Itoh Soichiro, Fujimori Kazuhiro E, Uyeda Atsuko, Matsuda Atsushi, Kobayashi Hisatoshi, Shinomiya Kenichi, Tanaka Junzo, Taguchi Takahisa
Department of Orthopaedic Surgery, Tokyo Medical and Dental University, Tokyo, Japan.
J Neurosci Res. 2005 Sep 1;81(5):730-8. doi: 10.1002/jnr.20582.
The long-term effects of the 77-kDa muscle-derived protein (MDP77) on motor and sensory nerve regeneration were examined in vivo. Fourteen-millimeter bridge grafts of the right sciatic nerve of SD rats were carried out with silicone tubes containing a solution of type I collagen together with 0, 5, 10, or 20 microg/ml recombinant human MDP77 (N = 10 in each group). Recovery of motor and sensory function was evaluated monthly by the maximal toe-spread index (TSI) and hot-plate test, respectively, for 6 months after the operation. Electrophysiology (nerve conduction velocity), histology (diameter and total number of the regenerated myelinated axons in the tube), and immunohistochemistry (total number of Schwann cells in the tube), as well as measurement of soleus muscle weight, were also performed at this time. Motor, but not sensory, function recovered rapidly in the MDP77-treated groups in a dose-dependent manner. Electrophysiological measurements and the ratio of soleus muscle weight corroborated the positive effects of MDP77 on motor nerve regeneration, but no facilitation of sensory nerve recovery was observed. Furthermore, histological and immunohistochemical evaluations suggested that MDP77 treatment accelerates Schwann cell migration, followed by enhanced maturation of regenerating axons, resulting in functional recovery of both the nerves and the atrophied, denervated muscle.
在体内研究了77 kDa肌肉衍生蛋白(MDP77)对运动和感觉神经再生的长期影响。对SD大鼠的右侧坐骨神经进行14毫米的桥接移植,使用含有I型胶原溶液以及0、5、10或20微克/毫升重组人MDP77的硅胶管(每组N = 10)。术后6个月,分别通过最大趾展指数(TSI)和热板试验每月评估运动和感觉功能的恢复情况。此时还进行了电生理学(神经传导速度)、组织学(管内再生有髓轴突的直径和总数)、免疫组织化学(管内雪旺细胞总数)以及比目鱼肌重量测量。在MDP77治疗组中,运动功能而非感觉功能以剂量依赖方式迅速恢复。电生理测量和比目鱼肌重量比值证实了MDP77对运动神经再生的积极作用,但未观察到对感觉神经恢复的促进作用。此外,组织学和免疫组织化学评估表明,MDP77治疗可加速雪旺细胞迁移,随后促进再生轴突的成熟,从而导致神经和萎缩失神经肌肉的功能恢复。