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利多卡因对家兔离体颈迷走神经神经毒性的电生理及组织学研究

[An electrophysiological and histological study on the neurotoxicity of lidocaine in excised rabbit cervical vagus nerve].

作者信息

Itoh S, Noda K

机构信息

Department of Anesthesiology, Surugadai Nihon University Hospital, Tokyo.

出版信息

Masui. 1998 Jul;47(7):806-16.

PMID:9720326
Abstract

We studied the neurotoxic effect of lidocaine at different concentrations on the desheathed rabbit vagus nerve by measuring the amplitudes of evoked compound action potentials and the histological changes of the nerve by means of the electron microscopy after incubation in lidocaine-Ringer's bicarbonate (RB) solution. The following results were obtained. 1) Minimum concentrations of lidocaine for producing complete conduction block (minimum blocking concentration, MBC) were 0.02% for A beta and A delta fibers, and 0.03% for C fibers. 2) Irreversible conduction blocks of compound action potentials were observed in relation with lidocaine concentrations and the duration of incubation: e.g. 0.5% for 2 hours incubation was equivalent to the block with 1% for 1 hour. 3) Degenerative change of axons was revealed morphologically in the preparations exposed to 2% or a higher concentration of lidocaine. 4) Risk ratio, which means a numerical value calculated as clinical concentration/irreversible concentration with 2 hr exposure, was similar to other local anesthetics except dibucaine HCl, which shows an higher risk ratio. However, it should be noted that lidocaine has an risk of producing irreversible changes in nerve fibers, when applied to the nervous tissue at higher concentrations for longer durations.

摘要

我们通过测量诱发复合动作电位的幅度,并在利多卡因-林格氏碳酸氢盐(RB)溶液中孵育后借助电子显微镜观察神经的组织学变化,研究了不同浓度利多卡因对去鞘兔迷走神经的神经毒性作用。获得了以下结果。1)产生完全传导阻滞的利多卡因最低浓度(最低阻滞浓度,MBC),Aβ和Aδ纤维为0.02%,C纤维为0.03%。2)观察到复合动作电位的不可逆传导阻滞与利多卡因浓度和孵育时间有关:例如,2小时孵育的0.5%浓度相当于1小时孵育的1%浓度。3)在暴露于2%或更高浓度利多卡因的标本中,轴突出现了形态学上的退行性变化。4)风险比,即临床浓度/2小时暴露不可逆浓度计算出的数值,除盐酸丁卡因显示出更高的风险比外,与其他局部麻醉药相似。然而,应该注意的是,当以较高浓度长时间应用于神经组织时,利多卡因有在神经纤维中产生不可逆变化的风险。

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