神经导管
丝胶
坐骨神经
神经外膜修复
再生(生物学)
周围神经损伤
硅酮
组织工程
材料科学
解剖
生物医学工程
丝绸
医学
细胞生物学
生物
复合材料
作者
Hongjian Xie,Wen Yang,Jianghai Chen,Jinxiang Zhang,Xiaochen Lu,Xiaobo Zhao,Kun Huang,Huili Li,Panpan Chang,Zheng Wang,Lin Wang
标识
DOI:10.1002/adhm.201500355
摘要
Peripheral nerve gap defects lead to significant loss of sensory or motor function. Tissue engineering has become an important alternative to nerve repair. Sericin, a major component of silk, is a natural protein whose value in tissue engineering has just begun to be explored. Here, the first time use of sericin in vivo is reported as a long-term implant for peripheral nerve regeneration. A sericin nerve guidance conduit is designed and fabricated. This conduit is highly porous with mechanical strength matching peripheral nerve tissue. It supports Schwann cell proliferation and is capable of up-regulating the transcription of glial cell derived neurotrophic factor and nerve growth factor in Schwann cells. The sericin conduit wrapped with a silicone conduit (sericin/silicone double conduits) is used for bridging repair of a 5 mm gap in a rat sciatic nerve transection model. The sericin/silicone double conduits achieve functional recovery comparable to that of autologous nerve grafting as evidenced by drastically improved nerve function and morphology. Importantly, this improvement is mainly attributed to the sericin conduit as the silicone conduit alone only produces marginal functional recovery. This sericin/silicone-double-conduit strategy offers an efficient and valuable alternative to autologous nerve grafting for repairing damaged peripheral nerve.
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