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首页> 外文期刊>European journal of medical research. >Low-frequency pulsed electromagnetic fields significantly improve time of closure and proliferation of human tendon fibroblastsClaudine Seeliger, Karsten Falldorf, Jens Sachtleben, Martijn van Griensven
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Low-frequency pulsed electromagnetic fields significantly improve time of closure and proliferation of human tendon fibroblastsClaudine Seeliger, Karsten Falldorf, Jens Sachtleben, Martijn van Griensven

机译:低频脉冲电磁场显着改善人肌腱纤维素菌的闭合时间和增殖的时间Seeliger,Karsten Falldorf,Jens Sachtleben,Martijn Van Griensven

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Background: The promotion of the healing process following musculoskeletal injuries comprises growth factor signalling, migration, proliferation and apoptosis of cells. If these processes could be modulated, the healing of tendon tissue may be markedly enhanced. Here, we report the use of the Somagen? device, which is certified for medical use according to European laws. It generates low-frequency pulsed electromagnetic fields that trigger effects of a nature that are yet to be determined. Methods: A 1.5-cm wide, linear scrape was introduced into patellar tendon fibroblast cultures (N = 5 donors). Treatment was carried out every second day. The regimen was applied three times in total with 30 minutes comprising pulsed electromagnetic field packages with two fundamental frequencies (10 minutes of 33 Hz, 20 minutes of 7.8 Hz). Control cells remained untreated. All samples were analyzed for gap closure time, proliferation and apoptosis one week after induction of the scrape wound. Results: The mean time for bridging the gap in the nontreated cells was 5.05 ± 0.33 days, and in treated cells, it took 3.35 ± 0.38 days (P <0.001). For cell cultures with scrape wounds, a mean value for BrdU incorporation of OD = 0.70±0.16 was found. Whereas low-frequency pulsed electromagnetic fields treated samples showed OD= 1.58 ±0.24 (P <0.001). However, the percentage of apoptotic cells did not differ between the two groups. Conclusions: Our data demonstrate that low-frequency pulsed electromagnetic fields emitted by the Somagen? device influences the in vitro wound healing of patellar tendon fibroblasts and, therefore, possibly increases wound healing potential.
机译:背景:肌肉骨骼损伤后的愈合过程的推广包括生长因子信号传导,迁移,增殖和细胞凋亡。如果可以调制这些过程,则可以显着提高肌腱组织的愈合。在这里,我们报告了使用Somagen?根据欧洲法律认证的设备。它产生低频脉冲电磁场​​,其触发尚未确定的性质的效果。方法:将1.5厘米宽,线性刮板引入髌骨肌腱成纤维细胞培养物(n = 5供体)。治疗每天进行一次。该方案总共三次施用,30分钟,包括具有两个基本频率的脉冲电磁场​​封装(10分钟为33Hz,20分钟为7.8Hz)。控制细胞保持未经处理。分析所有样品在诱导伤口诱导后一周内分析间隙闭合时间,增殖和细胞凋亡。结果:桥接非生成细胞间隙的平均时间为5.05±0.33天,并在处理细胞中,采用3.35±0.38天(P <0.001)。对于具有刮伤伤口的细胞培养物,发现Brdu的平均值掺入OD = 0.70±0.16。虽然低频脉冲电磁场​​处理的样品显示OD = 1.58±0.24(P <0.001)。然而,两组之间凋亡细胞的百分比没有差异。结论:我们的数据表明,Somagen发出的低频脉冲电磁场​​?设备影响髌骨肌腱成纤维细胞的体外伤口愈合,因此可能增加伤口愈合潜力。

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