Establishment of a Rat Model of Infraorbital Neuroinflammation Under CT Guidance.

IF 2 4区 医学 Q3 CLINICAL NEUROLOGY Current neurovascular research Pub Date : 2023-01-01 DOI:10.2174/1567202620666230607113839
Chen Zeng, Chuan Zhang, Ruhui Xiao, Yehan Li, Xing Luo, Hao Deng, Hanfeng Yang
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Abstract

Introduction: The aim is to establish a rat model of infraorbital neuroinflammation with less trauma, stable pain, and a long duration of pain. The pathogenesis of TN is not fully clear. There are various models of TN in rats with different disadvantages, such as damaging the surrounding structures and inaccuracy of location for infraorbital nerve (ION). We aim to establish a rat model of infraorbital neuroinflammation with minimal trauma, a simple operation, and accurate positioning under CT guidance to help us study the pathogenesis of trigeminal neuralgia.

Methods: Thirty-six adult male Sprague Dawley rats (180-220 g) were randomly divided into 2 groups and injected with talc suspension or saline through the infraorbital foramen (IOF) under CT guidance. Mechanical thresholds were measured in the right ION innervation region of 24 rats over 12 postoperative weeks. At 4 weeks, 8 weeks, and 12 weeks after the operation, the inflammatory involvement of the surgical area was evaluated by MRI, and neuropathy was observed using a transmission electron microscope (TEM).

Results: The talc group had a significant decrease in the mechanical threshold at 3 days after surgery that continued until 12 weeks post-operation, and the talc group had a significantly lower mechanical threshold than the saline group 10 weeks post-operation. The talc group had significantly impaired trigeminal nerve (TGN) myelin after 8 weeks post-operation.

Conclusion: The rat model of infraorbital neuroinflammation established by CT-guided injection of talc into the IOF is a simple operation that results in less trauma, stable pain, and a long duration of pain. Moreover, infraorbital neuroinflammation in peripheral branches of the TGN can cause demyelination of the TGN in the intracranial segment.

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CT引导下大鼠眶下神经炎症模型的建立。
目的:建立创伤小、疼痛稳定、疼痛持续时间长的眶下神经炎症大鼠模型。TN的发病机制尚不完全清楚。大鼠的TN模型多种多样,但存在损伤周围结构、眶下神经(ION)定位不准确等缺陷。我们旨在建立创伤小、操作简单、CT引导下定位准确的眶下神经炎症大鼠模型,帮助我们研究三叉神经痛的发病机制。方法:36只成年雄性Sprague Dawley大鼠(180 ~ 220 g)随机分为2组,在CT引导下经眶下孔(IOF)注射滑石粉悬浮液或生理盐水。术后12周对24只大鼠右侧离子神经支配区进行机械阈值测定。在术后4周、8周和12周,通过MRI评估手术区域的炎症受累情况,并通过透射电子显微镜(TEM)观察神经病变。结果:滑石粉组术后3天机械阈值明显降低,并持续至术后12周,术后10周滑石粉组机械阈值明显低于生理盐水组。滑石粉组术后8周三叉神经(TGN)髓磷脂明显受损。结论:ct引导下滑石粉注入眼窝建立大鼠眶下神经炎症模型操作简单,创伤小,疼痛稳定,疼痛持续时间长。此外,TGN周围分支的眶下神经炎症可引起颅内段TGN脱髓鞘。
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来源期刊
Current neurovascular research
Current neurovascular research 医学-临床神经学
CiteScore
3.80
自引率
9.50%
发文量
54
审稿时长
3 months
期刊介绍: Current Neurovascular Research provides a cross platform for the publication of scientifically rigorous research that addresses disease mechanisms of both neuronal and vascular origins in neuroscience. The journal serves as an international forum publishing novel and original work as well as timely neuroscience research articles, full-length/mini reviews in the disciplines of cell developmental disorders, plasticity, and degeneration that bridges the gap between basic science research and clinical discovery. Current Neurovascular Research emphasizes the elucidation of disease mechanisms, both cellular and molecular, which can impact the development of unique therapeutic strategies for neuronal and vascular disorders.
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