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选择合适的种子细胞、支架和生长因子,可利用组织工程方法使脊髓损伤的修复效果最大化。

Selected suitable seed cell, scaffold and growth factor could maximize the repair effect using tissue engineering method in spinal cord injury.

作者信息

Ji Wen-Chen, Zhang Xiao-Wei, Qiu Yu-Sheng

机构信息

Wen-Chen Ji, Xiao-Wei Zhang, Yu-Sheng Qiu, Department of Orthopedics, the First Affiliated Hospital of Xi'an Jiaotong University, Xi'an 710061, Shaanxi Province, China.

出版信息

World J Exp Med. 2016 Aug 20;6(3):58-62. doi: 10.5493/wjem.v6.i3.58.

Abstract

Spinal cord injury usually leads to permanent disability, which could cause a huge financial problem to the patient. Up to now there is no effective method to treat this disease. The key of the treatment is to enable the damage zone axonal regeneration and luckily it could go through the damage zone; last a connection can be established with the target neurons. This study attempts to combine stem cell, material science and genetic modification technology together, by preparing two genes modified adipose-derived stem cells and inducing them into neuron direction; then by compositing them on the silk fibroin/chitosan scaffold and implanting them into the spinal cord injury model, seed cells can have features of neuron cells. At the same time, it could stably express the brain-derived neurotrophic factor and neurotrophin-3, both of which could produce synergistic effects, which have a positive effect on the recovery of spinal cord. The spinal cord scaffold bridges the broken end of the spinal cord and isolates with the surrounding environment, which could avoid a scar effect on the nerve regeneration and provide three-dimensional space for the seed cell growth, and at last we hope to provide a new treatment for spinal cord injury with the tissue engineering technique.

摘要

脊髓损伤通常会导致永久性残疾,这可能给患者带来巨大的经济问题。到目前为止,尚无有效的治疗方法。治疗的关键是使损伤区域的轴突再生,并幸运地使其穿过损伤区域;最终与靶神经元建立连接。本研究试图将干细胞、材料科学和基因改造技术结合起来,通过制备两种基因修饰的脂肪干细胞并将它们诱导向神经元方向分化;然后将它们复合在丝素蛋白/壳聚糖支架上并植入脊髓损伤模型中,使种子细胞具有神经元细胞的特性。同时,它能稳定表达脑源性神经营养因子和神经营养素-3,两者可产生协同作用,对脊髓恢复有积极作用。脊髓支架连接脊髓的断端并与周围环境隔离,这可以避免对神经再生产生瘢痕效应,并为种子细胞生长提供三维空间,最后我们希望用组织工程技术为脊髓损伤提供一种新的治疗方法。

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