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过度使用损伤会导致持续的行为能力下降,这与受影响的肌肉骨骼组织、循环系统和大脑中较高的白细胞介素-6表达相关。

Overuse injury induces persistent behavioral declines that correlate with higher IL-6 expression in the affected musculoskeletal tissues, circulation, and brain.

作者信息

Barbe Mary F, Lambi Alex G, Harris Michele Y, Patel Parth R, Tamas Istvan P, McGonagle Elizabeth R, Van Der Bas Megan, Kalicharan Betsy A, Bright-Rowe Lewis, Popoff Steven N, Klyne David M

机构信息

Aging + Cardiovascular Discovery Center, Lewis Katz School of Medicine of Temple University, Philadelphia, PA, United States.

Department of Surgery, Division of Plastic Surgery, University of New Mexico, Albuquerque, NM, United States.

出版信息

Front Physiol. 2025 Jul 16;16:1500795. doi: 10.3389/fphys.2025.1500795. eCollection 2025.

Abstract

BACKGROUND

Pain and sickness behaviors can be elicited by systemic inflammation. We sought to determine if mature rats displayed these behaviors following overuse injury and whether they correlated with inflammatory cytokines in musculoskeletal tissues, circulation, and the brain.

METHODS

Mature female Sprague-Dawley rats were used: 26 controls and 41 rats trained across 6 weeks to pull at high force levels. Following training, 28 rats performed a high-repetition low-force task for 6 more weeks (task); the remaining rested (trained + rest). Behavioral data were collected at baseline, following training, and at study end. Tissues and serum were then collected and examined for the presence of inflammatory cytokines.

RESULTS

Following training, task and trained + rest rats exhibited grip strength declines and forepaw sensitivity, compared to baseline and controls. Following task or rest, these behavioral changes persisted in addition to a reduction in social interactions (with juvenile female rats) in task rats, whereas trained + rest rats exhibited only low grip strength. Pro-inflammatory cytokines were elevated in serum and forelimb musculoskeletal and nerve tissues in task relative to control rats; IL-6 was elevated in serum and tissues in task relative to trained + rest rats. IL-6 immunostaining was observed in brain ependymal cells and cingulate cortex of task and trained + rest rats relative to control rats, and one circumferential blood brain region of task rats relative to the other groups. Higher cytokine levels in tissues often correlated with poorer behavioral responses.

CONCLUSION

These data indicate that overuse injury induces inflammatory responses within the local/damaged tissues, circulation, and brain, which drives pain-related and sickness behaviors.

摘要

背景

全身炎症可引发疼痛和疾病行为。我们试图确定成年大鼠在过度使用性损伤后是否会表现出这些行为,以及它们是否与肌肉骨骼组织、循环系统和大脑中的炎性细胞因子相关。

方法

使用成年雌性斯普拉格 - 道利大鼠:26只作为对照,41只大鼠经过6周训练以高力量水平进行牵拉。训练后,28只大鼠再进行6周的高重复低力量任务(任务组);其余大鼠休息(训练 + 休息组)。在基线、训练后和研究结束时收集行为数据。然后收集组织和血清并检测炎性细胞因子的存在。

结果

与基线和对照组相比,训练后,任务组和训练 + 休息组大鼠表现出握力下降和前爪敏感性。在任务或休息后,这些行为变化持续存在,此外任务组大鼠与幼年雌性大鼠的社交互动减少,而训练 + 休息组大鼠仅表现出低握力。与对照大鼠相比,任务组大鼠血清、前肢肌肉骨骼和神经组织中的促炎细胞因子升高;与训练 + 休息组大鼠相比,任务组大鼠血清和组织中的白细胞介素 - 6升高。相对于对照大鼠,在任务组和训练 + 休息组大鼠的脑室管膜细胞和扣带回皮质中观察到白细胞介素 - 6免疫染色,相对于其他组,任务组大鼠的一个圆周血脑区域也观察到该染色。组织中较高的细胞因子水平通常与较差的行为反应相关。

结论

这些数据表明,过度使用性损伤会在局部/受损组织、循环系统和大脑中诱导炎症反应,从而引发与疼痛相关的行为和疾病行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0142/12307325/45bf0dfdfcaa/fphys-16-1500795-g001.jpg

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