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在大鼠坐骨神经损伤模型中,用与脑源性神经营养因子和睫状神经营养因子相连的胶原小管进行修复。

Repair with collagen tubules linked with brain-derived neurotrophic factor and ciliary neurotrophic factor in a rat sciatic nerve injury model.

作者信息

Ho P R, Coan G M, Cheng E T, Niell C, Tarn D M, Zhou H, Sierra D, Terris D J

机构信息

Division of Otolaryngology/Head and Neck Surgery, Stanford University Medical Center, Calif 94305-5328, USA.

出版信息

Arch Otolaryngol Head Neck Surg. 1998 Jul;124(7):761-6. doi: 10.1001/archotol.124.7.761.

Abstract

OBJECTIVE

To determine if brain-derived neurotrophic factor (BDNF) and ciliary neurotrophic factor (CNTF) can be successfully delivered to transected and repaired peripheral nerves by cross-linking the factors to collagen tubules (CTs).

METHODS

Forty-eight Sprague-Dawley rats underwent left sciatic nerve transection and repair. In the control group, CTs were implanted with no neurotrophic ligand (n=13). There were 3 experimental groups: CT with BDNF covalently linked to the collagen matrix (CT/BDNF; n=12), CT with CNTF covalently linked (CT/CNTF; n=12), and CT with both BDNF and CNTF covalently linked (CT/BDNF/CNTF; n=11). Functional outcome of neural regeneration was assessed every 10 days using walking track analysis, which was submitted to a sciatic functional index. Nerve morphometry, electrophysiologic studies, and molecular analysis for neural proteins were performed at the completion of the study at postoperative day 90.

RESULTS

Animals in all 3 experimental groups achieved significantly superior maximal functional recovery, larger nerve cross-sectional areas, and a greater number of axons when compared with the control CT group (P<.001, P<.05, and P<.05, respectively). The animals in the CT/BDNF/CNTF group displayed the best functional recovery and had the largest axon diameters, greatest amplitude, and the fastest nerve conduction velocities. Molecular analysis revealed significant differences in the expression of neurofilament, neural cell adhesion molecule, myelin-associated glycoprotein, and myelin basic protein.

CONCLUSIONS

We present the first evidence that CNTF covalently linked to CTs can improve functional recovery compared with CTs alone. We also support the previous finding that BDNF covalently linked to CTs significantly increases the functional recovery of transected and repaired nerves. Finally, we found that cotreatment produced the best functional recovery in our model.

摘要

目的

通过将脑源性神经营养因子(BDNF)和睫状神经营养因子(CNTF)与胶原小管(CT)交联,确定其能否成功递送至横断并修复的周围神经。

方法

48只Sprague-Dawley大鼠接受左侧坐骨神经横断及修复手术。对照组植入不含神经营养配体的CT(n = 13)。有3个实验组:胶原基质共价连接BDNF的CT(CT/BDNF;n = 12)、胶原基质共价连接CNTF的CT(CT/CNTF;n = 12)、胶原基质同时共价连接BDNF和CNTF的CT(CT/BDNF/CNTF;n = 11)。每10天使用足迹分析评估神经再生的功能结果,并计算坐骨神经功能指数。术后90天研究结束时进行神经形态学测量、电生理研究以及神经蛋白的分子分析。

结果

与对照CT组相比,所有3个实验组的动物在最大功能恢复、更大的神经横截面积以及更多的轴突数量方面均有显著改善(分别为P <.001、P <.05和P <.05)。CT/BDNF/CNTF组的动物功能恢复最佳,轴突直径最大、振幅最大且神经传导速度最快。分子分析显示神经丝、神经细胞黏附分子、髓磷脂相关糖蛋白和髓磷脂碱性蛋白的表达存在显著差异。

结论

我们首次证明,与单独的CT相比,共价连接到CT上的CNTF可改善功能恢复。我们还支持先前的发现,即共价连接到CT上的BDNF可显著提高横断并修复神经的功能恢复。最后,我们发现在我们的模型中联合治疗产生了最佳的功能恢复。

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