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一种与雪旺细胞相结合的磁响应纳米复合支架在暴露于磁场时可促进坐骨神经再生。

A magnetically responsive nanocomposite scaffold combined with Schwann cells promotes sciatic nerve regeneration upon exposure to magnetic field.

作者信息

Liu Zhongyang, Zhu Shu, Liu Liang, Ge Jun, Huang Liangliang, Sun Zhen, Zeng Wen, Huang Jinghui, Luo Zhuojing

机构信息

Department of Orthopedics, Xijing Hospital, Fourth Military Medical University, Xi'an, Shaanxi.

Department of Orthopedics, No 161 Hospital of PLA, Wuhan, Hubei.

出版信息

Int J Nanomedicine. 2017 Oct 24;12:7815-7832. doi: 10.2147/IJN.S144715. eCollection 2017.

Abstract

Peripheral nerve repair is still challenging for surgeons. Autologous nerve transplantation is the acknowledged therapy; however, its application is limited by the scarcity of available donor nerves, donor area morbidity, and neuroma formation. Biomaterials for engineering artificial nerves, particularly materials combined with supportive cells, display remarkable promising prospects. Schwann cells (SCs) are the absorbing seeding cells in peripheral nerve engineering repair; however, the attenuated biologic activity restricts their application. In this study, a magnetic nanocomposite scaffold fabricated from magnetic nanoparticles and a biodegradable chitosan-glycerophosphate polymer was made. Its structure was evaluated and characterized. The combined effects of magnetic scaffold (MG) with an applied magnetic field (MF) on the viability of SCs and peripheral nerve injury repair were investigated. The magnetic nanocomposite scaffold showed tunable magnetization and degradation rate. The MGs synergized with the applied MF to enhance the viability of SCs after transplantation. Furthermore, nerve regeneration and functional recovery were promoted by the synergism of SCs-loaded MGs and MF. Based on the current findings, the combined application of MGs and SCs with applied MF is a promising therapy for the engineering of peripheral nerve regeneration.

摘要

周围神经修复对外科医生来说仍然具有挑战性。自体神经移植是公认的治疗方法;然而,其应用受到可用供体神经稀缺、供体区域发病率以及神经瘤形成的限制。用于工程化人工神经的生物材料,特别是与支持细胞结合的材料,展现出显著的前景。雪旺细胞(SCs)是周围神经工程修复中的吸附接种细胞;然而,其生物学活性减弱限制了它们的应用。在本研究中,制备了一种由磁性纳米颗粒和可生物降解的壳聚糖 - 甘油磷酸聚合物制成的磁性纳米复合支架。对其结构进行了评估和表征。研究了磁性支架(MG)与外加磁场(MF)对雪旺细胞活力和周围神经损伤修复的联合作用。磁性纳米复合支架显示出可调节的磁化强度和降解速率。MG与外加MF协同作用可提高移植后雪旺细胞的活力。此外,负载雪旺细胞的MG与MF的协同作用促进了神经再生和功能恢复。基于当前的研究结果,MG、雪旺细胞与外加MF的联合应用是周围神经再生工程的一种有前景的治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/adab/5661463/5731688b256d/ijn-12-7815Fig1.jpg

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