移动电话基站辐射不会影响BALB/3T3细胞的肿瘤转化。
Mobile phone base station radiation does not affect neoplastic transformation in BALB/3T3 cells.
作者信息
Hirose H, Suhara T, Kaji N, Sakuma N, Sekijima M, Nojima T, Miyakoshi J
机构信息
Research Division for Advanced Technology, Kashima Laboratory, Mitsubishi Chemical Safety Institute Ltd., Kamisu, Japan.
出版信息
Bioelectromagnetics. 2008 Jan;29(1):55-64. doi: 10.1002/bem.20362.
A large-scale in vitro study focusing on low-level radiofrequency (RF) fields from mobile radio base stations employing the International Mobile Telecommunication 2000 (IMT-2000) cellular system was conducted to test the hypothesis that modulated RF fields affect malignant transformation or other cellular stress responses. Our group previously reported that DNA strand breaks were not induced in human cells exposed to 2.1425 GHz Wideband Code Division Multiple Access (W-CDMA) radiation up to 800 mW/kg from mobile radio base stations employing the IMT-2000 cellular system. In the current study, BALB/3T3 cells were continuously exposed to 2.1425 GHz W-CDMA RF fields at specific absorption rates (SARs) of 80 and 800 mW/kg for 6 weeks and malignant cell transformation was assessed. In addition, 3-methylcholanthrene (MCA)-treated cells were exposed to RF fields in a similar fashion, to assess for effects on tumor promotion. Finally, the effect of RF fields on tumor co-promotion was assessed in BALB/3T3 cells initiated with MCA and co-exposed to 12-O-tetradecanoylphorbol-13-acetate (TPA). At the end of the incubation period, transformation dishes were fixed, stained with Giemsa, and scored for morphologically transformed foci. No significant differences in transformation frequency were observed between the test groups exposed to RF signals and the sham-exposed negative controls in the non-, MCA-, or MCA plus TPA-treated cells. Our studies found no evidence to support the hypothesis that RF fields may affect malignant transformation. Our results suggest that exposure to low-level RF radiation of up to 800 mW/kg does not induce cell transformation, which causes tumor formation.
开展了一项大规模体外研究,该研究聚焦于采用国际移动通信2000(IMT - 2000)蜂窝系统的移动无线电基站发出的低水平射频(RF)场,以检验调制RF场影响恶性转化或其他细胞应激反应这一假设。我们团队之前报道过,在采用IMT - 2000蜂窝系统的移动无线电基站发出的高达800 mW/kg的2.1425 GHz宽带码分多址(W - CDMA)辐射下,人类细胞未出现DNA链断裂。在当前研究中,将BALB/3T3细胞以80和800 mW/kg的比吸收率(SARs)连续暴露于2.1425 GHz W - CDMA RF场中6周,并评估恶性细胞转化情况。此外,以类似方式让经3 - 甲基胆蒽(MCA)处理的细胞暴露于RF场,以评估对肿瘤促进作用的影响。最后,在经MCA启动并共同暴露于12 - O - 十四烷酰佛波醇 - 13 - 乙酸酯(TPA)的BALB/3T3细胞中评估RF场对肿瘤协同促进作用的影响。在孵育期结束时,固定转化培养皿,用吉姆萨染色,并对形态转化灶进行评分。在未处理、MCA处理或MCA加TPA处理的细胞中,暴露于RF信号的测试组与假暴露阴性对照组之间在转化频率上未观察到显著差异。我们的研究没有发现证据支持RF场可能影响恶性转化这一假设。我们的结果表明,暴露于高达800 mW/kg的低水平RF辐射不会诱导导致肿瘤形成的细胞转化。