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在一种新型大鼠模型中,腰椎小关节压缩性损伤会引起局部结构、伤害性评分和炎症介质的持久变化。

Lumbar facet joint compressive injury induces lasting changes in local structure, nociceptive scores, and inflammatory mediators in a novel rat model.

作者信息

Henry James L, Yashpal Kiran, Vernon Howard, Kim Jaesung, Im Hee-Jeong

机构信息

Department of Psychiatry and Behavioural Neurosciences, McMaster University, HSC 4N35, 1200 Main Street West, Hamilton, ON, Canada L8N 3Z5.

出版信息

Pain Res Treat. 2012;2012:127636. doi: 10.1155/2012/127636. Epub 2012 Jun 28.

Abstract

Objective. To develop a novel animal model of persisting lumbar facet joint pain. Methods. Sprague Dawley rats were anaesthetized and the right lumbar (L5/L6) facet joint was exposed and compressed to ~1 mm with modified clamps applied for three minutes; sham-operated and naïve animals were used as control groups. After five days, animals were tested for hind-paw sensitivity using von Frey filaments and axial deep tissue sensitivity by algometer on assigned days up to 28 days. Animals were sacrificed at selected times for histological and biochemical analysis. Results. Histological sections revealed site-specific loss of cartilage in model animals only. Tactile hypersensitivity was observed for the ipsi- and contralateral paws lasting 28 days. The threshold at which deep tissue pressure just elicited vocalization was obtained at three lumbar levels; sensitivity at L1 > L3/4 > L6. Biochemical analyses revealed increases in proinflammatory cytokines, especially TNF-α, IL-1α, and IL-1β. Conclusions. These data suggest that compression of a facet joint induces a novel model of local cartilage loss accompanied by increased sensitivity to mechanical stimuli and by increases in inflammatory mediators. This new model may be useful for studies on mechanisms and treatment of lumbar facet joint pain and osteoarthritis.

摘要

目的。建立一种新型的持续性腰椎小关节疼痛动物模型。方法。将Sprague Dawley大鼠麻醉,暴露右侧腰椎(L5/L6)小关节,用改良夹钳将其压缩至约1毫米,持续3分钟;假手术组和未手术组动物作为对照组。五天后,在指定天数直至28天,使用von Frey细丝测试动物后爪敏感性,并用压力痛觉计测试轴向深部组织敏感性。在选定时间处死动物进行组织学和生化分析。结果。组织学切片显示仅模型动物出现特定部位软骨缺失。同侧和对侧后爪均观察到触觉超敏反应,持续28天。在三个腰椎水平获得深部组织压力刚引起发声的阈值;L1处的敏感性>L3/4>L6。生化分析显示促炎细胞因子增加,尤其是肿瘤坏死因子-α、白细胞介素-1α和白细胞介素-1β。结论。这些数据表明,小关节压缩可诱导一种新型的局部软骨缺失模型,伴有对机械刺激的敏感性增加以及炎症介质增加。这种新模型可能有助于研究腰椎小关节疼痛和骨关节炎的机制及治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74a0/3395270/1ff486b23437/PRT2012-127636.001.jpg

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