组织工程神经支架复合FK506修复周围神经长节段缺损以及痛觉变化的研究A new nerve engineering scaffold with FK506 for bridging large nerve defects
郝虎萍;丁坦;王继猛;王哲;罗卓荆;
摘要(Abstract):
[目的]探讨加入FK506制备的新型高仿生组织工程外周神经支架对SD大鼠坐骨神经缺损的修复及运动与感觉功能的恢复。[方法]将壳聚糖与Ⅰ型胶原蛋白加入不同浓度的FK506,通过改良冰冻干燥工艺制成新型高仿生神经支架,分组修复SD雄性大鼠坐骨神经10 mm缺损。术前及术后4、8、12周及16周,分别对大鼠后肢进行针刺、热刺激、旷场运动、坐骨神经指数及电生理指标测试。术后16周进行灌注取材观测再生外周神经大体形态、扫描电镜下观察神经再生数目、直径及髓鞘厚度。[结果]使用复合5 mg/ml FK506的组织工程神经支架修复组术后的大鼠后肢针刺(4.9±2.53)g、热刺激(6.53±2.47)s、旷场运动测试[总运动距离(3 798±435)cm、中央区活动距离(359±67)cm、平均速度(4.22±0.48)cm/s]、坐骨神经指数(-39.07±2.26)及电生理检测[CMAP潜伏期(1.26±0.13)ms、波幅(16.97±1.17)mv、传导速度(26.04±2.49)m/s]与自体神经移植组相当,优于其他实验组。16周取材观察对比神经再生数目、直径及髓鞘厚度,低浓度复合支架组明显优于空白组及高浓度组,与自体神经移植组相当。[结论]壳聚糖与Ⅰ型胶原蛋白加5 mg/ml FK506制备的复合组织工程神经支架修复长节段神经缺损,受损神经痛、温觉功能和运动功能恢复良好,神经纤维再生明显,所支配的肢体功能恢复与自体神经移植相当。
关键词(KeyWords): 神经支架;组织工程;FK506;神经再生;功能恢复
基金项目(Foundation): 国家自然科学基金青年科学基金项目(编号:81100900);; 陕西省科技攻关项目(编号:2011K12-59);; 西安市社会发展引导计划(编号:SF1206-4)
作者(Author): 郝虎萍;丁坦;王继猛;王哲;罗卓荆;
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DOI:
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