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首页> 外文期刊>Acta biomaterialia >Regulated viral BDNF delivery in combination with Schwann cells promotes axonal regeneration through capillary alginate hydrogels after spinal cord injury
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Regulated viral BDNF delivery in combination with Schwann cells promotes axonal regeneration through capillary alginate hydrogels after spinal cord injury

机译:调节的病毒BDNF递送与Schwann细胞的组合通过脊髓损伤后通过毛细血管藻酸盐水凝胶促进轴突再生

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摘要

Graphical abstract Display Omitted Abstract Grafting of cell-seeded alginate capillary hydrogels into a spinal cord lesion site provides an axonal bridge while physically directing regenerating axonal growth in a linear pattern. However, without an additional growth stimulus, bridging axons fail to extend into the distal host spinal cord. Here we examined whether a combinatory strategy would support regeneration of descending axons across a cervical (C5) lateral hemisection lesion in the rat spinal cord. Following spinal cord transections, Schwann cell (SC)-seeded alginate hydrogels were grafted to the lesion site and AAV5 expressing brain-derived neurotrophic factor (BDNF) under control of a tetracycline-regulated promoter was injected caudally. In addition, we examined whether SC injection into the caudal spinal parenchyma would further enhance regeneration of descending axons to re-enter the host spinal cord. Our data show that both serotonergic and descending axons traced by biotinylated dextran amine (BDA) extend throughout the scaffolds. The number of regenerating axons is significantly increased when caudal BDNF expression is activated and transient BDNF delivery is able to sustain axons after gene expression is switched off. Descending axons are confined to the caudal graft/host interface even with continuous BDNF expression for 8 weeks. Only with a caudal injection of SCs, a pathway facilitating axonal regeneration through the host/graft interface is generated allowing axons to successfully re-enter the caudal spinal cord. Statement of Significance Recovery from spinal cord injury is poor due to the limited regeneration observed in the adult mammalian central nervous system. Biomaterials, cell transplantation and growth factors that can guide axons across a lesion site, provide a cellular substrate, stimulate axon growth and have shown some promise in increasing the growth distance of regenerating axons. In the present study, we combined an alginate biomaterial with linear channels with transplantation of Schwann cells within and beyond the lesion site and injection of a regulatable vector for the transient expression of brain-derived neurotrophic factor (BDNF). Our data show that only with the full combination axons extend across the lesion site and that expression of BDNF beyond 4 weeks does not further increase the number of regenerating axons. ]]>
机译:图形摘要显示省略了摘要将细胞种子海藻酸盐毛细管水凝胶移植到脊髓病变部位提供轴突网,同时物理引导在线性图案中的再生轴突生长。然而,没有额外的生长刺激,桥接轴突未能延伸到远端脊髓。在这里,我们检查了组合策略是否会支持在大鼠脊髓中穿过宫颈(C5)横向上周病变的降序轴突的再生。在脊髓横截面后,施瓦氏细胞(SC)均取藻酸盐水凝胶与病变位点移植到病变部位,并且在四环素调节的启动子的控制下表达脑衍生的神经营养因子(BDNF)的AAV5注射均匀。此外,我们检查了SC注射进入尾部脊柱疗中的是否进一步增强降轴的再生以重新进入宿主脊髓。我们的数据表明,由生物素化的葡聚糖胺(BDA)追踪的Serotonergic和下降轴突在整个支架上延伸。当尾部BDNF表达被激活并且在基因表达被关闭后,当尾部BDNF表达被激活并且瞬时BDNF递送能够维持轴突时,再生轴突的数量显着增加。即使使用连续的BDNF表达为8周,下降轴突也局限于尾部移植/宿主界面。只有尾注射SCS,产生促进通过主机/移植界面的轴突再生的途径允许轴突成功地重新进入尾部脊髓。由于成人哺乳动物中枢神经系统中观察到的再生具有有限的再生,从脊髓损伤的显着性恢复陈述。可以引导在病变位点上的轴突的生物材料,细胞移植和生长因子提供蜂窝衬底,刺激轴突生长,并在增加再生轴突的生长距离时显示出一些承诺。在本研究中,我们将一种藻酸盐生物材料与线性通道组合在病变部位内部和超出病变部位内部和超出病变部位和注射可调节载体的脑衍生的神经营养因子(BDNF)的瞬时表达。我们的数据表明,只有全组合轴突延伸到病变部位,并且BDNF超过4周的表达并不能进一步增加再生轴突的数量。 ]]>

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