Jiangsu Province Key Laboratory of Anesthesiology, Jiangsu Province Key Laboratory of Anesthesia and Analgesia Application Technology, NMPA Key Laboratory for Research and Evaluation of Narcotic and Psychotropic Drugs, 505488Xuzhou Medical University, Jiangsu, China.
Department of Anesthesiology, 505488The Affiliated Hospital of Xuzhou Medical University, Jiangsu, China.
Mol Pain. 2023 Jan-Dec;19:17448069231161031. doi: 10.1177/17448069231161031.
Bone cancer pain (BCP) is severe chronic pain caused by tumor metastasis to the bones, often resulting in significant skeletal remodeling and fractures. Currently, there is no curative treatment. Therefore, insight into the underlying mechanisms could guide the development of mechanism-based therapeutic strategies for BCP. We speculated that Rac1/PAK1 signaling plays a critical role in the development of BCP. Tumor cells implantation (TCI) into the tibial cavity resulted in bone cancer-associated mechanical allodynia. Golgi staining revealed changes in the excitatory synaptic structure of WDR (Wide-dynamic range) neurons in the spinal cord, including increased postsynaptic density (PSD) length and thickness, and width of the cleft. Behavioral and western blotting test revealed that the development and persistence of pain correlated with Rac1/PAK1 signaling activation in primary sensory neurons. Intrathecal injection of NSC23766, a Rac1 inhibitor, reduced the persistence of BCP as well as reversed the remodeling of dendrites. Therefore, we concluded that activation of the Rac1/PAK1 signaling pathway in the spinal cord plays an important role in the development of BCP through remodeling of dendritic spines. Modulation of the Rac1/PAK1 pathway may be a potential strategy for BCP treatment.
骨癌痛(BCP)是由肿瘤转移至骨骼引起的严重慢性疼痛,常导致显著的骨骼重塑和骨折。目前尚无治愈性治疗方法。因此,深入了解潜在机制可能为 BCP 的基于机制的治疗策略的发展提供指导。我们推测 Rac1/PAK1 信号在 BCP 的发展中起关键作用。将肿瘤细胞植入胫骨腔会导致与骨癌相关的机械性痛觉过敏。高尔基染色显示脊髓中 WDR(宽动态范围)神经元兴奋性突触结构发生变化,包括突触后密度(PSD)长度和厚度以及裂隙宽度增加。行为学和 Western blot 测试表明,疼痛的发展和持续与初级感觉神经元中 Rac1/PAK1 信号的激活相关。鞘内注射 Rac1 抑制剂 NSC23766 可减少 BCP 的持续时间,并逆转树突的重塑。因此,我们得出结论,脊髓中 Rac1/PAK1 信号通路的激活通过树突棘的重塑在 BCP 的发展中起重要作用。调节 Rac1/PAK1 通路可能是治疗 BCP 的一种潜在策略。