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三叉神经病理性疼痛大鼠中动态机械性异常性疼痛的岛叶皮质表征

Insular cortex representation of dynamic mechanical allodynia in trigeminal neuropathic rats.

作者信息

Alvarez Pedro, Dieb Wisam, Hafidi Aziz, Voisin Daniel L, Dallel Radhouane

机构信息

Inserm, U929, Clermont-Ferrand, F-63000 France.

出版信息

Neurobiol Dis. 2009 Jan;33(1):89-95. doi: 10.1016/j.nbd.2008.09.003. Epub 2008 Sep 25.

Abstract

Dynamic mechanical allodynia is a widespread symptom of neuropathic pain for which mechanisms are still poorly understood. The present study investigated the organization of dynamic mechanical allodynia processing in the rat insular cortex after chronic constriction injury to the infraorbital nerve (IoN-CCI). Two weeks after unilateral IoN-CCI, rats showed a dramatic bilateral trigeminal dynamic mechanical allodynia. Light, moving stroking of the infraorbital skin resulted in strong, bilateral upregulation of extracellular-signal regulated kinase phosphorylation (pERK-1/2) in the insular cortex of IoN-CCI animals but not sham rats, in whose levels were similar to those of unstimulated IoN-CCI rats. pERK-1/2 was located in neuronal cells only. Stimulus-evoked pERK-1/2 immunopositive cell bodies displayed rostrocaudal gradient and layer selective distribution in the insula, being predominant in the rostral insula and in layers II-III of the dysgranular and to a lesser extent, of the agranular insular cortex. In layers II-III of the rostral dysgranular insular cortex, intense pERK also extended into distal dendrites, up to layer I. These results demonstrate that trigeminal nerve injury induces a significant alteration in the insular cortex processing of tactile stimuli and suggest that ERK phosphorylation contributes to the mechanisms underlying abnormal pain perception under this condition.

摘要

动态机械性异常性疼痛是神经性疼痛的一种普遍症状,其机制仍知之甚少。本研究调查了眶下神经慢性压迫损伤(IoN-CCI)后大鼠岛叶皮质中动态机械性异常性疼痛处理的组织情况。单侧IoN-CCI两周后,大鼠出现显著的双侧三叉神经动态机械性异常性疼痛。对眶下皮肤进行轻柔、移动的抚摸,导致IoN-CCI动物岛叶皮质中细胞外信号调节激酶磷酸化(pERK-1/2)强烈的双侧上调,但假手术大鼠未出现这种情况,假手术大鼠的pERK-1/2水平与未受刺激的IoN-CCI大鼠相似。pERK-1/2仅位于神经元细胞中。刺激诱发的pERK-1/2免疫阳性细胞体在岛叶中呈现出前后梯度和层选择性分布,在岛叶前部以及颗粒下层和无颗粒岛叶皮质的II-III层中占主导地位,在较小程度上也存在于无颗粒岛叶皮质。在岛叶前部颗粒下层的II-III层中,强烈的pERK也延伸至远端树突,直至I层。这些结果表明,三叉神经损伤会引起岛叶皮质对触觉刺激处理的显著改变,并提示ERK磷酸化在这种情况下异常疼痛感知的潜在机制中起作用。

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