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首页> 外文期刊>BMC Musculoskeletal Disorders >Experimentally induced cartilage degeneration treated by pulsed electromagnetic field stimulation; an in vitro study on bovine cartilage
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Experimentally induced cartilage degeneration treated by pulsed electromagnetic field stimulation; an in vitro study on bovine cartilage

机译:通过脉冲电磁场​​刺激治疗实验性软骨变性;牛软骨的体外研究

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Background Osteoarthritis (OA) is the final result of progressive alterations to articular cartilage structure, composition and cellularity, followed by an increase in the concentration of pro-inflammatory cytokines in joint synovial fluid. Even though the effect of pulsed electromagnetic field (PEMF) stimulation in counteracting OA progression and inflammation is of increasing interest, because of its anabolic and anti-inflammatory properties, the present study aimed to improve the knowledge on cartilage extracellular matrix (ECM) and chondrocyte changes related to the exposure of PEMF, from a histological and histomorphometric point of view. Methods An in vitro OA model was realized, culturing bovine cartilage explants with a high dose of interleukin 1β (IL1β, 50?ng/ml) at different experimental times (24?h, and 7 and 21?days). The effects of PEMFs (75?Hz, 1.5 mT) were evaluated in cartilage explants treated with IL1β or not (control), in terms of cartilage structure, cellularity and proteoglycans, glycosaminoglycans, collagen II and transforming growth factor β1 synthesis by using histology, histomorphometry and immunohistochemistry. Results Making a comparison with control cartilage, IL1β-treated explants showed a decrease in cartilage matrix, structure and cellularity parameters. PEMFs were able to counteract the progression of OA acting on both cartilage cellularity and ECM in cartilage previously treated with IL1β. Normal distribution (Kolmogroc-Smirnov test) and homoscedasticity (Levene test) of data were verified, then, the non-parametric Kruskal Wallis test followed by Mann-Whiteny U test for pairwise comparisons were performed. The p-value was adjusted according to the Dunn-Sidak correction. Conclusions These results, obtained by culturing and treating cartilage explants from two different joints, confirmed that PEMF stimulation can be used as adjuvant therapy to preserve cartilage from detrimental effects of high inflammatory cytokine levels during OA.
机译:背景骨关节炎(OA)是关节软骨结构,组成和细胞性进行性改变的最终结果,其次是关节滑液中促炎细胞因子浓度的增加。尽管脉冲电磁场​​(PEMF)刺激对抵消OA进展和炎症的影响越来越引起人们的关注,但由于其合成代谢和抗炎特性,本研究旨在提高对软骨细胞外基质(ECM)和软骨细胞的了解从组织学和组织形态学的角度来看,与PEMF暴露有关的变化。方法建立体外OA模型,在不同的实验时间(24小时,7天和21天)培养高剂量白介素1β(IL1β,50μng/ ml)的牛软骨外植体。根据组织学,组织学,软骨结构,细胞性和蛋白聚糖,糖胺聚糖,胶原蛋白II和转化生长因子β1的合成,评估了在未用IL1β处理的软骨外植体(对照组)中PEMF(75?Hz,1.5 mT)的作用,组织形态计量学和免疫组化。结果与对照软骨比较,IL1β处理的外植体显示软骨基质,结构和细胞性参数降低。 PEMF能够抵消OA的作用,该作用既可作用于先前用IL1β治疗的软骨,又可作用于软骨细胞性和ECM。验证数据的正态分布(Kolmogroc-Smirnov检验)和均方差性(Levene检验),然后进行非参数Kruskal Wallis检验,然后进行Mann-Whiteny U检验进行成对比较。根据Dunn-Sidak校正调整p值。结论通过培养和治疗两个不同关节的软骨外植体获得的这些结果证实,PEMF刺激可以用作辅助疗法,以保护软骨免受OA期间高炎症细胞因子水平的有害影响。

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