首页> 美国卫生研究院文献>Evidence-based Complementary and Alternative Medicine : eCAM >Long-Term Regeneration and Functional Recovery of a 15 mm Critical Nerve Gap Bridged by Tremella fuciformis Polysaccharide-Immobilized Polylactide Conduits
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Long-Term Regeneration and Functional Recovery of a 15 mm Critical Nerve Gap Bridged by Tremella fuciformis Polysaccharide-Immobilized Polylactide Conduits

机译:银耳多糖固定化聚乳酸导管弥合的15 mm关键神经间隙的长期再生和功能恢复

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摘要

Novel peripheral nerve conduits containing the negatively charged Tremella fuciformis polysaccharide (TF) were prepared, and their efficacy in bridging a critical nerve gap was evaluated. The conduits were made of poly(D,L-lactide) (PLA) with asymmetric microporous structure. TF was immobilized on the lumen surface of the nerve conduits after open air plasma activation. The TF-modified surface was characterized by the attenuated total reflection Fourier-transformed infrared spectroscopy and the scanning electron microscopy. TF modification was found to enhance the neurotrophic gene expression of C6 glioma cells in vitro. TF-modified PLA nerve conduits were tested for their ability to bridge a 15 mm gap of rat sciatic nerve. Nerve regeneration was monitored by the magnetic resonance imaging. Results showed that TF immobilization promoted the nerve connection in 6 weeks. The functional recovery in animals receiving TF-immobilized conduits was greater than in those receiving the bare conduits during an 8-month period. The degree of functional recovery reached ~90% after 8 months in the group of TF-immobilized conduits.
机译:制备了含有带负电荷的银耳银耳多糖(TF)的新型外周神经导管,并评估了它们弥合临界神经间隙的功效。导管由具有不对称微孔结构的聚(D,L-丙交酯)(PLA)制成。露天血浆激活后,TF被固定在神经导管的内腔表面。 TF修饰的表面通过衰减的全反射傅立叶变换红外光谱和扫描电子显微镜表征。发现TF修饰可增强体外C6神经胶质瘤细胞的神经营养基因表达。测试了TF修饰的PLA神经导管弥合大鼠坐骨神经15 mm间隙的能力。通过磁共振成像监测神经再生。结果显示,TF固定可促进6周内的神经连接。在8个月内,接受TF固定导管的动物的功能恢复大于接受裸导管的动物。固定TF的导管组在8个月后功能恢复程度达到了约90%。

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