红景天苷通过联合应用神经外膜导管和施万细胞促进大鼠坐骨神经再生。
Salidroside promotes sciatic nerve regeneration following combined application epimysium conduit and Schwann cells in rats.
机构信息
Department of Human Anatomy, Histology and Embryology, School of Basic Medical Sciences, Fujian Medical University, Fuzhou 350122, China.
Department of Orthopaedics, 900 Hospital of the Joint Logistics Support Force/Xiamen University Dongfang Hospital, and Fuzong Clinical Medicine College of Fujian Medical University, Fuzhou 350025, China.
出版信息
Exp Biol Med (Maywood). 2020 Mar;245(6):522-531. doi: 10.1177/1535370220906541. Epub 2020 Feb 13.
UNLABELLED
Schwann cell and nerve conduit are crucial for nerve regeneration and re-myelination after peripheral nerves injury. To investigate the effects of Salidroside on autogenous epimysium conduit mixed with BD matrigel and RSC96 Schwann cells on an animal model with 5 mm sciatic nerve defect injury in rat, motor function, muscle reinnervation, immunohistochemical staining, retrograded tracing and Western blot were used in this study. The results showed that Salidroside enhanced the compound effects of epimysium conduit mixed with BD matrigel and RSC96 Schwann cells to improve the sciatic functional index and the gastrocnemius muscle weight ratio, which were better than EPM group at 8 weeks and 12 weeks post operation. Immunofluorescence and Western blot results of P75 showed that Salidroside improved the sciatic nerve regeneration, and retrograded tracing of CTB-Alexa 488 also supported that Salidroside was better to promote CTB tracer transporting from the distal nerve defect to the ipsilateral dorsal root ganglion and ventral horn of L3-L5 spinal cord on post-operation 8 weeks and 12 weeks. Our results demonstrated that Salidroside improved the effect of autogenous epimysium conduit mixed with BD matrigel and RSC96 Schwann cells on sciatic nerve regeneration in our study.
IMPACT STATEMENT
Peripheral nerve injury and regeneration remain a major challenge. Although nerve conduit and Schwann cells have been used to study the nerve regeneration, our results demonstrated that Salidroside improved the regenerative effect in a rat model with sciatic nerve injury model, following a combined application of autogenous epimysium conduit mixed with Schwann cells. Different concentrations of Salidroside combining autogenous epimysium conduit and Schwann cells were applied to compare the epimysium conduit group and the epimysium conduit combining Schwann cells group. Based on the results of motor function and muscle reinnervation evaluation, as well as neuronal tracing and expression of P75, our study for the first time suggests that Salidroside may improve the regeneration effect on the sciatic nerve following a combined application of epimysium conduit and RSC96 Schwann cells in rats.
未加标签
施氏藻苷对周围神经损伤后神经再生和再髓鞘化至关重要。为了研究红景天苷对自体神经外膜管混合 BD matrigel 和 RSC96 施万细胞在大鼠 5mm 坐骨神经缺损损伤动物模型中的作用,本研究采用运动功能、肌肉再神经支配、免疫组织化学染色、逆行示踪和 Western blot 法。结果表明,红景天苷增强了神经外膜管混合 BD matrigel 和 RSC96 施万细胞的复合作用,提高了坐骨神经功能指数和比目鱼肌重量比,术后 8 周和 12 周时优于 EPM 组。P75 的免疫荧光和 Western blot 结果表明,红景天苷促进了坐骨神经再生,CTB-Alexa 488 的逆行追踪也支持红景天苷在术后 8 周和 12 周时更有利于促进 CTB 示踪剂从远端神经缺损向同侧背根神经节和 L3-L5 脊髓腹侧角的运输。我们的结果表明,红景天苷改善了自体神经外膜管混合 BD matrigel 和 RSC96 施万细胞对坐骨神经再生的作用。
影响说明
周围神经损伤和再生仍然是一个主要挑战。尽管神经导管和施万细胞已被用于研究神经再生,但我们的结果表明,红景天苷在大鼠坐骨神经损伤模型中,通过自体神经外膜管混合施万细胞的联合应用,改善了再生效果。应用不同浓度的红景天苷联合自体神经外膜管和施万细胞,比较神经外膜管组和神经外膜管联合施万细胞组。基于运动功能和肌肉再神经支配评估的结果,以及神经元示踪和 P75 的表达,我们的研究首次表明,红景天苷可能通过联合应用神经外膜管和 RSC96 施万细胞来改善大鼠坐骨神经的再生效果。