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首页> 外文期刊>Bioelectromagnetics. >Effects of GSM-Modulated 900 MHz Radiofrequency Electromagnetic Fields on the Hematopoietic Potential of Mouse Bone Marrow Cells
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Effects of GSM-Modulated 900 MHz Radiofrequency Electromagnetic Fields on the Hematopoietic Potential of Mouse Bone Marrow Cells

机译:GSM调制的900MHz射频电磁场对小鼠骨髓细胞造血潜力的影响

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摘要

Studies describing the influence of radiofrequency electromagnetic fields on bone marrow cells (BMC) often lack functional data. We examined the effects of in vivo exposure to a Global System for Mobile Communications (GSM) modulated 900MHz RF fields on BMC using two transplantation models. X-irradiated syngeneic mice were injected with BMC from either RF-field-exposed, sham-exposed or cage control mice. Twelve weeks after transplantation, no differences in thymocyte number, frequency of subpopulations and cell proliferation were found in mice receiving BMC from either group. Also, in the spleen cell number, percentages of B/T cells, B/T-cell proliferation, and interferon (IFN-) production were similar in all groups. In parallel, a mixture of BMC from congenic sham- and RF-exposed mice were co-transplanted into lymphopenic Rag2 deficient mice. BMC from RF-exposed and sham-exposed mice displayed no advantage or disadvantage when competing for the replenishment of lymphatic organs with mature lymphocytes in Rag2 deficient mice. This model revealed that BMC from sham-exposed and RF-exposed mice were less efficient than BMC from cage control mice in repopulating the thymus, an effect likely due to restraint stress. In conclusion, our results showed no effects of in vivo exposure to GSM-modulated RF-fields on the ability of bone marrow (BM) precursors to long-term reconstitute peripheral T and B cell compartments. Bioelectromagnetics 35:559-567, 2014. (c) 2014 Wiley Periodicals, Inc.
机译:描述射频电磁场对骨髓细胞(BMC)影响的研究通常缺乏功能数据。我们使用两个移植模型检查了VIVO暴露于全球移动通信系统(GSM)调制的900MHz RF字段的全球系统的影响。用BMC从RF场暴露,假曝光或笼子对照小鼠中注射X辐照的同系小鼠。移植后12周,在从任一组接受BMC的小鼠中发现血频细胞数,群频率和细胞增殖的差异。此外,在脾细胞数中,所有基团中,B / T细胞,B / T细胞增殖和干扰素(IFN-)产生的百分比相似。同时,将来自Congenic Sham-and RF暴露小鼠的BMC的混合物共移植到淋巴栓塞RAG2缺陷小鼠中。来自射击和假暴露的小鼠的BMC在竞争RAG2缺陷小鼠中伴随着成熟淋巴细胞的补充时没有显示任何优势或缺点。该模型揭示了来自假曝光的BMC和射频小鼠的效率低于来自笼子对照小鼠的BMC,在重新灌注胸腺,这一效果可能由于约束应力。总之,我们的结果表明,在长期重组外周T和B细胞隔室的骨髓(BM)前体的能力上没有体内暴露于GSM调制的RF场的影响。生物电磁学35:559-567,2014。(c)2014年Wiley期刊,Inc。

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