Cao Zheng, Man Weitao, Xiong Yuhui, Guo Yi, Yang Shuhui, Liu Dongkang, Zhao He, Yang Yongdong, Yao Shenglian, Li Chuzhong, Zhao Lingyun, Sun Xiaodan, Guo Hua, Wang Guihuai, Wang Xiumei
State Key Laboratory of New Ceramics and Fine Processing, Key Laboratory of Advanced Materials, School of Materials Science and Engineering, Tsinghua University, Beijing 100084, China.
Department of Neurosurgery, Beijing Tsinghua Changgung Hospital, School of Clinical Medicine, Tsinghua University, Beijing 102218, China.
Regen Biomater. 2021 Nov 29;9:rbab069. doi: 10.1093/rb/rbab069. eCollection 2022.
A hierarchically aligned fibrin hydrogel (AFG) that possesses soft stiffness and aligned nanofiber structure has been successfully proven to facilitate neuroregeneration and . However, its potential in promoting nerve regeneration in large animal models that is critical for clinical translation has not been sufficiently specified. Here, the effects of AFG on directing neuroregeneration in canine hemisected T12 spinal cord injuries were explored. Histologically obvious white matter regeneration consisting of a large area of consecutive, compact and aligned nerve fibers is induced by AFG, leading to a significant motor functional restoration. The canines with AFG implantation start to stand well with their defective legs from 3 to 4 weeks postoperatively and even effortlessly climb the steps from 7 to 8 weeks. Moreover, high-resolution multi-shot diffusion tensor imaging illustrates the spatiotemporal dynamics of nerve regeneration rapidly crossing the lesion within 4 weeks in the AFG group. Our findings indicate that AFG could be a potential therapeutic vehicle for spinal cord injury by inducing rapid white matter regeneration and restoring locomotion, pointing out its promising prospect in clinic practice.
一种具有柔软刚度和排列纳米纤维结构的分层排列纤维蛋白水凝胶(AFG)已被成功证明有助于神经再生。然而,其在对临床转化至关重要的大型动物模型中促进神经再生的潜力尚未得到充分明确。在此,研究了AFG对犬T12半横断脊髓损伤中引导神经再生的作用。组织学上,AFG可诱导明显的白质再生,其由大面积连续、紧密且排列整齐的神经纤维组成,从而导致显著的运动功能恢复。植入AFG的犬在术后3至4周开始能用其患腿良好站立,甚至在7至8周时能轻松爬楼梯。此外,高分辨率多次激发扩散张量成像显示,AFG组在4周内神经再生迅速穿过损伤部位的时空动态。我们的研究结果表明,AFG可能是一种通过诱导快速白质再生和恢复运动来治疗脊髓损伤的潜在载体,指出了其在临床实践中的广阔前景。