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Cancer pain and neuropathic pain are associated with Aβ sensory neuronal plasticity in dorsal root ganglia and abnormal sprouting in lumbar spinal cord

机译:癌痛和神经性疼痛与背根神经节的Aβ感觉神经元可塑性和腰脊髓异常发芽有关

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摘要

Evidence suggests that there are both nociceptive and neuropathic components of cancer-induced pain. We have observed that changes in intrinsic membrane properties and excitability of normally non-nociceptive Aβ sensory neurons are consistent in rat models of peripheral neuropathic pain and cancer-induced pain. This has prompted a comparative investigation of the intracellular electrophysiological characteristics of sensory neurons and of the ultrastructural morphology of the dorsal horn in rat models of neuropathic pain and cancer-induced pain. Neuropathic pain model rats were induced with a polyethylene cuff implanted around a sciatic nerve. Cancer-induced pain model rats were induced with mammary rat metastasis tumour-1 rat breast cancer or MATLyLu rat prostate cancer cells implanted into the distal epiphysis of a femur. Behavioural evidence of nociception was detected using von Frey tactile assessment. Aβ-fibre low threshold mechanoreceptor neurons in both cancer-induced pain and neuropathic pain models exhibited slower dynamics of action potential genesis, including a wider action potential duration and lower action potential amplitude compared to those in control animals. Enhanced excitability of Aβ-fibre low threshold mechanoreceptor neurons was also observed in cancer-induced pain and neuropathic pain models. Furthermore, both cancer-induced pain and neuropathic pain models showed abundant abnormal axonal sprouting in bundles of myelinated axons in the ipsilateral spinal laminae IV and V. The patterns of changes show consistency between rat models of cancer-induced pain and neuropathic pain. These findings add to the body of evidence that animal models of cancer-induced pain and neuropathic pain share features that may contribute to the peripheral and central sensitization and tactile hypersensitivity in both pain states.
机译:有证据表明,癌症诱发的疼痛同时具有伤害性和神经性成分。我们已经观察到,在周围神经性疼痛和癌症引起的疼痛的大鼠模型中,正常的非伤害性Aβ感觉神经元的内在膜性质和兴奋性的变化是一致的。这促使在神经性疼痛和癌症引起的疼痛的大鼠模型中对感觉神经元的细胞内电生理特性和背角的超微结构形态进行比较研究。用植入坐骨神经周围的聚乙烯套囊诱导神经性疼痛模型大鼠。用植入到股骨远端骨physi中的乳腺大鼠转移瘤-1大鼠乳腺癌或MATLyLu大鼠前列腺癌细胞诱导癌症诱发的疼痛模型大鼠。使用von Frey触觉评估检测到了伤害感受的行为证据。与对照组动物相比,癌症诱发的疼痛和神经性疼痛模型中的Aβ纤维低阈值机械感受器神经元均表现出较慢的动作电位发生动力学,包括较宽的动作电位持续时间和较低的动作电位振幅。在癌症引起的疼痛和神经性疼痛模型中也观察到了Aβ纤维低阈值机械感受器神经元的兴奋性增强。此外,癌症引起的疼痛和神经性疼痛模型均显示同侧脊椎板IV和V的髓鞘轴突束中大量轴突发芽异常。变化的模式显示出大鼠致癌性疼痛和神经性疼痛模型之间的一致性。这些发现增加了证据,表明癌症引起的疼痛和神经性疼痛的动物模型具有可能在两种疼痛状态下均引起外周和中枢敏化和触觉过敏的特征。

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