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对腰椎 I 层神经元的对侧传入输入作为镜像疼痛的神经基础。

Contralateral Afferent Input to Lumbar Lamina I Neurons as a Neural Substrate for Mirror-Image Pain.

机构信息

Instituto de Investigação e Inovação em Saúde, Universidade do Porto, Porto 4200-135, Portugal.

Neuronal Networks Group, Instituto de Biologia Molecular e Celular (IBMC), Universidade do Porto, Porto 4200-135, Portugal.

出版信息

J Neurosci. 2023 May 3;43(18):3245-3258. doi: 10.1523/JNEUROSCI.1897-22.2023. Epub 2023 Mar 22.

Abstract

Mirror-image pain arises from pathologic alterations in the nociceptive processing network that controls functional lateralization of the primary afferent input. Although a number of clinical syndromes related to dysfunction of the lumbar afferent system are associated with the mirror-image pain, its morphophysiological substrate and mechanism of induction remain poorly understood. Therefore, we used spinal cord preparation of young rats of both sexes to study organization and processing of the contralateral afferent input to the neurons in the major spinal nociceptive projection area Lamina I. We show that decussating primary afferent branches reach contralateral Lamina I, where 27% of neurons, including projection neurons, receive monosynaptic and/or polysynaptic excitatory drive from the contralateral Aδ-fibers and C-fibers. All these neurons also received ipsilateral input, implying their involvement in the bilateral information processing. Our data further show that the contralateral Aδ-fiber and C-fiber input is under diverse forms of inhibitory control. Attenuation of the afferent-driven presynaptic inhibition and/or disinhibition of the dorsal horn network increased the contralateral excitatory drive to Lamina I neurons and its ability to evoke action potentials. Furthermore, the contralateral Aβδ-fibers presynaptically control ipsilateral C-fiber input to Lamina I neurons. Thus, these results show that some lumbar Lamina I neurons are wired to the contralateral afferent system whose input, under normal conditions, is subject to inhibitory control. A pathologic disinhibition of the decussating pathways can open a gate controlling contralateral information flow to the nociceptive projection neurons and, thus, contribute to induction of hypersensitivity and mirror-image pain. We show that contralateral Aδ-afferents and C-afferents supply lumbar Lamina I neurons. The contralateral input is under diverse forms of inhibitory control and itself controls the ipsilateral input. Disinhibition of decussating pathways increases nociceptive drive to Lamina I neurons and may cause induction of contralateral hypersensitivity and mirror-image pain.

摘要

镜像疼痛源于控制初级传入输入功能偏侧化的伤害性处理网络的病理性改变。尽管许多与腰椎传入系统功能障碍相关的临床综合征与镜像疼痛有关,但它的形态生理学基础和诱导机制仍知之甚少。因此,我们使用年轻大鼠的脊髓制备物研究了主要脊髓伤害性投射区域 I 层中神经元的对侧传入输入的组织和处理。我们表明,交叉初级传入分支到达对侧 I 层,其中包括投射神经元在内的 27%的神经元接受来自对侧 Aδ-纤维和 C-纤维的单突触和/或多突触兴奋性驱动。所有这些神经元也接受同侧输入,这表明它们参与了双侧信息处理。我们的数据进一步表明,对侧 Aδ-纤维和 C-纤维输入受到多种形式的抑制性控制。传入驱动的突触前抑制减弱和/或背角网络的去抑制增加了对侧兴奋传入到 I 层神经元的作用及其引发动作电位的能力。此外,对侧 Aβδ-纤维对 I 层神经元的同侧 C-纤维输入具有突触前控制作用。因此,这些结果表明,一些腰椎 I 层神经元与对侧传入系统相连,其输入在正常情况下受到抑制性控制。交叉途径病理性去抑制可打开控制对侧传入到伤害性投射神经元的门控,从而有助于诱导超敏反应和镜像疼痛。我们表明,对侧 Aδ-纤维和 C-纤维供应腰椎 I 层神经元。对侧输入受到多种形式的抑制性控制,并且本身控制同侧输入。交叉途径的去抑制增加了对 I 层神经元的伤害性驱动,可能导致对侧超敏反应和镜像疼痛的诱导。

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