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福尔马林疼痛诱导行为双相特性的组织化学分析

Histochemical analysis of the biphasic properties of formalin pain-induced behavior.

作者信息

Hirota Ikuei, Koyama Yoshihisa, Shimada Shoichi

机构信息

Department of Neuroscience and Cell Biology, Osaka University Graduate School of Medicine, Osaka, 565-0871, Japan.

Addiction Research Unit, Osaka Psychiatric Research Center, Osaka Psychiatric Medical Center, Osaka, 541-8567, Japan.

出版信息

Biochem Biophys Rep. 2023 Apr 11;34:101467. doi: 10.1016/j.bbrep.2023.101467. eCollection 2023 Jul.

Abstract

The formalin test has been established as a method for evaluating mouse models of pain. Although there have been numerous reports of formalin-pain-induced behavior, few reports of a detailed histochemical analysis of the central nervous system focus on behavioral biphasic properties. To investigate the alternation of spinal neuronal activity with formalin-induced pain, we performed immunofluorescent staining with c-Fos antibodies as neuronal activity markers using acute pain model mice induced by 2% formalin stimulation. As a result, phase-specific expression patterns were observed. In the spinal dorsal horn region, there were many neural activities in the deep region (layers V-VII) in the behavioral first phase and those in the surface region (layers I-III) in the behavioral second phase. Furthermore, we conducted comparative studies using low concentrations (0.25%) of formalin and capsaicin, which did not show distinct behavioral biphasic properties. Neural activity was observed only in the spinal dorsal horn surface region for both stimuli. Our study suggested that the histochemical biphasic nature of formalin-induced pain was attributable to the activity of the deep region of the spinal cord. In the future, treatment strategies focusing on the deep region neuron will lead to the development of effective treatments for allodynia and intractable chronic pain.

摘要

福尔马林试验已被确立为一种评估疼痛小鼠模型的方法。尽管已有大量关于福尔马林诱导疼痛行为的报道,但很少有关于中枢神经系统详细组织化学分析的报道关注行为双相特性。为了研究福尔马林诱导疼痛时脊髓神经元活动的变化,我们使用2%福尔马林刺激诱导的急性疼痛模型小鼠,以c-Fos抗体作为神经元活动标记物进行免疫荧光染色。结果,观察到了阶段特异性表达模式。在脊髓背角区域,行为第一阶段深层区域(V-VII层)有许多神经活动,行为第二阶段表层区域(I-III层)有许多神经活动。此外,我们使用低浓度(0.25%)的福尔马林和辣椒素进行了比较研究,它们并未表现出明显的行为双相特性。两种刺激在脊髓背角表层区域均观察到神经活动。我们的研究表明,福尔马林诱导疼痛的组织化学双相性质归因于脊髓深层区域的活动。未来,针对深层区域神经元的治疗策略将有助于开发针对异常性疼痛和顽固性慢性疼痛的有效治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce01/10139972/f4eb78ece53f/gr1.jpg

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