关键词

Schwann cells; peripheral nervous system; transcriptional regulators; tissue-engineered nerve graft; directed reprogramming

资金

  1. National Natural Science Foundation of China [82001301, 81974019]
  2. National Key Research and Development Program of China [2018YFA0108700, 2017YFA0105602]
  3. NSFC Projects of International Cooperation and Exchanges [81720108004]
  4. Key Program of Guangzhou Science Research Plan [201904020047]
  5. Co-innovation Foundation of Guangzhou City [201704020221]
  6. Special Project of Dengfeng Program of Guangdong Provincial People's Hospital [KY0120220133, DFJHBF202111, KJ012020630, DFJH201812, KJ012019119, KJ012019423]

向作者/读者索取更多资源

Compared to the central nervous system, the peripheral nervous system has a greater capacity for regeneration due to the plasticity of Schwann cells (SCs). This review examines the potential of using genetically modified SCs or tissue-engineered nerves for the repair of peripheral nervous injuries (PNIs). The therapeutic effects of these strategies resemble autologous transplantation, which is currently the gold standard for PNI repair.
Compared with the central nervous system, the adult peripheral nervous system possesses a remarkable regenerative capacity, which is due to the strong plasticity of Schwann cells (SCs) in peripheral nerves. After peripheral nervous injury, SCs de-differentiate and transform into repair phenotypes, and play a critical role in axonal regeneration, myelin formation, and clearance of axonal and myelin debris. In view of the limited self-repair capability of SCs for long segment defects of peripheral nerve defects, it is of great clinical value to supplement SCs in necrotic areas through gene modification or stem cell transplantation or to construct tissue-engineered nerve combined with bioactive scaffolds to repair such tissue defects. Based on the developmental lineage of SCs and the gene regulation network after peripheral nerve injury (PNI), this review summarizes the possibility of using SCs constructed by the latest gene modification technology to repair PNI. The therapeutic effects of tissue-engineered nerve constructed by materials combined with Schwann cells resembles autologous transplantation, which is the gold standard for PNI repair. Therefore, this review generalizes the research progress of biomaterials combined with Schwann cells for PNI repair. Based on the difficulty of donor sources, this review also discusses the potential of unlimited provision of pluripotent stem cells capable of directing differentiation or transforming existing somatic cells into induced SCs. The summary of these concepts and therapeutic strategies makes it possible for SCs to be used more effectively in the repair of PNI.

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