再生(生物学)
纳米纤维
材料科学
周围神经
坐骨神经
脚手架
周围神经损伤
体内
神经组织工程
雪旺细胞
细胞粘附
神经导管
组织工程
粘附
生物医学工程
焦点粘着
化学
纳米技术
复合材料
解剖
细胞生物学
医学
信号转导
生物
生物技术
作者
Juan Wang,Wei Zheng,Liang Chen,Tonghe Zhu,Wei Shen,Cunyi Fan,Hongjun Wang,Xiumei Mo
标识
DOI:10.1021/acsbiomaterials.8b01564
摘要
Peripheral nerve regeneration and functional recovery remain a significant clinical challenge. Biomaterials that can regulate biological behavior of Schwann cell (SC) and promote neural cell differentiation are beneficial for nerve regeneration and functional recovery. Graphene oxide (GO), as a bioactive nanomaterial, has attracted great attention in biomedical applications. In this study, the possibility of combining the excellent physicochemical properties of GO with nanofiber to develop a bioactive scaffold for nerve regeneration were explored. Briefly, GO was coated on the ApF/PLCL scaffolds. To demonstrate the potentials of this platform, in vitro and in vivo studies toward nerve regeneration were carried out. In vitro, GO-coated scaffolds could enhance SC biological behaviors including migration, proliferation, and myelination. The secretions from SCs cultured on GO-ApF/PLCL scaffolds could induce PC12 cells differentiation. Furthermore, GO-coated nanofibrous scaffolds proved to up-regulate focal adhesion kinase (FAK) expression of PC12 cell. In vivo, GO-ApF/PLCL nerve conduits could successfully repair a 10 mm sciatic nerve defect. These findings suggest that GO-based scaffolds efficiently modulate cell functions and promote nerve regeneration, indicating their potential for nerve regeneration applications.
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