前往化源商城

Journal of Neuroscience 2015-06-03

Persistent Nociception Triggered by Nerve Growth Factor (NGF) Is Mediated by TRPV1 and Oxidative Mechanisms.

Michael A Eskander, Shivani Ruparel, Dustin P Green, Paul B Chen, Elaine D Por, Nathaniel A Jeske, Xiaoli Gao, Eric R Flores, Kenneth M Hargreaves

文献索引:J. Neurosci. 35 , 8593-603, (2015)

全文:HTML全文

摘要

Nerve growth factor (NGF) is elevated in certain chronic pain conditions and is a sufficient stimulus to cause lasting pain in humans, but the actual mechanisms underlying the persistent effects of NGF remain incompletely understood. We developed a rat model of NGF-induced persistent thermal hyperalgesia and mechanical allodynia to determine the role of transient receptor potential vanilloid 1 (TRPV1) and oxidative mechanisms in the persistent effects of NGF. Persistent thermal hypersensitivity and mechanical allodynia require de novo protein translation and are mediated by TRPV1 and oxidative mechanisms. By comparing effects after systemic (subcutaneous), spinal (intrathecal) or hindpaw (intraplantar) injections of test compounds, we determined that TRPV1 and oxidation mediate persistent thermal hypersensitivity via peripheral and spinal sites of action and mechanical allodynia via only a spinal site of action. Therefore, NGF-evoked thermal and mechanical allodynia are mediated by spatially distinct mechanisms. NGF treatment evoked sustained increases in peripheral and central TRPV1 activity, as demonstrated by increased capsaicin-evoked nocifensive responses, increased calcitonin gene-related peptide release from hindpaw skin biopsies, and increased capsaicin-evoked inward current and membrane expression of TRPV1 protein in dorsal root ganglia neurons. Finally, we showed that NGF treatment increased concentrations of linoleic and arachidonic-acid-derived oxidized TRPV1 agonists in spinal cord and skin biopsies. Furthermore, increases in oxidized TRPV1-active lipids were reduced by peripheral and spinal injections of compounds that completely blocked persistent nociception. Collectively, these data indicate that NGF evokes a persistent nociceptive state mediated by increased TRPV1 activity and oxidative mechanisms, including increased production of oxidized lipid TRPV1 agonists. Copyright © 2015 the authors 0270-6474/15/358593-11$15.00/0.

相关化合物

结构式 名称/CAS号 全部文献
氯化钠 结构式 氯化钠
CAS:7647-14-5
α-Synuclein (61-95) (human) trifluoroacetate salt 结构式 α-Synuclein (61-95) (human) trifluoroacetate salt
CAS:154040-19-4
去甲二氢愈创木酸 结构式 去甲二氢愈创木酸
CAS:500-38-9
氯化钠-35cl 结构式 氯化钠-35cl
CAS:20510-55-8
溴烯醇内酯 结构式 溴烯醇内酯
CAS:88070-98-8
辣椒碱 结构式 辣椒碱
CAS:404-86-4
放线菌酮 结构式 放线菌酮
CAS:66-81-9
辣椒平 结构式 辣椒平
CAS:138977-28-3