Novel Application of Behavioral Assays Allows Dissociation of Joint Pathology from Systemic Extra-Articular Alterations Induced by Inflammatory Arthritis.

Ann K Harvey, Mariah J Lelos, Claire J Greenhill, Ashley T Jones, Susanne P Clinch, Michael J Newton, Stephen B Dunnett, Sean L Wyatt, Anwen S Williams, Simon A Jones
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Abstract

Introduction: Although rheumatoid arthritis (RA) is a disease of articular joints, patients often suffer from co-morbid neuropsychiatric changes, such as anxiety, that may reflect links between heightened systemic inflammation and abnormal regulation of the hypothalamic-pituitary-adrenal (HPA) axis. Here, we apply behavioral neuroscience methods to assess the impact of antigen-induced arthritis (AIA) on behavioral performance in wild type (WT) and interleukin-10 deficient (Il10-/-) mice. Our aim was to identify limb-specific motor impairments, as well as neuropsychological responses to inflammatory arthritis.

Methods: Behavioral testing was performed longitudinally in WT and Il10-/- mice before and after the induction of arthritic joint pathology. Footprint analysis, beam walking and open field assessment determined a range of motor, exploratory and anxiety-related parameters. Specific gene changes in HPA axis tissues were analyzed using qPCR.

Results: Behavioral assessment revealed transient motor and exploratory impairments in mice receiving AIA, coinciding with joint swelling. Hind limb coordination deficits were independent of joint pathology. Behavioral impairments returned to baseline by 10 days post-AIA in WT mice. Il10-/- mice demonstrated comparable levels of swelling and joint pathology as WT mice up to 15 days post-AIA, but systemic differences were evident in mRNA expression in HPA axis tissues from Il10-/- mice post-AIA. Interestingly, the behavioral profile of Il10-/- mice revealed a significantly longer time post-AIA for activity and anxiety-related behaviors to recover.

Conclusions: The novel application of sensitive behavioral tasks has enabled dissociation between behaviors that occur due to transient joint-specific pathology and those generated by more subtle systemic alterations that manifest post-AIA.

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行为测定的新应用可将关节病理学与炎症性关节炎引起的系统性关节外改变区分开来。
导言:尽管类风湿性关节炎(RA)是一种关节疾病,但患者往往同时患有焦虑等神经精神疾病,这可能反映出全身炎症加剧与下丘脑-垂体-肾上腺(HPA)轴调节异常之间的联系。在这里,我们应用行为神经科学方法来评估抗原诱导的关节炎(AIA)对野生型(WT)和白细胞介素-10缺乏(Il10-/-)小鼠行为表现的影响。我们的目的是确定肢体特异性运动障碍以及神经心理学对炎症性关节炎的反应:方法:在诱导关节炎病理之前和之后,对WT和Il10-/-小鼠进行纵向行为测试。足印分析、横梁行走和开阔地评估确定了一系列运动、探索和焦虑相关参数。使用 qPCR 分析了 HPA 轴组织中的特定基因变化:行为评估显示,接受 AIA 的小鼠在关节肿胀时会出现短暂的运动和探索障碍。后肢协调障碍与关节病变无关。WT小鼠的行为障碍在AIA后10天恢复到基线水平。Il10-/-小鼠在AIA后15天内表现出与WT小鼠相当的肿胀和关节病理水平,但AIA后Il10-/-小鼠HPA轴组织的mRNA表达存在明显的系统性差异。有趣的是,Il10-/-小鼠的行为特征显示,AIA后活动和焦虑相关行为的恢复时间明显更长:结论:敏感行为任务的新颖应用使我们能够区分因短暂的关节特异性病变而产生的行为和因更微妙的全身性改变而产生的行为,这些改变在 AIA 后会表现出来。
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