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一种用于评估神经营养因子对面神经再支配作用的功能电生理模型。

An electrophysiologic model for functional assessment of effects of neurotrophic factors on facial nerve reinnervation.

作者信息

Byrne Patrick J, Stuart R Morgan, Fakhry Carole, Lehar Mohammed, Flint Paul W

机构信息

Division of Facial Plastic and Reconstructive Surgery, Johns Hopkins University School of Medicine, Baltimore, MD 21287-1910, USA.

出版信息

Arch Facial Plast Surg. 2005 Mar-Apr;7(2):114-8. doi: 10.1001/archfaci.7.2.114.

Abstract

OBJECTIVES

To establish a sound objective model for assessing the effects of neurotrophic factors on facial nerve function after injury and to compare the effects of brain-derived neurotrophic factor (BDNF) with its neutralizing antibody on facial nerve function after injury.

DESIGN

Prospective electrophysiologic analysis of recovery of function 4 weeks after axotomy involving facial nerve transection and primary end-to-end reanastomosis in adult rats and blind comparison with randomized intramuscular injection of either BDNF, monoclonal antibody to BDNF in neutralizing concentration, or control solution.

RESULTS

There were no statistically significant differences between groups in latencies, duration, amplitude, area, or conduction velocity before axotomy, and recorded conduction velocities were consistent with previously reported values, which suggests that the recordings were reliable and reproducible. After transection, there was a mean increase in latency 1 and decreases in latency 2, integrated average area, muscle action potential duration, amplitude, and conduction velocity for all 3 groups. When the groups were compared after transection, the anti-BDNF group showed a significant decrease in conduction velocity and muscle action potential duration (Kruskal-Wallis P = .01 and P = .008, respectively) compared with the other groups. There were no statistically significant differences in latencies, amplitude, or area among the groups.

CONCLUSIONS

We have established an electrophysiologic model for objective assessment of facial nerve function in the rat. Future studies should combine functional electrophysiologic assessment and histologic examination to provide a more robust model for studying the effects of neurotrophic factors on facial nerve reinnervation and synkinesis.

摘要

目的

建立一个完善的客观模型,用于评估神经营养因子对损伤后面神经功能的影响,并比较脑源性神经营养因子(BDNF)及其中和抗体对损伤后面神经功能的影响。

设计

对成年大鼠面神经横断并进行一期端端再吻合术后4周功能恢复情况进行前瞻性电生理分析,并将随机肌肉注射BDNF、中和浓度的BDNF单克隆抗体或对照溶液进行盲法比较。

结果

在轴突切断术前,各组之间的潜伏期、持续时间、波幅、面积或传导速度无统计学显著差异,记录的传导速度与先前报道的值一致,这表明记录是可靠且可重复的。横断后,所有3组的潜伏期1均有平均增加,潜伏期2、积分平均面积、肌肉动作电位持续时间、波幅和传导速度均有下降。横断后比较各组时,抗BDNF组与其他组相比,传导速度和肌肉动作电位持续时间显著降低(分别为Kruskal-Wallis检验P = .01和P = .008)。各组之间在潜伏期、波幅或面积方面无统计学显著差异。

结论

我们建立了一个用于客观评估大鼠面神经功能的电生理模型。未来的研究应结合功能性电生理评估和组织学检查,以提供一个更强大的模型来研究神经营养因子对面神经再支配和联带运动的影响。

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