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炎症损伤会引起疼痛敏化,这种敏化现象不仅表现在损伤部位,还会在雄性(而非雌性)小鼠中表现出来。

Inflammatory injury induces pain sensitization that is expressed beyond the site of injury in male (and not in female) mice.

机构信息

Department of Psychology, University of Toronto, Canada.

Cell and Systems Biology, University of Toronto, Canada.

出版信息

Behav Brain Res. 2024 Oct 18;475:115215. doi: 10.1016/j.bbr.2024.115215. Epub 2024 Aug 25.

DOI:10.1016/j.bbr.2024.115215
PMID:39191370
Abstract

Pain is a crucial protective mechanism for the body. It alerts us to potential tissue damage or injury and promotes the avoidance of harmful stimuli. Injury-induced inflammation and tissue damage lead to pain sensitization, which amplifies responses to subsequent noxious stimuli even after an initial primary injury has recovered. This phenomenon, commonly referred to as hyperalgesic priming, was investigated in male and female mice to determine whether it is specific to the site of previous injury. We used 10μl of 50 % Freund's complete adjuvant (CFA) administered to the left hind paw as a model of peripheral injury. Both male and female mice exhibited robust site-specific mechanical hypersensitivity after CFA, which resolved within one-week post-injection. After injury resolution, only male CFA-primed mice showed enhanced and prolonged mechanical sensitivity in response to a chemical challenge or a single 0.5 mA electric footshock. Among CFA-primed male mice, shock-induced mechanical hypersensitivity was expressed in both the left (previously injured) and the right (uninjured) hind paws, suggesting a pivotal role for altered centralized processes in the expression of pain sensitization. These findings indicate that pain history regulates sensory responses to subsequent mechanical and chemical pain stimuli in a sex-specific manner-foot-shock-induced hyperalgesic priming expression among male mice generalized beyond the initial injury site.

摘要

疼痛是身体重要的保护机制。它提醒我们潜在的组织损伤或伤害,并促进避免有害刺激。损伤引起的炎症和组织损伤导致疼痛敏化,即使在初始原发性损伤已经恢复后,对随后的有害刺激的反应也会增强。这种现象通常被称为超敏性启动,我们在雄性和雌性小鼠中研究了它,以确定它是否特定于先前损伤的部位。我们使用 10μl 的 50%弗氏完全佐剂(CFA)施用于左后爪作为外周损伤的模型。雄性和雌性小鼠在 CFA 后均表现出强烈的部位特异性机械性敏感性,这种敏感性在注射后一周内得到解决。损伤解决后,只有雄性 CFA 引发的小鼠在对化学挑战或单次 0.5mA 电足底电击的反应中表现出增强和延长的机械敏感性。在 CFA 引发的雄性小鼠中,电击引起的机械敏感性在左(先前受伤)和右(未受伤)后爪中均有表达,这表明中枢过程的改变在疼痛敏化的表达中起着关键作用。这些发现表明,疼痛史以性别特异性的方式调节对随后的机械和化学疼痛刺激的感觉反应——雄性小鼠的电击引起的超敏性启动表达不仅局限于初始损伤部位。

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