脊髓
脊髓损伤
神经营养素
神经营养素
神经导管
神经损伤
PLGA公司
神经营养因子
逆行追踪
医学
解剖
脑源性神经营养因子
神经科学
生物
外科
坐骨神经
背
内科学
体外
受体
生物化学
作者
Juan Fan,Hongtian Zhang,Jianghong He,Zhifeng Xiao,Bing Chen,Xiaodan Jiang,Jianwu Dai,Ruxiang Xu
摘要
Abstract Biomaterials and neurotrophic factors represent two promising strategies for spinal cord injury repair. In this study, a combinatorial approach combining the PLGA nerve conduits and the recombinant human neurotrophin‐3 (rhNT3) was utilized in a spinal cord injury animal model. After complete transection of the thoracic cord in rats, rhNT3 was administered as a single dose to the host cord caudal to a 2‐mm conduit. Axonal regrowth was enhanced, as indicated by immunostaining and neurofilament‐positive area measurement. Neural regrowth was further demonstrated via the retrograde tracing across the lesion. The animals implanted with the PLGA scaffold and rhNT3 exhibited significantly improved performance in BBB rating scale and grid walk tests. These observations suggest that PLGA nerve conduits combined with exogenous NT3 may serve as an alternative therapeutic approach for spinal cord injury repair. © 2011 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 2011.
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