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蛋白酶激活受体 2(PAR2)在感觉神经元中的表达有助于紫杉醇处理的小鼠的疼痛和神经病变症状。

Protease-Activated Receptor 2 (PAR2) Expressed in Sensory Neurons Contributes to Signs of Pain and Neuropathy in Paclitaxel Treated Mice.

机构信息

Department of Neuroscience and Center for Advanced Pain Studies, University of Texas at Dallas, Richardson, Texas.

PARMedics Incorporated, Temecula, CA.

出版信息

J Pain. 2023 Nov;24(11):1980-1993. doi: 10.1016/j.jpain.2023.06.006. Epub 2023 Jun 12.

Abstract

Chemotherapy-induced peripheral neuropathy (CIPN) is a common, dose-limiting side effect of cancer therapy. Protease-activated receptor 2 (PAR2) is implicated in a variety of pathologies, including CIPN. In this study, we demonstrate the role of PAR2 expressed in sensory neurons in a paclitaxel (PTX)-induced model of CIPN in mice. PAR2 knockout/wildtype (WT) mice and mice with PAR2 ablated in sensory neurons were treated with PTX administered via intraperitoneal injection. In vivo behavioral studies were done in mice using von Frey filaments and the Mouse Grimace Scale. We then examined immunohistochemical staining of dorsal root ganglion (DRG) and hind paw skin samples from CIPN mice to measure satellite cell gliosis and intra-epidermal nerve fiber (IENF) density. The pharmacological reversal of CIPN pain was tested with the PAR2 antagonist C781. Mechanical allodynia caused by PTX treatment was alleviated in PAR2 knockout mice of both sexes. In the PAR2 sensory neuronal conditional knockout (cKO) mice, both mechanical allodynia and facial grimacing were attenuated in mice of both sexes. In the DRG of the PTX-treated PAR2 cKO mice, satellite glial cell activation was reduced compared to control mice. IENF density analysis of the skin showed that the PTX-treated control mice had a reduction in nerve fiber density while the PAR2 cKO mice had a comparable skin innervation as the vehicle-treated animals. Similar results were seen with satellite cell gliosis in the DRG, where gliosis induced by PTX was absent in PAR cKO mice. Finally, C781 was able to transiently reverse established PTX-evoked mechanical allodynia. PERSPECTIVE: Our work demonstrates that PAR2 expressed in sensory neurons plays a key role in PTX-induced mechanical allodynia, spontaneous pain, and signs of neuropathy, suggesting PAR2 as a possible therapeutic target in multiple aspects of PTX CIPN.

摘要

化疗引起的周围神经病(CIPN)是癌症治疗的一种常见、剂量限制的副作用。蛋白酶激活受体 2(PAR2)参与多种病理过程,包括 CIPN。在这项研究中,我们证明了感觉神经元中表达的 PAR2 在紫杉醇(PTX)诱导的 CIPN 小鼠模型中的作用。PAR2 敲除/野生型(WT)小鼠和感觉神经元中 PAR2 缺失的小鼠通过腹腔注射接受 PTX 治疗。在小鼠中使用 von Frey 纤维和 Mouse Grimace Scale 进行体内行为研究。然后,我们检查了 CIPN 小鼠背根神经节(DRG)和后爪皮肤样本的免疫组织化学染色,以测量卫星细胞神经胶质增生和表皮内神经纤维(IENF)密度。用 PAR2 拮抗剂 C781 测试 CIPN 疼痛的药物逆转。PTX 治疗引起的机械性痛觉过敏在雌雄 PAR2 敲除小鼠中得到缓解。在 PAR2 感觉神经元条件性敲除(cKO)小鼠中,雌雄小鼠的机械性痛觉过敏和面部痛苦表情均减弱。与对照小鼠相比,在接受 PTX 治疗的 PAR2 cKO 小鼠的 DRG 中,卫星神经胶质细胞激活减少。皮肤中 IENF 密度分析表明,与接受载体处理的动物相比,接受 PTX 治疗的对照小鼠的神经纤维密度降低。在 DRG 中观察到类似的卫星细胞神经胶质增生,PTX 诱导的神经胶质增生在 PAR cKO 小鼠中不存在。最后,C781 能够暂时逆转已建立的 PTX 诱发的机械性痛觉过敏。观点:我们的工作表明,感觉神经元中表达的 PAR2 在 PTX 诱导的机械性痛觉过敏、自发性疼痛和神经病变迹象中发挥关键作用,提示 PAR2 可能成为 PTX CIPN 多方面的潜在治疗靶点。

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