Olgar Yusuf, Hidisoglu Enis, Celen Murat Cenk, Yamasan Bilge Eren, Yargicoglu Piraye, Ozdemir Semir
a Department of Biophysics , Faculty of Medicine, Akdeniz University , Antalya , Turkey.
Int J Radiat Biol. 2015;91(10):851-7. doi: 10.3109/09553002.2015.1068462. Epub 2015 Jul 23.
PURPOSE: Due to the increasing use of wireless technology in developing countries, particularly mobile phones, the influence of electromagnetic fields (EMF) on biologic systems has become the subject of an intense debate. Therefore, in this study we investigated the effect of 2.1 GHz EMF on contractility and beta-adrenergic (β-AR) responsiveness of ventricular myocytes. MATERIALS AND METHODS: Rats were randomized to the following groups: Sham rats (SHAM) and rats exposed to 2.1 GHz EMF for 2 h/day for 10 weeks (EM-10). Sarcomere shortening and Ca(2+) transients were recorded in isolated myocytes loaded with Fura2-AM and electrically stimulated at 1 Hz, while L-type Ca(2+) currents (I(CaL)) were measured using whole-cell patch clamping at 36 ± 1°C. Cardiac nitric oxide (NO) levels were measured in tissue samples using a colorimetric assay kit. RESULTS: Fractional shortening and amplitude of the matched Ca(2+) transients were not changed in EM-10 rats. Although the isoproterenol-induced (10(-6) M) I(CaL) response was reduced in rats exposed to EMF, basal I(CaL) density in myocytes was similar between the two groups (p < 0.01). Moreover, EMF exposure led to a significant increase in nitric oxide levels in rat heart (p < 0.02). CONCLUSIONS: Long-term exposure to 2.1 GHz EMF decreases β-AR responsiveness of ventricular myocytes through NO signaling.
目的:由于无线技术在发展中国家的使用日益增加,尤其是移动电话,电磁场(EMF)对生物系统的影响已成为激烈辩论的主题。因此,在本研究中,我们调查了2.1 GHz电磁场对心室肌细胞收缩性和β-肾上腺素能(β-AR)反应性的影响。 材料与方法:将大鼠随机分为以下几组:假手术大鼠(SHAM)和暴露于2.1 GHz电磁场、每天2小时、持续10周的大鼠(EM-10)。在加载Fura2-AM的分离肌细胞中记录肌节缩短和Ca(2+)瞬变,并以1 Hz进行电刺激,同时在36±1°C下使用全细胞膜片钳测量L型Ca(2+)电流(I(CaL))。使用比色测定试剂盒测量组织样本中的心脏一氧化氮(NO)水平。 结果:EM-10大鼠的分数缩短和匹配Ca(2+)瞬变的幅度没有变化。虽然暴露于电磁场的大鼠中异丙肾上腺素诱导的(10(-6) M)I(CaL)反应降低,但两组肌细胞中的基础I(CaL)密度相似(p < 0.01)。此外,电磁场暴露导致大鼠心脏中的一氧化氮水平显著增加(p < 0.02)。 结论:长期暴露于2.1 GHz电磁场通过NO信号传导降低心室肌细胞的β-AR反应性。
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