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对侧输入调节参与伤害性信号传导过程的背角神经元的兴奋性。在神经元致敏中的潜在作用。

Contralateral input modulates the excitability of dorsal horn neurons involved in noxious signal processes. Potential role in neuronal sensitization.

作者信息

Sotgiu Maria Luisa, Brambilla Marco, Valente Maurizio, Biella Gabriele E M

机构信息

Istituto Bioimmagini e Fisiologia Molecolare, CNR, Via Fratelli Cervi 93, 20090 Segrate (Mi), Italy.

出版信息

Somatosens Mot Res. 2004 Sep-Dec;21(3-4):211-5. doi: 10.1080/08990220400012539.

Abstract

Wide Dynamic Range (WDR) neurons in the spinal cord receive inputs from the contralateral side that, under normal conditions, are ineffective in generating an active response. These inputs are effective when the target WDRs change their excitability conditions. To further reveal the mechanisms supporting this effectiveness shift, we investigated the weight of the excitation of the contralateral neurons on the target WDR responses. In the circuit of presynaptic (sending) and postsynaptic (receiving) neurons in crossed spinal connections the fibres that form the presynaptic neurons impinge on postsynaptic neurons can be considered the final relay of this contralateral pathway. The enhancement of the presynaptic neuron excitability may thus modify the efficacy of the contralateral input. Pairs of neurons each on a side of the spinal cord, at the L5-L6 lumbar level were simultaneously recorded in intact, anaesthetized, paralysed rats. The excitatory aminoacid NMDA and strychnine, the antagonist of the inhibitory aminoacid glycine, were iontophoretically administrated to presynaptic neurons to increase their excitability. Before and during the drug administration, spontaneous and noxious-evoked activities of the neurons were analysed. During the iontophoresis of the two substances we found that noxious stimuli applied to the receptive field of presynaptic neurons activated up to 50% of the previously unresponsive postsynaptic neurons on the opposite side. Furthermore, the neurons on both sides of the spinal cord showed significantly increased spontaneous activity and amplified responses to ipsilateral noxious stimulation. These findings indicate that the contralateral input participates in the circuit dynamics of spinal nociceptive transmission, by modulating the excitability of the postsynaptic neurons. A possible functional role of such a nociceptive transmission circuit in neuronal sensitization following unilateral nerve injury is hypothesized.

摘要

脊髓中的宽动态范围(WDR)神经元从对侧接收输入,在正常情况下,这些输入在产生主动反应方面是无效的。当目标WDR改变其兴奋性条件时,这些输入就会变得有效。为了进一步揭示支持这种有效性转变的机制,我们研究了对侧神经元兴奋对目标WDR反应的权重。在交叉脊髓连接中,突触前(发送)和突触后(接收)神经元的回路中,形成突触前神经元并作用于突触后神经元的纤维可被视为这条对侧通路的最终中继。因此,突触前神经元兴奋性的增强可能会改变对侧输入的效力。在完整、麻醉、瘫痪的大鼠中,同时记录脊髓L5-L6腰段两侧的神经元对。通过离子电渗法将兴奋性氨基酸NMDA和抑制性氨基酸甘氨酸的拮抗剂士的宁施加到突触前神经元上,以增加它们的兴奋性。在给药前和给药期间,分析神经元的自发活动和有害刺激诱发的活动。在两种物质的离子电渗过程中,我们发现施加到突触前神经元感受野的有害刺激激活了多达50%之前无反应的对侧突触后神经元。此外,脊髓两侧的神经元自发活动显著增加,并对同侧有害刺激的反应增强。这些发现表明,对侧输入通过调节突触后神经元的兴奋性参与脊髓伤害性传递的回路动力学。推测了这种伤害性传递回路在单侧神经损伤后神经元敏化中的可能功能作用。

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