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Effects of electromagnetic field (PEMF) exposure at different frequency and duration on the peripheral nerve regeneration: in vitro and in vivo study

机译:暴露于不同频率和持续时间的电磁场(PEMF)对周围神经再生的影响:体外和体内研究

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Purpose: The purpose was to clarify the influence of frequency and exposure time of pulsed electromagnetic fields (PEMF) on the peripheral nerve regeneration. Materials and methods: Immortalized rat Schwann cells (iSCs) (1 x 10(2)/well) were exposed at four different conditions in 1 mT (50 Hz 1 h/d, 50 Hz 12 h/d, 150 Hz 1 h/d and 150 Hz 12h/d). Cell proliferation, mRNA expression of S100 and brain-derived neurotrophic factor (BDNF) were analyzed. Sprague-Dawley rats (200-250 g) were divided into six groups (n = 10 each): control, sham, 50 Hz 1 h/d, 50 Hz 12 h/d, 150 Hz 1 h/d and 150 Hz 12 Hr/d. Mental nerve was crush-injured and exposed at four different conditions in 1 mT (50 Hz 1 Hr/d, 50 Hz 12 Hr/d, 150 Hz 1 h/d and 150 Hz 12 h/d). Nerve regeneration was evaluated with functional test, histomorphometry and retrograde labeling of trigeminal ganglion. Results: iSCs proliferation with 50 Hz, 1 h/d was increased from fourth to seventh day; mRNA expression of S100 and BDNF was significantly increased at the same condition from first week to third week (p < .05 vs. control); difference score was increased at the second and third week, and gap score was increased at the third under 50 Hz 1 h PEMF compared with control while other conditions showed no statistical meaning. Axon counts and retrograde labeled neurons were significantly increased under PEMF of four different conditions compared with control. Although there was no statistical difference, 50 Hz, 1 h PEMF showed highest regeneration ability than other conditions. Conclusion: PEMF enhanced peripheral nerve regeneration, and that it may be due to cell proliferation and increase in BDNF and S100 gene expression.
机译:目的:目的是弄清脉冲电磁场​​(PEMF)的频率和暴露时间对周围神经再生的影响。材料和方法:将永生的大鼠雪旺氏细胞(iSC)(1 x 10(2)/孔)在四种不同条件下以1 mT(50 Hz 1 h / d,50 Hz 12 h / d,150 Hz 1 h / d和150 Hz 12h / d)。分析细胞增殖,S100 mRNA表达和脑源性神经营养因子(BDNF)。将Sprague-Dawley大鼠(200-250 g)分为六组(每组n = 10):对照,假,50 Hz 1 h / d,50 Hz 12 h / d,150 Hz 1 h / d和150 Hz 12小时/天。精神神经受到挤压损伤,并在四种不同条件下以1 mT(50 Hz 1 Hr / d,50 Hz 12 Hr / d,150 Hz 1 h / d和150 Hz 12 h / d)暴露。通过功能测试,组织形态计量学和三叉神经节的逆行标记评估神经再生。结果:50Hz,1h / d的iSCs增殖从第四天增加到第七天;从第1周到第3周,在相同条件下S100和BDNF的mRNA表达显着增加(与对照组相比,p <.05);与对照组相比,在50 Hz 1 h PEMF下,第2周和第3周的差异评分增加,第3周的间隙评分增加。与对照组相比,在四种不同条件下的PEMF下轴突计数和逆行标记神经元均显着增加。尽管没有统计学差异,但50 Hz,1 h PEMF的再生能力高于其他条件。结论:PEMF增强了周围神经的再生,这可能是由于细胞增殖以及BDNF和S100基因表达的增加。

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