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利多卡因神经阻滞减轻治疗性电刺激的作用,增强大鼠的神经再生。

Lidocaine Nerve Block Diminishes the Effects of Therapeutic Electrical Stimulation to Enhance Nerve Regeneration in Rats.

机构信息

Washington University School of Medicine in St. Louis, MO, USA.

Checkpoint Surgical, Inc., Cleveland, OH, USA.

出版信息

Hand (N Y). 2023 Jan;18(1_suppl):119S-125S. doi: 10.1177/15589447221093668. Epub 2022 May 17.

Abstract

BACKGROUND

Although electrical stimulation (ES) can improve nerve regeneration, the impact of nerve block, such as lidocaine (Lido), on the therapeutic benefits of ES remains unclear. We used a rat tibial nerve transection-and-repair model to explore how either preoperative (PreOp) or postoperative (PostOp) nerve block affects ES-related improvement in regeneration.

METHODS

Lewis rats were used in 1 of 2 studies. The first evaluated the effects of extraneural Lido on both healthy and injured nerves. In the second study, rats were randomized to 5 experimental groups: No ES (negative control), PreOp Lido, ES + PreOp Lido, PostOp + ES, and ES (positive control). All groups underwent tibial nerve transection and repair. In both studies, nerves were harvested for histological analysis of regeneration distal to the injury site.

RESULTS

Application of extraneural Lido did not damage healthy or injured nerve based on qualitative histological observations. In the context of nerve transection and repair, the ES group exhibited improved axon regeneration at 21 days measured by the total number of myelinated fibers compared with No ES. Fiber density and percentage of neural tissue in the ES group were greater than those in both No ES and PreOp Lido + ES groups. ES + PostOp Lido was not different from No ES or ES group.

CONCLUSIONS

Extraneural application of Lido did not damage nerves. Electrical stimulation augmented nerve regeneration, but Lido diminished the ES-related improvement in nerve regeneration. Clinical studies on the effects of ES to nerve regeneration may need to consider nerve block as a variable affecting ES outcome.

摘要

背景

尽管电刺激(ES)可以改善神经再生,但神经阻滞(如利多卡因(Lido))对 ES 的治疗益处的影响尚不清楚。我们使用大鼠胫神经横断修复模型来探讨术前(PreOp)或术后(PostOp)神经阻滞如何影响 ES 相关的再生改善。

方法

Lewis 大鼠用于 2 项研究中的 1 项。第一项研究评估了神经外 Lido 对健康和受损神经的影响。在第二项研究中,大鼠随机分为 5 个实验组:无 ES(阴性对照)、PreOp Lido、ES + PreOp Lido、PostOp + ES 和 ES(阳性对照)。所有组均进行胫神经横断和修复。在这两项研究中,均在损伤部位远端采集神经进行再生的组织学分析。

结果

根据定性组织学观察,神经外 Lido 的应用不会损害健康或受损的神经。在神经横断和修复的情况下,与无 ES 组相比,ES 组在 21 天时通过有髓纤维总数测量表现出改善的轴突再生。ES 组的纤维密度和神经组织百分比大于无 ES 和 PreOp Lido + ES 组。ES + PostOp Lido 与无 ES 或 ES 组无差异。

结论

神经外 Lido 的应用不会损伤神经。电刺激增强了神经再生,但 Lido 减弱了 ES 相关的神经再生改善。神经再生的 ES 效果的临床研究可能需要考虑神经阻滞作为影响 ES 结果的变量。

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