Kuihua Zhang, Chunyang Wang, Cunyi Fan, Xiumei Mo
Department of Polymer Materials and Engineering, College of Materials and Textile Engineering, Jiaxing University, Zhejiang, 314001, China.
J Biomed Mater Res A. 2014 Aug;102(8):2680-91. doi: 10.1002/jbm.a.34922. Epub 2013 Sep 16.
Artificial nerve guidance conduits (NGCs) containing bioactive neurotrophic factors and topographical structure to biomimic native tissues are essential for efficient regeneration of nerve gaps. In this study, aligned SF/P(LLA-CL) nanofibers encapsulating nerve growth factor (NGF), which was stabilized by SF in core, were fabricated via a coaxial electrospinning technique. The controlled release of NGF from the nanofibers was evaluated using enzyme-linked immune sorbent assay (ELISA) and PC12 cell-based bioassay over a 60-day time period. The results demonstrated that NGF presented a sustained release and remained biological activity over 60 days. Nerve guidance conduits (NGCs) were fabricated by reeling the aligned SF/P(LLA-CL) nanofibrous scaffolds encapsulating NGF and then used as a bridge implanted across a 15-mm defect in the sciatic nerve of rats to promote nerve regeneration. The outcome in terms of regenerated nerve at 12 weeks was evaluated by a combination of electrophysiological assessment, histochemistry, and electron microscopy. All results clarified that the NGF-encapsulated-aligned SF/P(LLA-CL) NGCs promoted peripheral nerve regeneration significantly better than the aligned SF/P(LLA-CL) NGCs, suggesting that the released NGF from nanofibers could effectively promote the regeneration of peripheral nerve.
含有生物活性神经营养因子和仿生天然组织的拓扑结构的人工神经导管(NGC)对于神经缺损的有效再生至关重要。在本研究中,通过同轴电纺技术制备了包裹神经生长因子(NGF)的排列整齐的SF/P(LLA-CL)纳米纤维,NGF在核心部位由SF稳定。使用酶联免疫吸附测定(ELISA)和基于PC12细胞的生物测定法在60天的时间段内评估了NGF从纳米纤维中的控释情况。结果表明,NGF呈现持续释放,并在60天内保持生物活性。通过卷绕包裹NGF的排列整齐的SF/P(LLA-CL)纳米纤维支架制备神经导管(NGC),然后将其用作桥接物植入大鼠坐骨神经15毫米缺损处,以促进神经再生。在12周时,通过电生理评估、组织化学和电子显微镜相结合的方法评估再生神经的结果。所有结果表明,包裹NGF的排列整齐的SF/P(LLA-CL)NGC比排列整齐的SF/P(LLA-CL)NGC能显著更好地促进周围神经再生,这表明从纳米纤维中释放的NGF能有效促进周围神经的再生。