Franke Helmut, Ringelstein E B, Stögbauer F
Klinik und Poliklinik für Neurologie, Münster, Germany.
Bioelectromagnetics. 2005 Oct;26(7):529-35. doi: 10.1002/bem.20123.
We previously reported that electromagnetic fields (EMFs) [GSM 1800 standard (Global System for Mobile Communications, 1800 MHz)] increased sucrose permeation across the blood-brain barrier (BBB) in vitro. The cell culture model used in our previous study was comprised of rat astrocytes in coculture with porcine brain microvascular endothelial cells (PBECs). In this study, after optimization of cell culture conditions, distinctly improved barrier tightness was observed, accompanied by a loss of susceptibility to EMF-related effects on BBB permeability. Cell cultures were exposed for 1-5 days at an average specific absorption rate (SAR) of 0.3 W/kg in the identical exposure system as described before. To quantify barrier tightness, sucrose permeation across exposed PBEC was measured and compared to values of sham exposed cells and to a control group. Additionally, observations in the BBB coculture system were complemented by similar experiments using two other in vitro models, composed of PBEC monocultures with or without serum. These three models display distinctly higher barrier tightness than the previously used system. In all three BBB models, sucrose permeation across the cell layers remained unaffected by exposure to a GSM 1800 field for up to 5 days. We thus could not confirm enhanced permeability of the BBB in vitro after EMF exposure as reported before since the in vitro barrier tightness in these experiments is now more like that of the in vivo situation.
我们之前报道过,电磁场(EMFs)[GSM 1800标准(全球移动通信系统,1800兆赫)]在体外可增加蔗糖透过血脑屏障(BBB)的能力。我们之前研究中使用的细胞培养模型由大鼠星形胶质细胞与猪脑微血管内皮细胞(PBECs)共培养组成。在本研究中,优化细胞培养条件后,观察到屏障紧密性明显改善,同时对电磁场相关的血脑屏障通透性影响的敏感性丧失。在与之前所述相同的暴露系统中,以平均比吸收率(SAR)0.3瓦/千克对细胞培养物进行1至5天的暴露。为了量化屏障紧密性,测量了暴露的PBEC中蔗糖的渗透率,并与假暴露细胞和对照组的值进行比较。此外,在血脑屏障共培养系统中的观察结果通过使用另外两个体外模型的类似实验得到补充,这两个模型由有或无血清的PBEC单培养物组成。这三个模型显示出比之前使用的系统明显更高的屏障紧密性。在所有三个血脑屏障模型中,暴露于GSM 1800场长达5天,跨细胞层的蔗糖渗透率均未受影响。因此,我们无法证实如之前报道的那样,电磁场暴露后体外血脑屏障的通透性增强,因为在这些实验中体外屏障紧密性现在更类似于体内情况。