Jia Hua, Wang Ying, Wang Tao, Dong Yi, Li Wei-Li, Li Jun-Ping, Ma Wen-Zhi, Tong Xiao-Jie, He Zhong-Yi
Department of Anatomy, College of Basic Medical Sciences, Ningxia Medical University, Yinchuan, 750004, China.
Department of Anatomy, Mudanjiang College of Medicine, Mudanjiang, 157011, China.
Synapse. 2017 Jul;71(7). doi: 10.1002/syn.21974. Epub 2017 Mar 30.
Peripheral nerve defects result in severe denervation presenting sensory and motor functional incapacitation. Currently, a satisfactory therapeutic treatment promoting the repair of injured nerves is not available. As shown in our previous study, acellular nerve xenografts (ANX) implanted with bone marrow stromal cells (BMSCs) replaced allografts and promoted nerve regeneration. Additionally, granulocyte-colony stimulating factor (G-CSF) has been proven to mobilize supplemental cells and enhance vascularization in the niche. Thus, the study aimed to explore whether the combination of G-CSF and BMSC-laden ANX exhibited a synergistic effect. Adult Sprague-Dawley (SD) rats were randomly divided into five groups: ANX group, ANX combined with G-CSF group, BMSCs-laden ANX group, BMSCs-laden ANX combined with G-CSF group and autograft group. Electrophysiological parameters and weight ratios of tibialis anterior muscles were detected at 8 weeks post-transplantation. The morphology of the regenerated nerves was assayed, and growth-promoting factors present in the nerve grafts following G-CSF administration or BMSCs seeding were also investigated. Nerve regeneration and functional rehabilitation induced by the combination therapy were significantly advanced, and the rehabilitation efficacy was comparable with autografting. Moreover, the expression of Schwann cell markers, neurotrophic factors and neovessel markers in the nerve grafts was substantially increased. In conclusion, G-CSF administration and BMSCs transplantation synergistically promoted the regeneration of ANX-bridged nerves, which offers a superior strategy to replace autografts in repairing peripheral nerve injuries.
周围神经缺损会导致严重的去神经支配,出现感觉和运动功能丧失。目前,尚无促进受损神经修复的令人满意的治疗方法。正如我们之前的研究所表明的,植入骨髓间充质干细胞(BMSC)的脱细胞神经异种移植物(ANX)替代了同种异体移植物并促进了神经再生。此外,粒细胞集落刺激因子(G-CSF)已被证明可动员补充细胞并增强神经再生微环境中的血管生成。因此,本研究旨在探讨G-CSF与负载BMSC的ANX联合使用是否具有协同作用。将成年Sprague-Dawley(SD)大鼠随机分为五组:ANX组、ANX联合G-CSF组、负载BMSC的ANX组、负载BMSC的ANX联合G-CSF组和自体移植组。在移植后8周检测胫前肌的电生理参数和重量比。对再生神经的形态进行了检测,并研究了给予G-CSF或接种BMSC后神经移植物中存在的促生长因子。联合治疗诱导的神经再生和功能康复显著提前,康复效果与自体移植相当。此外,神经移植物中雪旺细胞标志物、神经营养因子和新生血管标志物的表达大幅增加。总之,给予G-CSF和移植BMSC协同促进了ANX桥接神经的再生,这为修复周围神经损伤提供了一种优于自体移植的替代策略。