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利用 EGFR 抗体功能化胶原支架促进神经祖细胞向神经元分化,用于脊髓损伤修复。

Promotion of neuronal differentiation of neural progenitor cells by using EGFR antibody functionalized collagen scaffolds for spinal cord injury repair.

机构信息

Division of Nanobiomedicine, Suzhou Institute of Nano-Tech and Nano-Bionics, Chinese Academy of Sciences, Suzhou 215123, China.

出版信息

Biomaterials. 2013 Jul;34(21):5107-16. doi: 10.1016/j.biomaterials.2013.03.062. Epub 2013 Apr 13.

Abstract

The main challenge for neural progenitor cell (NPC)-mediated repair of spinal cord injury (SCI) is lack of favorable environment to direct its differentiation towards neurons rather than glial cells. The myelin associated inhibitors have been demonstrated to promote NPC differentiation into glial lineage. Herein, to inhibit the downstream signaling activated by myelin associated inhibitors, cetuximab, an epidermal growth factor receptor (EGFR) neutralizing antibody, functionalized collagen scaffold has been developed as a vehicle for NPC implantation. It was found that collagen-cetuximab 1 μg scaffolds enhanced neuronal differentiation and inhibited astrocytic differentiation of NPCs exposed to myelin proteins significantly in vitro. To test the therapeutic effect in vivo, NPCs expressing green fluorescent protein (GFP)-embedded scaffolds have been implanted into the 4 mm-long hemisection lesion of rats. We found that the collagen-cetuximab 5 μg scaffolds induced neuronal differentiation and decreased astrocytic differentiation of NPCs, enhanced axon regeneration, and promoted functional recovery markedly. A well-functionalized scaffold was constructed to improve the recovery of SCI, which could promote the neuronal differentiation of neural progenitor cells in vivo.

摘要

神经祖细胞(NPC)介导的脊髓损伤(SCI)修复的主要挑战是缺乏有利的环境来指导其分化为神经元而不是神经胶质细胞。髓鞘相关抑制剂已被证明可促进 NPC 分化为神经胶质谱系。在此,为了抑制髓鞘相关抑制剂激活的下游信号,将表皮生长因子受体(EGFR)中和抗体西妥昔单抗功能化胶原支架作为 NPC 植入的载体。结果发现,胶原-西妥昔单抗 1μg 支架在体外显著增强了暴露于髓鞘蛋白的 NPC 的神经元分化并抑制了星形胶质细胞分化。为了在体内测试治疗效果,将表达绿色荧光蛋白(GFP)的 NPC 支架植入大鼠 4mm 长的半切损伤中。我们发现,胶原-西妥昔单抗 5μg 支架诱导 NPC 的神经元分化并减少星形胶质细胞分化,增强轴突再生,并显著促进功能恢复。构建了一种功能良好的支架以改善 SCI 的恢复,这可以促进体内神经祖细胞的神经元分化。

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