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CXCL10增强大鼠背根神经节中的酸敏感离子通道电流。

CXCL10 Enhances Acid-Sensing Ion Channel Currents in Rat Dorsal Root.

作者信息

Liu Ting-Ting, Qiu Chun-Yu, Li Xue-Mei, Hu Wang-Ping

机构信息

School of Basic Medical Sciences, Xianning Medical College, Hubei University of Science and Technology, 88 Xianning Road, Xianning, 437100, Hubei, People's Republic of China.

Hubei College of Chinese Medicine, 87 Xueyuan Road, Jingzhou, 434020, Hubei, People's Republic of China.

出版信息

Mol Neurobiol. 2025 Feb;62(2):1882-1893. doi: 10.1007/s12035-024-04390-3. Epub 2024 Jul 24.

Abstract

Both CXCL10/CXCR3 and acid-sensing ion channels (ASICs) are expressed in nociceptive sensory neurons and participate in various pain processes, but it is still unclear whether there is a link between them. Herein, we report that CXCL10 enhances the electrophysiological activity of ASICs in rat dorsal root ganglia (DRG) neurons. A brief (10 min) application of CXCL10 increased acid-evoked ASIC currents in a concentration-dependent manner. CXCL10 increased the maximum response of ASICs to acidic stimuli without changing their sensitivity. CXCL10 enhanced ASIC currents in DRG cells through CXCR3, as this enhancement was completely blocked by AMG487, a selective CXCR3 antagonist. CXCL10 also increased ASIC3 currents in CHO cells coexpressing ASIC3 and CXCR3 but not in cells expressing ASIC3 alone. The CXCL10-mediated increase in ASIC currents was prevented by the application of either the G protein inhibitor GDP-β-S or the p38 mitogen-activated protein kinase (MAPK) inhibitor SB202190 but not by the ERK inhibitor U0126 or the JNK inhibitor SP600125. Moreover, CXCL10 increased the number of action potentials triggered by acidic stimuli via CXCR3. CXCL10 dose-dependently exacerbated acid-induced nociceptive behavior in rats through peripheral CXCR3. These results indicated that CXCL10/CXCR3 signaling enhanced ASIC-mediated electrophysiological activity in DRG neurons and nociception in rats via a p38 MAPK-dependent pathway, revealing a novel mechanism underlying pain. CXCL10/CXCR3 signaling may be an effective target in the treatment of pain associated with tissue acidification.

摘要

CXCL10/CXCR3和酸敏感离子通道(ASICs)均在伤害性感觉神经元中表达,并参与各种疼痛过程,但它们之间是否存在联系仍不清楚。在此,我们报告CXCL10增强了大鼠背根神经节(DRG)神经元中ASICs的电生理活性。短暂(10分钟)应用CXCL10以浓度依赖的方式增加了酸诱发的ASIC电流。CXCL10增加了ASICs对酸性刺激的最大反应,而不改变其敏感性。CXCL10通过CXCR3增强了DRG细胞中的ASIC电流,因为这种增强被选择性CXCR3拮抗剂AMG487完全阻断。CXCL10还增加了共表达ASIC3和CXCR3的CHO细胞中的ASIC3电流,但在单独表达ASIC3的细胞中没有增加。应用G蛋白抑制剂GDP-β-S或p38丝裂原活化蛋白激酶(MAPK)抑制剂SB202190可阻止CXCL10介导的ASIC电流增加,但ERK抑制剂U0126或JNK抑制剂SP600125则不能。此外,CXCL10通过CXCR3增加了由酸性刺激触发的动作电位数量。CXCL10通过外周CXCR3剂量依赖性地加剧了大鼠酸诱导的伤害性行为。这些结果表明,CXCL10/CXCR3信号通路通过p38 MAPK依赖性途径增强了DRG神经元中ASIC介导的电生理活性和大鼠的伤害感受,揭示了疼痛的一种新机制。CXCL10/CXCR3信号通路可能是治疗与组织酸化相关疼痛的有效靶点。

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