Foxo1 selectively regulates static mechanical pain by interacting with Nav1.7

痛觉超敏 福克斯O1 神经病理性疼痛 慢性疼痛 医学 神经科学 基因敲除 封锁 伤害 痛觉过敏 化学 内科学 麻醉 受体 生物 信号转导 基因 蛋白激酶B 生物化学
作者
Xiaolong Zhang,Ren-Chun Lai,Zihang Chen,Xiongxiong Zhong,Xianying Cao,Xi Zhang,Yi-Bin Xiao,Junchao Wang,Xian‐Guo Liu,Man-Xiu Xie
出处
期刊:Pain [Ovid Technologies (Wolters Kluwer)]
卷期号:162 (2): 490-502 被引量:15
标识
DOI:10.1097/j.pain.0000000000002055
摘要

Abstract Mechanical allodynia is a debilitating condition for millions of patients with chronic pain. Mechanical allodynia can manifest in distinct forms, including brush-evoked dynamic and filament-evoked static allodynia. In the nervous system, the forkhead protein Foxo1 plays a critical role in neuronal structures and functions. However, the role of Foxo1 in the somatosensory signal remains unclear. Here, we found that Foxo1 selectively regulated static mechanical pain. Foxo1 knockdown decreased sensitivity to static mechanical stimuli in normal rats and attenuated static mechanical allodynia in rat models for neuropathic, inflammatory, and chemotherapy pain. Conversely, Foxo1 overexpression selectively enhanced sensitivity to static mechanical stimuli and provoked static mechanical allodynia. Furthermore, Foxo1 interacted with voltage-gated sodium Na v 1.7 channels and increased the Na v 1.7 current density by accelerating activation rather than by changing the expression of Na v 1.7 in dorsal root ganglia neurons. In addition, the serum level of Foxo1 was found to be increased in chronic pain patients and to be positively correlated with the severity of chronic pain. Altogether, our findings suggest that serum Foxo1 level could be used as a biological marker for prediction and diagnosis of chronic pain. Moreover, selective blockade of Foxo1/Na v 1.7 interaction may offer a new therapeutic approach in patients with mechanical pain.
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