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抑制2-花生四烯酸甘油降解可减轻三叉神经损伤小鼠的口腔面部神经性疼痛。

Inhibition of 2-arachydonoylgycerol degradation attenuates orofacial neuropathic pain in trigeminal nerve-injured mice.

作者信息

Kamimura Rantaro, Hossain Mohammad Z, Unno Shumpei, Ando Hiroshi, Masuda Yuji, Takahashi Kojiro, Otake Masanori, Saito Isao, Kitagawa Junichi

机构信息

Division of Orthodontics, Department of Oral Biological Science,Niigata University Graduate School of Medical and Dental Sciences.

Department of Oral Physiology, School of Dentistry, Matsumoto Dental University.

出版信息

J Oral Sci. 2018 Mar 24;60(1):37-44. doi: 10.2334/josnusd.17-0005. Epub 2018 Mar 2.

Abstract

Current therapeutics are not effective for orofacial neuropathic pain, and better options are needed. The present study used inferior orbital nerve (ION)-injured mice to investigate the effect of inhibiting monoacylglycerol lipase (MAGL), an enzyme that degrades the major endocannabinoid 2-arachydonoylgycerol (2-AG) in orofacial neuropathic pain. The head-withdrawal threshold to mechanical stimulation of the whisker pad was reduced on days 3, 5, and 7 after ION injury. Injection of JZL184, a selective inhibitor of MAGL, on day 7 after ION injury attenuated the reduction in head-withdrawal threshold at 2 h after administration. Moreover, the numbers of MAGL-immunoreactive neurons in the trigeminal subnucleus caudalis (Vc) and upper cervical spinal cord (C1-C2) were significantly greater in ION-injured mice than in sham-operated mice but were reduced after administration of JZL184. The increase in MAGL immunoreactivity suggests that increased 2-AG production is followed by rapid enzymatic degradation of 2-AG. JZL184 inhibited this degradation and thus increased 2-AG concentration in the brain, particularly in the Vc and C1-C2 regions, thus attenuating pain. Our findings suggest that inhibition of 2-AG degradation by MAGL inhibitors is a promising therapeutic option for treatment of orofacial neuropathic pain.

摘要

目前的治疗方法对口腔面部神经性疼痛无效,因此需要更好的治疗选择。本研究使用眶下神经(ION)损伤的小鼠来研究抑制单酰甘油脂肪酶(MAGL)的作用,MAGL是一种降解口腔面部神经性疼痛中主要内源性大麻素2-花生四烯酸甘油(2-AG)的酶。在ION损伤后的第3、5和7天,对触须垫进行机械刺激时的头部撤离阈值降低。在ION损伤后第7天注射MAGL的选择性抑制剂JZL184,可减轻给药后2小时头部撤离阈值的降低。此外,ION损伤小鼠三叉神经尾侧亚核(Vc)和颈上脊髓(C1-C2)中MAGL免疫反应性神经元的数量明显多于假手术小鼠,但在给予JZL184后减少。MAGL免疫反应性的增加表明,2-AG产量增加后会迅速被酶降解。JZL184抑制了这种降解,从而增加了大脑中,特别是Vc和C1-C2区域的2-AG浓度,从而减轻了疼痛。我们的研究结果表明,MAGL抑制剂抑制2-AG降解是治疗口腔面部神经性疼痛的一种有前景的治疗选择。

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