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等温射频辐射对细胞溶解性T淋巴细胞的影响。

Effect of isothermal radiofrequency radiation on cytolytic T lymphocytes.

作者信息

Cleary S F, Du Z, Cao G, Liu L M, McCrady C

机构信息

Bioelectromagnetics Laboratory, Department of Physiology and Biophysics, Medical College of Virginia, Virginia Commonwealth University, Richmond 23298, USA.

出版信息

FASEB J. 1996 Jun;10(8):913-9. doi: 10.1096/fasebj.10.8.8666169.

Abstract

Previous in vitro studies provide evidence that RF electromagnetic radiation modulates proliferation of human glioma, lymphocytes, and other cell types. The mechanism of RF radiation cell proliferation modulation, as well as mechanisms for effects on other cell physiologic endpoints, are not well understood. To obtain insight regarding interaction mechanisms, we investigated effects of RF radiation exposure on interleukin 2 (IL-2) -dependent proliferation of cytolytic T lymphocytes (CTLL-2). After exposure to RF radiation in the presence or absence of IL-2 cells were cultured at various physiological concentrations of IL-2. Treatment effects on CTLL-2 proliferation were determined by tritiated thymidine incorporation immediately or 24 h after exposure. Exposure to 2450 MHz RIF radiation at specific absorption rates (SARs) of greater than 25 W/kg (induced E-field strength 98.4 V/m) induced a consistent, statistically significant reduction in CTLL-2 proliferation, especially at low IL-2 concentrations. At lower SARs, 2450 MHz exposure increased CTLL-2 proliferation immediately after exposure but reduced 24 h postexposure proliferation. RF radiation effects depended on the mitotic state of the cells at the time of exposure. Comparison of the effects of temperature elevation and RF radiation indicated significant qualitative and quantitative differences.

摘要

以往的体外研究表明,射频电磁辐射可调节人类胶质瘤、淋巴细胞及其他细胞类型的增殖。目前对射频辐射调节细胞增殖的机制以及对其他细胞生理终点的影响机制尚不清楚。为深入了解相互作用机制,我们研究了射频辐射暴露对细胞毒性T淋巴细胞(CTLL-2)依赖白细胞介素2(IL-2)的增殖的影响。在有或无IL-2的情况下暴露于射频辐射后,将细胞在不同生理浓度的IL-2中培养。通过在暴露后立即或24小时掺入氚化胸腺嘧啶来确定对CTLL-2增殖的处理效果。以大于25W/kg的比吸收率(SAR)(感应电场强度98.4V/m)暴露于2450MHz射频辐射会导致CTLL-2增殖持续且具有统计学意义的降低,尤其是在低IL-2浓度下。在较低的SAR下,2450MHz暴露在暴露后立即增加CTLL-2增殖,但在暴露后24小时降低增殖。射频辐射的影响取决于暴露时细胞的有丝分裂状态。温度升高和射频辐射影响的比较表明存在显著的质和量的差异。

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