4.5 Article

Cyclic loading regime considered beneficial does not protect injured and interleukin-1-inflamed cartilage from post-traumatic osteoarthritis

期刊

JOURNAL OF BIOMECHANICS
卷 141, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.jbiomech.2022.111181

关键词

Post-traumatic osteoarthritis; Articular cartilage; Inflammation; Cyclic loading; Injury

资金

  1. Doctoral Programme in Science, Technology and Computing (SCITECO) of the University of Eastern Finland
  2. Academy of Finland [322423, 324529, 322429]
  3. Sigrid Juselius Foundation
  4. Instrumentarium Science Foundation
  5. Saastamoinen Foundation
  6. Finnish Cultural Foun-dation [191044]
  7. Maire Lisko Foundation
  8. Novo Nordisk Foundation [NNF21OC0065373]
  9. European Union's Horizon 2020 research and innovation programme [702586]
  10. Uni-versity of Eastern Finland

向作者/读者索取更多资源

This study investigated the early progression of post-traumatic osteoarthritis using an in vitro model, finding that cyclic loading may be beneficial to deep cartilage but becomes ineffective in preventing further degradation triggered by injury and cytokines.
Injurious overloading and inflammation perturbate homeostasis of articular cartilage, leading to abnormal tissue -level loading during post-traumatic osteoarthritis. Our objective was to gain time-and cartilage depth-dependent insights into the early-stage disease progression with an in vitro model incorporating for the first time the coaction of (1) mechanical injury, (2) pro-inflammatory interleukin-1 challenge, and (3) cyclic loading mimicking walking and considered beneficial for cartilage health. Cartilage plugs (n = 406) were harvested from the patellofemoral grooves of young calves (N = 6) and subjected to injurious compression (50% strain, rate 100%/s; INJ), interleukin-1 alpha-challenge (1 ng/ml; IL), and cyclic loading (intermittent 1 h loading periods, 15% strain, 1 Hz; CL). Plugs were assigned to six groups (control, INJ, IL, INJ-IL, IL-CL, INJ-IL-CL). Bulk and localized glycosaminoglycan (GAG) content (DMMB assay, digital densitometry), aggrecan biosynthesis (35S-sulfate incorporation), and chondrocyte viability (fluorescence microscopy) were assessed on days 3-12. The INJ, IL, and INJ-IL groups exhibited rapid early (days 2-4) GAG loss in contrast to CL groups. On day 3, deep cartilage of INJ-IL-CL group had higher GAG content than INJ group (p < 0.05). On day 12, INJ-IL-CL group showed more accumulated GAG loss (normalized with control) than INJ-IL group (average fold changes 1.97 [95% CI: 1.23-2.70]; 1.66 [1.42-1.89]; p = 0.007). Aggrecan biosynthesis increased in CL groups on day 12 compared to day 0. Despite promoting aggrecan biosynthesis, this cyclic loading protocol seems to be beneficial early-on to deep cartilage, but later becoming incapable of restricting further degradation triggered by marked but non-destructive injury and cytokine transport.

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