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产前暴露于一氧化碳对大鼠外周神经系统活动产生的影响。

Changes in peripheral nervous system activity produced in rats by prenatal exposure to carbon monoxide.

作者信息

Carratù M R, Renna G, Giustino A, De Salvia M A, Cuomo V

机构信息

Institute of Pharmacology, University of Bari, Italy.

出版信息

Arch Toxicol. 1993;67(5):297-301. doi: 10.1007/BF01973698.

Abstract

The present experiments were designed to investigate whether alterations of peripheral nervous system activity may be produced in male Wistar rats by prenatal exposure (from day 0 to day 20 of pregnancy) to relatively low levels of CO (75 and 150 ppm). The voltage clamp analysis of ionic currents recorded from sciatic nerve fibres showed that prenatal exposure to CO produced modifications of sodium current properties. In particular, in 40-day-old rats exposed to CO (75 and 150 ppm) during gestation, the inactivation kinetics of transient sodium current were significantly slowed. Analysis of the potential dependence of steady-state Na inactivation, h infinity (V), showed that the percentage of the maximum number of activable Na channels at the normal resting potential (-80 mV) was increased to approximately 85% in CO-exposed rats. Moreover, the voltage-current relationship showed a negative shift of sodium equilibrium potential in CO treated animals. In 270-day-old CO-exposed rats, parameters of sodium inactivation were not significantly modified; the reversal potential was still lower with respect to controls. The results indicate that prenatal exposure to mild CO concentrations produces reversible changes in sodium inactivation kinetics and on irreversible change in sodium equilibrium potential. These alterations could reflect CO influence on the rate of ion channel development.

摘要

本实验旨在研究雄性Wistar大鼠在孕期(妊娠第0天至第20天)暴露于相对低水平的一氧化碳(75 ppm和150 ppm)是否会引起外周神经系统活动的改变。对坐骨神经纤维记录的离子电流进行电压钳分析表明,产前暴露于一氧化碳会导致钠电流特性发生改变。具体而言,在孕期暴露于一氧化碳(75 ppm和150 ppm)的40日龄大鼠中,瞬时钠电流的失活动力学显著减慢。对稳态钠失活的电位依赖性分析,即h∞(V),表明在正常静息电位(-80 mV)下,可激活钠通道最大数量的百分比在暴露于一氧化碳的大鼠中增加到约85%。此外,电压-电流关系表明,一氧化碳处理的动物中钠平衡电位出现负向偏移。在270日龄暴露于一氧化碳的大鼠中,钠失活参数没有显著改变;相对于对照组,反转电位仍然较低。结果表明,产前暴露于轻度一氧化碳浓度会使钠失活动力学产生可逆变化,并使钠平衡电位产生不可逆变化。这些改变可能反映了一氧化碳对离子通道发育速率的影响。

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