刺猬信号通路通过调节大鼠感觉神经元兴奋性参与骨癌痛。

Hedgehog signaling contributes to bone cancer pain by regulating sensory neuron excitability in rats.

机构信息

1 Jiangsu Key Laboratory of Anesthesiology, Xuzhou Medical University, Xuzhou, Jiangsu, China.

2 Department of Anesthesiology, Affiliated Hospital of Xuzhou Medical College, Xuzhou, Jiangsu, China.

出版信息

Mol Pain. 2018 Jan-Dec;14:1744806918767560. doi: 10.1177/1744806918767560.

Abstract

Treating bone cancer pain continues to be a clinical challenge and underlying mechanisms of bone cancer pain remain elusive. Here, we reported that sonic hedgehog signaling plays a critical role in the development of bone cancer pain. Tibia bone cavity tumor cell implantation produces bone cancer-related mechanical allodynia, thermal hyperalgesia, and spontaneous and movement-evoked pain behaviors. Production and persistence of these pain behaviors are well correlated with tumor cell implantation-induced up-regulation and activation of sonic hedgehog signaling in primary sensory neurons and spinal cord. Spinal administration of sonic hedgehog signaling inhibitor cyclopamine prevents and reverses the induction and persistence of bone cancer pain without affecting normal pain sensitivity. Inhibiting sonic hedgehog signaling activation with cyclopamine, in vivo or in vitro, greatly suppresses tumor cell implantation-induced increase of intracellular Ca and hyperexcitability of the sensory neurons and also the activation of GluN2B receptor and the subsequent Ca-dependent signals CaMKII and CREB in dorsal root ganglion and the spinal cord. These findings show a critical mechanism underlying the pathogenesis of bone cancer pain and suggest that targeting sonic hedgehog signaling may be an effective approach for treating bone cancer pain.

摘要

治疗骨癌疼痛仍然是一个临床挑战,而骨癌疼痛的潜在机制仍难以捉摸。在这里,我们报道了 sonic hedgehog 信号在骨癌疼痛的发展中起着关键作用。胫骨骨腔肿瘤细胞植入会产生与骨癌相关的机械性感觉过敏、热痛觉过敏以及自发性和运动诱发的疼痛行为。这些疼痛行为的产生和持续与肿瘤细胞植入诱导的初级感觉神经元和脊髓中 sonic hedgehog 信号的上调和激活密切相关。脊髓给予 sonic hedgehog 信号抑制剂 cyclopamine 可预防和逆转骨癌疼痛的诱导和持续,而不影响正常的疼痛敏感性。cyclopamine 在体内或体外抑制 sonic hedgehog 信号的激活,极大地抑制了肿瘤细胞植入诱导的感觉神经元内 Ca 增加和过度兴奋,以及 GluN2B 受体的激活和随后的 Ca 依赖性信号 CaMKII 和 CREB 在背根神经节和脊髓中的激活。这些发现表明了骨癌疼痛发病机制的关键机制,并表明靶向 sonic hedgehog 信号可能是治疗骨癌疼痛的有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b65/5888817/0a78ee54c42b/10.1177_1744806918767560-fig1.jpg

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