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首页> 外文期刊>Bioelectromagnetics. >Effects of pulsed magnetic stimulation on tumor development and immune functions in mice.
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Effects of pulsed magnetic stimulation on tumor development and immune functions in mice.

机译:脉冲磁刺激对小鼠肿瘤发展和免疫功能的影响。

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摘要

We investigated the effects of pulsed magnetic stimulation on tumor development processes and immune functions in mice. A circular coil (inner diameter = 15 mm, outer diameter = 75 mm) was used in the experiments. Stimulus conditions were pulse width = 238 micros, peak magnetic field = 0.25 T (at the center of the coil), frequency = 25 pulses/s, 1,000 pulses/sample/day and magnetically induced eddy currents in mice = 0.79-1.54 A/m(2). In an animal study, B16-BL6 melanoma model mice were exposed to the pulsed magnetic stimulation for 16 days from the day of injection of cancer cells. A tumor growth study revealed a significant tumor weight decrease in the stimulated group (54% of the sham group). In a cellular study, B16-BL6 cells were also exposed to the magnetic field (1,000 pulses/sample, and eddy currents at the bottom of the dish = 2.36-2.90 A/m(2)); however, the magnetically induced eddy currents had no effect on cell viabilities. Cytokine production in mouse spleens was measured to analyze the immunomodulatory effect after the pulsed magnetic stimulation. tumor necrosis factor (TNF-alpha) production in mouse spleens was significantly activated after the exposure of the stimulus condition described above. These results showed the first evidence of the anti-tumor effect and immunomodulatory effects brought about by the application of repetitive magnetic stimulation and also suggested the possible relationship between anti-tumor effects and the increase of TNF-alpha levels caused by pulsed magnetic stimulation.
机译:我们调查了脉冲磁刺激对小鼠肿瘤发展过程和免疫功能的影响。在实验中使用圆形线圈(内径= 15 mm,外径= 75 mm)。刺激条件为脉冲宽度= 238微米,峰值磁场= 0.25 T(在线圈中心),频率= 25脉冲/秒,1,000脉冲/样本/天,小鼠中的磁感应涡流= 0.79-1.54 A / m(2)。在一项动物研究中,自癌细胞注射之日起,将B16-BL6黑色素瘤模型小鼠暴露于脉冲磁刺激下16天。一项肿瘤生长研究表明,刺激组(假手术组的54%)的肿瘤重量明显减少。在一项细胞研究中,B16-BL6细胞也暴露于磁场(1,000脉冲/样品,培养皿底部的涡流= 2.36-2.90 A / m(2));然而,磁感应涡流对细胞活力没有影响。测量小鼠脾脏中细胞因子的产生,以分析脉冲磁刺激后的免疫调节作用。暴露上述刺激条件后,小鼠脾脏中的肿瘤坏死因子(TNF-α)产生被显着激活。这些结果显示了重复磁刺激的应用所产生的抗肿瘤作用和免疫调节作用的第一个证据,也表明了抗肿瘤作用与脉冲磁刺激引起的TNF-α水平升高之间的可能关系。

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