首页> 美国卫生研究院文献>Journal of Neurotrauma >Simulated Whiplash Modulates Expression of the Glutamatergic System in the Spinal Cord Suggesting Spinal Plasticity Is Associated with Painful Dynamic Cervical Facet Loading
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Simulated Whiplash Modulates Expression of the Glutamatergic System in the Spinal Cord Suggesting Spinal Plasticity Is Associated with Painful Dynamic Cervical Facet Loading

机译:模拟的鞭打调制脊髓中谷氨酸能系统的表达表明脊髓可塑性与痛苦的动态颈椎小面负荷有关。

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摘要

The cervical facet joint and its capsule have been reported to be injured during whiplash scenarios and are a common source of chronic neck pain from whiplash. Both the metabotropic glutamate receptor 5 (mGluR5) and the excitatory amino acid carrier 1 (EAAC1) have pivotal roles in chronic pain. In this study, spinal mGluR5 and EAAC1 were quantified following painful facet joint distraction in a rat model of facet-mediated painful loading and were evaluated for their correlation with the severity of capsule loading. Rats underwent either a dynamic C6/C7 joint distraction simulating loading experienced during whiplash (distraction; n = 12) or no distraction (sham; n = 6) to serve as control. The severity of capsular loading was quantified using strain metrics, and mechanical allodynia was assessed after surgery. Spinal cord tissue was harvested at day 7 and the expression of mGluR5 and EAAC1 were quantified using Western blot analysis. Mechanical allodynia following distraction was significantly (p < 0.001) higher than sham. Spinal expression of mGluR5 was also significantly (p < 0.05) greater following distraction relative to sham. However, spinal EAAC1 was significantly (p = 0.0003) reduced compared to sham. Further, spinal mGluR5 expression was significantly positively correlated to capsule strain (p < 0.02) and mechanical allodynia (p < 0.02). Spinal EAAC1 expression was significantly negatively related to one of the strain metrics (p < 0.003) and mechanical allodynia at day 7 (p = 0.03). These results suggest that the spinal glutamatergic system may potentiate the persistent behavioral hypersensitivity that is produced following dynamic whiplash-like joint loading; chronic whiplash pain may be alleviated by blocking mGluR5 expression and/or enhancing glutamate transport through the neuronal transporter EAAC1.
机译:据报道,颈椎小关节及其囊在鞭打时会受伤,是鞭打引起慢性颈部疼痛的常见原因。代谢型谷氨酸受体5(mGluR5)和兴奋性氨基酸载体1(EAAC1)在慢性疼痛中均具有关键作用。在这项研究中,在小关节介导的疼痛负荷大鼠模型中,在疼痛的小关节牵张后对脊髓mGluR5和EAAC1进行了定量,并评估了它们与胶囊负荷严重程度的相关性。大鼠经历动态的C6 / C7关节牵引,模拟在鞭打过程中经历的负荷(牵引; n = 12)或无牵引(假手术; n = 6)作为对照。囊负荷的严重程度使用应变指标进行量化,并在手术后评估机械性异常性疼痛。在第7天收获脊髓组织,并使用蛋白质印迹分析定量mGluR5和EAAC1的表达。分心后的机械性异常性疼痛明显高于假手术(p <0.001)。相对于假手术,分心后mGluR5的脊髓表达也显着更高(p <0.05)。然而,与假手术相比,脊柱EAAC1明显减少(p = 0.0003)。此外,脊髓mGluR5表达与胶囊应变(p(<0.02)和机械性异常性疼痛(p <0.02)显着正相关。脊髓EAAC1表达与第7天的应变指标之一(p <0.003)和机械性异常性疼痛(p negative = 0.03)显着负相关。这些结果表明,脊椎谷氨酸能系统可以增强在动态鞭打样关节负荷后产生的持续行为超敏反应。慢性鞭打痛可通过阻止mGluR5表达和/或增强谷氨酸通过神经元转运蛋白EAAC1的转运来缓解。

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