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磷酸三钙与戊二醛交联明胶导管用于周围神经修复的体内研究

An in vivo study of tricalcium phosphate and glutaraldehyde crosslinking gelatin conduits in peripheral nerve repair.

作者信息

Chen Ming-Hong, Chen Pei-Ru, Chen Mei-Hsiu, Hsieh Sung-Tsang, Huang Jing-Shan, Lin Feng-Huei

机构信息

Institute of Biomedical Engineering, National Taiwan University, No. 1, Sec. 1, Jen-Ai Road, Taipei, Taiwan.

出版信息

J Biomed Mater Res B Appl Biomater. 2006 Apr;77(1):89-97. doi: 10.1002/jbm.b.30402.

Abstract

In order to modulate the mechanical properties of gelatin, we previously developed a biodegradable composite composed by tricalcium phosphate and glutaraldehyde crosslinking gelatin (GTG) feasible for surgical manipulation. In this study, we evaluated the in vivo applications of GTG conduit for peripheral nerve repair. The effect of sciatic nerve reconstruction was compared between resorbable permeable GTG conduits and durable impermeable silicone tubes. Traditional methods of assessing nerve recovery following peripheral nerve repair including histomorphometric and electrophysiologic features were conducted in our study. In addition, autotomy score and sciatic function index (SFI) in walking tract analysis were used as additional parameters for assessing the return of nerve function. Twenty-four weeks after sciatic nerve repair, the GTG conduits were harvested. Microscopically, regeneration of nerves was observed in the cross-section at the mid portion of all implanted GTG conduits. The cross-sectional area of regenerated nerve of the GTG group was significant larger than that of the silicone group. In the compound muscle action potentials (CMAP), the mean recovery index of CMAP amplitude was 0.24 +/- 0.02 for the silicone group, 0.41 +/- 0.07 for the GTG group. The mean SFI increased with time in the GTG group during the evaluation period until 24 weeks. Walking tract analysis showed a higher SFI score in the GTG group at both 12 and 24 weeks. The difference reached a significant level at 24 weeks. Thus, the histomorphometric, electrophysiologic, and functional assessments demonstrate that GTG can be a candidate for peripheral nerve repair.

摘要

为了调节明胶的力学性能,我们之前开发了一种由磷酸三钙和戊二醛交联明胶(GTG)组成的可生物降解复合材料,适用于外科手术操作。在本研究中,我们评估了GTG导管在周围神经修复中的体内应用。比较了可吸收渗透性GTG导管和耐用不可渗透性硅胶管对坐骨神经重建的效果。我们的研究采用了传统的评估周围神经修复后神经恢复的方法,包括组织形态计量学和电生理特征。此外,还采用了自切评分和步行轨迹分析中的坐骨神经功能指数(SFI)作为评估神经功能恢复的额外参数。坐骨神经修复24周后,取出GTG导管。显微镜下,在所有植入的GTG导管中部的横切面上观察到神经再生。GTG组再生神经的横截面积显著大于硅胶组。在复合肌肉动作电位(CMAP)方面,硅胶组CMAP振幅的平均恢复指数为0.24±0.02,GTG组为0.41±0.07。在评估期内直至24周,GTG组的平均SFI随时间增加。步行轨迹分析显示,GTG组在12周和24周时的SFI评分均较高。在24周时差异达到显著水平。因此,组织形态计量学、电生理学和功能评估表明,GTG可作为周围神经修复的候选材料。

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