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建立小鼠眶下神经慢性缩窄性损伤(DIoN-CCI)模型用于研究三叉神经病理性疼痛

Chronic Constriction Injury of the Distal Infraorbital Nerve (DIoN-CCI) in Mice to Study Trigeminal Neuropathic Pain.

机构信息

Antwerp Surgical Training, Anatomy and Research Centre, Algology (pain research), University of Antwerp; Multidisciplinary Pain Center, Antwerp University Hospital;

Antwerp Surgical Training, Anatomy and Research Centre, Algology (pain research), University of Antwerp; Multidisciplinary Pain Center, Antwerp University Hospital.

出版信息

J Vis Exp. 2024 Mar 8(205). doi: 10.3791/66420.

Abstract

Animal models remain necessary tools to study neuropathic pain. This manuscript describes the distal infraorbital nerve chronic constriction injury (DIoN-CCI) model to study trigeminal neuropathic pain in mice. This includes the surgical procedures to perform the chronic constriction injury and the postoperative behavioral tests to evaluate the changes in spontaneous and evoked behavior that are signs of ongoing pain and mechanical allodynia. The methods and behavioral readouts are similar to the infraorbital nerve chronic constriction injury (IoN-CCI) model in rats. However, important changes are necessary for the adaptation of the IoN-CCI model to mice. First, the intra-orbital approach is replaced by a more rostral approach with an incision between the eye and the whisker pad. The IoN is thus ligated distally outside the orbital cavity. Secondly, due to the higher locomotor activity in mice, allowing rats to move freely in small cages is replaced by placing mice in custom-designed and constructed restraining devices. After DIoN ligation, mice exhibit changes in spontaneous behavior and in response to von Frey hair stimulation that are similar to those in IoN-CCI rats, i.e., increased directed face grooming and hyperresponsiveness to von Frey hair stimulation of the IoN territory.

摘要

动物模型仍然是研究神经性疼痛的必要工具。本文描述了用于研究小鼠三叉神经病理性疼痛的眶下神经慢性缩窄性损伤(DIoN-CCI)模型。这包括进行慢性缩窄性损伤的手术程序和评估自发性和诱发性行为变化的术后行为测试,这些变化是持续疼痛和机械性痛觉过敏的迹象。方法和行为检测与大鼠的眶下神经慢性缩窄性损伤(IoN-CCI)模型相似。然而,需要对 IoN-CCI 模型进行重要的适应性改变以适应于小鼠。首先,将眶内入路替换为更靠前的入路,在眼睛和胡须垫之间做一个切口。这样眶下神经就在眼眶外远端被结扎。其次,由于小鼠的运动活性较高,允许大鼠在小笼子中自由移动的方法被替换为将小鼠置于定制设计和构建的约束装置中。在 DIoN 结扎后,小鼠表现出自发性行为和对冯弗雷毛发刺激的反应的变化,与 IoN-CCI 大鼠相似,即定向面部梳理增加和对 IoN 区域的冯弗雷毛发刺激的超敏反应。

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