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负载牛磺酸的聚己内酯导管移植人胚胎神经干细胞对坐骨神经切除后的桥接潜能

Bridging potential of Taurine-loading PCL conduits transplanted with hEnSCs on resected sciatic nerves.

作者信息

Ai Arman, Saremi Jamileh, Ebrahimi-Barough Somayeh, Fereydouni Narges, Mahmoodi Tara, Kazemi Rad Nastaran, Sarikhani Pedram, Amidi Fardin

机构信息

School of Medicine, Tehran University of Medical Sciences, Tehran, Iran.

Research Center for Noncommunicable Diseases, Jahrom University of Medical Sciences, Jahrom, Iran.

出版信息

Regen Ther. 2022 Oct 10;21:424-435. doi: 10.1016/j.reth.2022.09.004. eCollection 2022 Dec.

Abstract

Reconstruction of nerve conduits is a promising method for functional improvement in peripheral nerve repair. Besides choosing of a suitable polymer for conduit construction, adding factors such as Taurine improve a more advantageous microenvironment for defect nerve regeneration. Showing several major biological properties of Taurine, for example, regulation of the osmotic pressure, modulation of neurogenesis, and calcium hemostasis, makes it an appropriate option for repairing of defected nerves. To this, we examined repairing effects of Taurine-loading PCL conduits cultured with human endothelial stem cells (hEnSCs) on resected sciatic nerves. PCL/Taurine/Cell conduits transplanted to a 10-mm sciatic nerve gap. Forty-two wistar rats were randomly divided to seven groups: (1) Normal group, (2) Negative control (NC), (3) Positive control (nerve Autograft group), (4) PCL conduits group (PCL), (5) Taurine loaded PCL conduits group (PCL/Taurine), (6) hEnSCs cultured on the PCL conduits (PCL/Cell), (7) hEnSCs cultured on the PCL/Taurine conduits (PCL/Taurine/Cell). Functional recovery of motor and sensory nerves, the action potential of exciting muscle and motor distal latency has seen in PCL/Taurine/Cell conduits. Histological studies showed also remarkable nerve regeneration and obvious bridging has seen in this group. In conclusion, PCL/Taurine/Cell conduits showing suitable mechanical properties and biocompatibility may improve sciatic nerve regeneration.

摘要

神经导管重建是改善周围神经损伤功能的一种很有前景的方法。除了选择合适的聚合物构建导管外,添加诸如牛磺酸等因子可改善缺损神经再生的更有利微环境。牛磺酸具有多种主要生物学特性,例如调节渗透压、调节神经发生和钙稳态,使其成为修复缺损神经的合适选择。为此,我们研究了负载牛磺酸的聚己内酯(PCL)导管与人内皮干细胞(hEnSCs)共培养对大鼠坐骨神经切除后的修复效果。将PCL/牛磺酸/细胞导管移植到10毫米的坐骨神经缺损处。42只Wistar大鼠随机分为七组:(1)正常组,(2)阴性对照组(NC),(3)阳性对照组(自体神经移植组),(4)PCL导管组(PCL),(5)负载牛磺酸的PCL导管组(PCL/牛磺酸),(6)hEnSCs在PCL导管上培养组(PCL/细胞),(7)hEnSCs在PCL/牛磺酸导管上培养组(PCL/牛磺酸/细胞)。在PCL/牛磺酸/细胞导管中观察到运动和感觉神经的功能恢复、兴奋肌肉的动作电位和运动远端潜伏期。组织学研究还显示该组有显著的神经再生和明显的桥接。总之,具有合适机械性能和生物相容性的PCL/牛磺酸/细胞导管可能会促进坐骨神经再生。

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