Department of Health Science, Graduate School, Korea University, 145 Anam-ro, Seongbuk-gu, Seoul, 02841, Republic of Korea.
Transdisciplinary Major in Learning Health Systems, Department of Healthcare Sciences, Graduate School, Korea University, 145 Anam-ro, Seongbuk-gu, Seoul, 02841, Republic of Korea.
Adv Mater. 2024 Nov;36(44):e2406652. doi: 10.1002/adma.202406652. Epub 2024 Jul 25.
A regenerative peripheral nerve interface (RPNI) offers a therapeutic solution for nerve injury through reconstruction of the target muscle. However, implanting a transected peripheral nerve into an autologous skeletal muscle graft in RPNI causes donor-site morbidity, highlighting the need for tissue-engineered skeletal muscle constructs. Here, an engineered regenerative isolated peripheral nerve interface (eRIPEN) is developed using 3D skeletal cell printing combined with direct electrospinning to create a nanofiber membrane envelop for host nerve implantation. In this in vivo study, after over 8 months of RPNI surgery, the eRIPEN exhibits a minimum Feret diameter of 15-20 µm with a cross-sectional area of 100-500 µm, representing the largest distribution of myofibers. Furthermore, neuromuscular junction formation and muscle contraction with a force of ≈28 N are observed. Notably, the decreased hypersensitivity to mechanical/thermal stimuli and an improved tibial functional index from -77 to -56 are found in the eRIPEN group. The present novel concept of eRIPEN paves the way for the utilization and application of tissue-engineered constructs in RPNI, ultimately realizing neuroprosthesis control through synaptic connections.
再生周围神经接口 (RPNI) 通过重建靶肌肉为神经损伤提供了一种治疗解决方案。然而,在 RPNI 中将切断的周围神经植入自体骨骼肌移植物会导致供体部位发病率,这突出表明需要组织工程化的骨骼肌构建体。在这里,使用 3D 骨骼肌细胞打印与直接静电纺丝相结合,开发了一种工程化的再生隔离周围神经接口 (eRIPEN),以创建用于宿主神经植入的纳米纤维膜套。在这项体内研究中,经过超过 8 个月的 RPNI 手术后,eRIPEN 的最小 Feret 直径为 15-20 µm,横截面积为 100-500 µm,代表了最大的肌纤维分布。此外,观察到神经肌肉接头的形成和肌肉收缩,力约为 28 N。值得注意的是,在 eRIPEN 组中,机械/热刺激的超敏反应降低,胫骨功能指数从-77 提高到-56。eRIPEN 的这种新颖概念为组织工程化构建体在 RPNI 中的应用和应用铺平了道路,最终通过突触连接实现神经假体控制。