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[切断术对水蛭伤害性神经元的影响]

[The effects of axotomy on the nociceptive neurons of the leech].

作者信息

Pastor-Gómez J, López de Armentia M, Mendioroz M

机构信息

Servicion de Neurofisiología. Hospital Universitario La Princesa, Madrid, España.

出版信息

Rev Neurol. 2002;35(11):1001-9.

Abstract

INTRODUCTION

It has been described several similarities between mammalian and invertebrate nociceptors. Lateral N neuron, in the segmental ganglion of the leech Hirudo medicinalis, behave like polimodal nociceptors in mammals, meanwhile medial N cells is similar to mechano nociceptors (Pastor, Soria, Belmonte 1996). The effects of axotomy in sensory neurons in leeches are poorly understood.

OBJECTIVE

We have focused on the electrophysiological properties of leech nociceptive neurons after axotomy.

RESULTS

In N lateral neurons, axotomy induced an increase in the total membrane capacitance, membrane time constant, decrease in the steady state/maximum hyperpolarization rate, increment in the time constant of voltage relaxation of inward rectifier, increase in action potential duration, dV/dtmax, dV/dtmin, and maximum amplitude and duration of after hyperpolarization; firing threshold (always in not axotomized) and an increment in adaptation spike frequency. In N medial cells, axotomy produced a slight depolarization and a decrease in Rinput, a rise in the time constant of voltage relaxation of inward rectifier, a decrement of action potential maximum amplitude, dV/dtmax, dV/dtmin, and after hyperpolarization maximum amplitude, with an increase in action potential and after hyperpolarization duration. Finally, firing threshold increased both in axotomized and not axotomized after axotomy. Axotomy not only induced changes in injured cells, but modified neurons whose axons did not run into the cutting nerves.

CONCLUSION

axotomy induces different changes in N lateral and N medial nociceptive cells, and it is suggested some kind of communication between axotomized and not axotomized cells

摘要

引言

哺乳动物和无脊椎动物的伤害感受器之间已被描述出若干相似之处。水蛭(医用蛭)节段神经节中的外侧N神经元,其行为类似于哺乳动物的多模式伤害感受器,而内侧N细胞则类似于机械伤害感受器(帕斯托、索里亚、贝尔蒙特,1996年)。人们对水蛭感觉神经元轴突切断术的影响了解甚少。

目的

我们专注于轴突切断术后水蛭伤害感受神经元的电生理特性。

结果

在外侧N神经元中,轴突切断术导致总膜电容增加、膜时间常数增加、稳态/最大超极化率降低、内向整流器电压松弛时间常数增加、动作电位持续时间增加、dV/dtmax、dV/dtmin以及超极化后电位的最大幅度和持续时间增加;放电阈值(在未进行轴突切断术时始终如此)以及适应尖峰频率增加。在内侧N细胞中,轴突切断术产生轻微去极化和输入电阻降低,内向整流器电压松弛时间常数增加,动作电位最大幅度、dV/dtmax、dV/dtmin以及超极化后电位最大幅度降低,动作电位和超极化后电位持续时间增加。最后,轴突切断术后,无论是轴突切断的还是未切断的细胞,放电阈值均增加。轴突切断术不仅在受损细胞中诱导变化,还改变了轴突未进入切断神经的神经元。

结论

轴突切断术在外侧N和内侧N伤害感受细胞中诱导不同变化,提示轴突切断的细胞与未切断的细胞之间存在某种通讯

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