Department of Orthopaedic Surgery, Keio University School of Medicine, 35 Shinanomachi Shinjuku-Ku, Tokyo, 160-8582, Japan.
Department of Mechanical Engineering, Faculty of Science and Technology, Keio University, 3-14-1 Hiyoshi, Kohoku-Ku, Yokohama-Shi, Kanagawa, 223-8522, Japan.
Sci Rep. 2023 Jul 24;13(1):11932. doi: 10.1038/s41598-023-39141-2.
Chitosan has various tissue regeneration effects. This study was designed to investigate the nerve regeneration effect of Schwann cell (SC)-encapsulated chitosan-collagen hydrogel nerve conduit (CCN) transplanted into a rat model of sciatic nerve defect. We prepared a CCN consisting of an outer layer of chitosan hydrogel and an inner layer of collagen hydrogel to encapsulate the intended cells. Rats with a 10-mm sciatic nerve defect were treated with SCs encapsulated in CCN (CCN+), CCN without SCs (CCN-), SC-encapsulated silicone tube (silicone+), and autologous nerve transplanting (auto). Behavioral and histological analyses indicated that motor functional recovery, axonal regrowth, and myelination of the CCN+ group were superior to those of the CCN- and silicone+ groups. Meanwhile, the CCN- and silicone+ groups showed no significant differences in the recovery of motor function and nerve histological restoration. In conclusion, SC-encapsulated CCN has a synergistic effect on peripheral nerve regeneration, especially axonal regrowth and remyelination of host SCs. In the early phase after transplantation, SC-encapsulated CCNs have a positive effect on recovery. Therefore, using SC-encapsulated CCNs may be a promising approach for massive peripheral nerve defects.
壳聚糖具有多种组织再生作用。本研究旨在探讨包封雪旺细胞(SC)的壳聚糖-胶原水凝胶神经导管(CCN)移植到大鼠坐骨神经缺损模型中的神经再生效果。我们制备了一种 CCN,由壳聚糖水凝胶的外层和胶原水凝胶的内层组成,以包封预期的细胞。10mm 坐骨神经缺损的大鼠分别接受包封有 SC 的 CCN(CCN+)、无 SC 的 CCN(CCN-)、包封有 SC 的硅胶管(硅胶+)和自体神经移植(自体)治疗。行为学和组织学分析表明,CCN+组的运动功能恢复、轴突再生和髓鞘形成优于 CCN-和硅胶+组。同时,CCN-和硅胶+组在运动功能恢复和神经组织学恢复方面没有显著差异。综上所述,包封有 SC 的 CCN 对周围神经再生具有协同作用,特别是对宿主 SC 的轴突再生和髓鞘形成。在移植后的早期阶段,包封有 SC 的 CCN 对恢复有积极作用。因此,使用包封有 SC 的 CCN 可能是治疗大量周围神经缺损的一种有前途的方法。