首页> 外文期刊>Bioelectromagnetics. >Exposure of rats to a 50-Hz, 100 muTesla magnetic field does not affect the ex vivo production of interleukins by activated T or B lymphocytes.
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Exposure of rats to a 50-Hz, 100 muTesla magnetic field does not affect the ex vivo production of interleukins by activated T or B lymphocytes.

机译:将大鼠暴露于50 Hz,100 muTesla磁场不会影响激活的T或B淋巴细胞在体外产生白介素。

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摘要

Two separate, independent experiments were conducted to evaluate the effects of exposure of rats to a 50-Hz linearly polarized, 100 microT magnetic field (MF) on the ex vivo production of interleukins (ILs) by mitogen-stimulated splenic lymphocytes. IL-1 and IL-2 were determined by proliferation assays, using IL-dependent murine T cell lines. In the first experiment, female Sprague-Dawley rats were treated with 7,12-dimethylbenz[a]anthracene (DMBA] at a dose of 20 mg per rat (four weekly gavage doses of 5 mg), and were either MF-exposed or sham-exposed for 14 weeks. This experimental protocol has previously been shown to result in a significant increase in breast cancer growth in response to MF exposure. Furthermore, MF exposure at 50-100 microT for 3 months was recently found to induce a suppressed ex vivo proliferation of splenic T cells in response to mitogen stimulation, which could be a result of reduced IL production of spleen lymphocytes. However, the present experiments failed to demonstrate any significant difference between MF- and sham-exposed groups in production of IL-1 by mitogen-activated splenic B cells. In a second experiment, shorter MF exposure periods were studied with respect to IL production from mitogen-stimulated B and T cells. Groups of rats were MF- or sham-exposed for 1 day, 1 week, or 2 weeks, followed by preparation and activation of spleen lymphocytes. No significant difference in IL-1 or IL-2 production from stimulated B or T cells was seen. The data indicate that in vivo MF exposure of rats does not affect the ex vivo IL production of B or T lymphocytes, suggesting that the recently reported changes in T cell proliferation in response to MF exposure may not be mediated via alterations in B or T cell IL production.
机译:进行了两个单独的独立实验,以评估大鼠暴露于50 Hz线性极化100 microT磁场(MF)对有丝分裂原刺激的脾淋巴细胞离体产生白介素(ILs)的影响。使用IL依赖性鼠T细胞系通过增殖测定法确定IL-1和IL-2。在第一个实验中,雌性Sprague-Dawley大鼠接受了7,12-二甲基苯并[a]蒽(DMBA)的治疗,剂量为每只大鼠20 mg(每周四次灌胃,剂量为5 mg),并接受MF暴露或假暴露14周,该实验方案先前已证明可导致因MF暴露而导致乳腺癌的生长显着增加,此外,最近发现在50-100 microT的MF暴露3个月可诱导乳腺癌的抑制。脾细胞在有丝分裂原刺激下的体内增殖,这可能是脾淋巴细胞IL生成减少的结果,但是,本实验未能证明MF和假暴露组在IL-1生成方面有任何显着差异在第二个实验中,研究了有丝分裂原刺激的B细胞和T细胞产生IL的更短MF暴露时间,成组的大鼠分别接受MF或假暴露1天,1周,或2周通过脾脏淋巴细胞的制备和活化。从刺激的B或T细胞中未观察到IL-1或IL-2产生的显着差异。数据表明大鼠的体内MF暴露不影响B或T淋巴细胞的离体IL产生,这表明最近报道的响应MF暴露的T细胞增殖变化可能不是通过B或T细胞的改变来介导的IL产生。

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