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原花青素通过降低岛叶皮质锥体细胞的放电频率,对 spared nerve injured 小鼠产生镇痛和抗焦虑作用。 (注:“spared nerve injured”表述有误,可能是“spared nerve injury”即“保留神经损伤”,但按照给定原文翻译如此。)

Proanthocyanidins induce analgesic and anxiolytic effects in spared nerve injured mice by decreasing firing rate of pyramidal cells in the insular cortex.

作者信息

Wang Pan, Si Hua-Xing, Zhu Da-Yu, Xing Ke-Ke, Wang Jian, Cao Ting-Ting, Zhao Han, Liu Xiao-Die, Zhang Ming-Ming, Chen Tao

机构信息

Department of Human Anatomy, Histology and Embryology and K.K. Leung Brain Research Centre, The Fourth Military Medical University, Xi'an, China.

College of Life Science, Northwest University, Xi'an, China.

出版信息

Front Mol Neurosci. 2023 Jun 23;16:1174125. doi: 10.3389/fnmol.2023.1174125. eCollection 2023.

Abstract

Neuropathic pain is one of the most common symptoms of clinical pain that often accompanied by severe emotional changes such as anxiety. However, the treatment for comorbidity of chronic pain and anxiety is limited. Proanthocyanidins (PACs), a group of polyphenols enriched in plants and foods, have been reported to cause pain-alleviating effects. However, whether and how PACs induce analgesic and anxiolytic effects in the central nervous system remain obscure. In the present study, we observed that microinjection of PACs into the insular cortex (IC) inhibited mechanical and spontaneous pain sensitivity and anxiety-like behaviors in mice with spared nerve injury. Meanwhile, PACs application exclusively reduced the FOS expression in the pyramidal cells but not interneurons in the IC. electrophysiological recording of the IC further showed that PACS application inhibited the firing rate of spikes of pyramidal cells of IC in neuropathic pain mice. In summary, PACs induce analgesic and anxiolytic effects by inhibiting the spiking of pyramidal cells of the IC in mice with neuropathic pain, which should provide new evidence of PACs as the potential clinical treatment of chronic pain and anxiety comorbidity.

摘要

神经病理性疼痛是临床疼痛最常见的症状之一,常伴有焦虑等严重情绪变化。然而,慢性疼痛与焦虑共病的治疗方法有限。原花青素(PACs)是一类富含于植物和食物中的多酚,据报道具有减轻疼痛的作用。然而,PACs是否以及如何在中枢神经系统中诱导镇痛和抗焦虑作用仍不清楚。在本研究中,我们观察到向岛叶皮质(IC)微量注射PACs可抑制 spared 神经损伤小鼠的机械性和自发性疼痛敏感性以及焦虑样行为。同时,应用PACs仅降低了IC中锥体细胞而非中间神经元的FOS表达。对IC的电生理记录进一步表明,应用PACS可抑制神经病理性疼痛小鼠IC中锥体细胞的放电频率。总之,PACs通过抑制神经病理性疼痛小鼠IC中锥体细胞的放电来诱导镇痛和抗焦虑作用,这应为PACs作为慢性疼痛和焦虑共病潜在临床治疗方法提供新的证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a9b/10327562/8bc1211af387/fnmol-16-1174125-g001.jpg

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Metabolic Fate of Orally Ingested Proanthocyanidins through the Digestive Tract.
Antioxidants (Basel). 2022 Dec 22;12(1):17. doi: 10.3390/antiox12010017.
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Synaptic Plasticity in the Pain-Related Cingulate and Insular Cortex.
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