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神经活性肽纳米纤维促进脊髓损伤后的再生。

Neuroactive Peptide Nanofibers for Regeneration of Spinal Cord after Injury.

机构信息

Institute of Materials Science and NanotechnologyNational Nanotechnology Research Center (UNAM), Bilkent University, Ankara, 06800, Turkey.

Neuroscience Graduate Program, Bilkent University, Ankara, 06800, Turkey.

出版信息

Macromol Biosci. 2021 Jan;21(1):e2000234. doi: 10.1002/mabi.202000234. Epub 2020 Oct 11.

Abstract

The highly complex nature of spinal cord injuries (SCIs) requires design of novel biomaterials that can stimulate cellular regeneration and functional recovery. Promising SCI treatments use biomaterial scaffolds, which provide bioactive cues to the cells in order to trigger neural regeneration in the spinal cord. In this work, the use of peptide nanofibers is demonstrated, presenting protein binding and cellular adhesion epitopes in a rat model of SCI. The self-assembling peptide molecules are designed to form nanofibers, which display heparan sulfate mimetic and laminin mimetic epitopes to the cells in the spinal cord. These neuroactive nanofibers are found to support adhesion and viability of dorsal root ganglion neurons as well as neurite outgrowth in vitro and enhance tissue integrity after 6 weeks of injury in vivo. Treatment with the peptide nanofiber scaffolds also show significant behavioral improvement. These results demonstrate that it is possible to facilitate regeneration especially in the white matter of the spinal cord, which is usually damaged during the accidents using bioactive 3D nanostructures displaying high densities of laminin and heparan sulfate-mimetic epitopes on their surfaces.

摘要

脊髓损伤(SCI)的高度复杂性需要设计新型生物材料,以刺激细胞再生和功能恢复。有前途的 SCI 治疗方法使用生物材料支架,为细胞提供生物活性线索,以触发脊髓中的神经再生。在这项工作中,展示了在 SCI 大鼠模型中使用肽纳米纤维,呈现蛋白质结合和细胞黏附表位。自组装的肽分子设计成纳米纤维,在脊髓细胞中显示硫酸乙酰肝素模拟物和层粘连蛋白模拟物表位。这些神经活性纳米纤维在体外支持背根神经节神经元的黏附和活力以及神经突生长,并在体内损伤 6 周后增强组织完整性。肽纳米纤维支架的治疗也显示出显著的行为改善。这些结果表明,使用表面具有高浓度层粘连蛋白和硫酸乙酰肝素模拟物表位的生物活性 3D 纳米结构,有可能促进再生,特别是在脊髓的白质中,这在事故中通常会受到损伤。

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