持续炎症期间外周 HCN2 通道的变化

L-A R Jansen, L A Forster, X L Smith, M Rubaharan, A Z Murphy, D J Baro
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摘要

神经损伤或炎症后的痛觉感受器敏感化会导致慢性疼痛。在许多病理疼痛模型中都能观察到痛觉感受器超极化激活电流 Ih 的增加。药物阻断 Ih 可以防止病理疼痛过程中出现的机械和热超敏反应。超极化激活环核苷酸门控离子通道 2(HCN2)的改变介导了 Ih 依赖性热痛和机械痛。关于慢性炎症性疼痛期间这些变化的性质,目前所知有限。在慢性炎症性疼痛的全弗罗因德佐剂(CFA)模型中观察到了 HCN2 表达和翻译后 SUMOylation 的改变。向大鼠后爪跖内注射 CFA 可诱导单侧痛觉减退,且在注射后可持续长达 14 天。后爪由腰部 DRG L4-6 的初级传入神经支配。在CFA诱导炎症的前7天,L5 DRG的HCN2表达和SUMOylation的调整已被充分证明。在此,我们研究了 CFA 后第 1 天和第 3 天的双侧 L4 和 L6 DRG。使用 L4 和 L6 DRG 冷冻切片,分别用免疫组化和近接结扎法测定 HCN2 表达和 SUMOylation。我们的研究结果表明,跖内注射 CFA 在第 1 天引起 L4 和 L6 DRG 中 HCN2 表达的双侧增加,但在第 3 天则没有,并且在第 1 天和第 3 天增强了同侧 L6 DRG 中 HCN2 的 SUMOylation。在此过程中,HCN2 表达和 SUMOylation 的变化是短暂的。我们的研究表明,在 CFA 诱导的炎症过程中,HCN2 受到多种机制的调节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Changes in peripheral HCN2 channels during persistent inflammation.

Nociceptor sensitization following nerve injury or inflammation leads to chronic pain. An increase in the nociceptor hyperpolarization-activated current, Ih, is observed in many models of pathological pain. Pharmacological blockade of Ih prevents the mechanical and thermal hypersensitivity that occurs during pathological pain. Alterations in the Hyperpolarization-activated Cyclic Nucleotide-gated ion channel 2 (HCN2) mediate Ih-dependent thermal and mechanical hyperalgesia. Limited knowledge exists regarding the nature of these changes during chronic inflammatory pain. Modifications in HCN2 expression and post-translational SUMOylation have been observed in the Complete Freund's Adjuvant (CFA) model of chronic inflammatory pain. Intra-plantar injection of CFA into the rat hindpaw induces unilateral hyperalgesia that is sustained for up to 14 days following injection. The hindpaw is innervated by primary afferents in lumbar DRG, L4-6. Adjustments in HCN2 expression and SUMOylation have been well-documented for L5 DRG during the first 7 days of CFA-induced inflammation. Here, we examine bilateral L4 and L6 DRG at day 1 and day 3 post-CFA. Using L4 and L6 DRG cryosections, HCN2 expression and SUMOylation were measured with immunohistochemistry and proximity ligation assays, respectively. Our findings indicate that intra-plantar injection of CFA elicited a bilateral increase in HCN2 expression in L4 and L6 DRG at day 1, but not day 3, and enhanced HCN2 SUMOylation in ipsilateral L6 DRG at day 1 and day 3. Changes in HCN2 expression and SUMOylation were transient over this time course. Our study suggests that HCN2 is regulated by multiple mechanisms during CFA-induced inflammation.

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