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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Comparison between low-level 50 Hz and 900 MHz electromagnetic stimulation on single channel ionic currents and on firing frequency in dorsal root ganglion isolated neurons
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Comparison between low-level 50 Hz and 900 MHz electromagnetic stimulation on single channel ionic currents and on firing frequency in dorsal root ganglion isolated neurons

机译:低频50 Hz和900 MHz电磁刺激对背根神经节离体神经元单通道离子电流和激发频率的比较

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Alteration of membrane surface charges represents one of the most interesting effects of the electromagnetic exposure on biological structures. Some evidence exists in the case of extremely low frequency whereas the same effect in the radiofrequency range has not been detected. Changes in transmembrane voltages are probably responsible for the mobilization of intracellular calcium described in some previous studies but not confirmed in others. These controversial results may be due to the cell type under examination and/or to the permeability properties of the membranes. According to such a hypothesis, calcium oscillations would be a secondary effect due to the induced change in the membrane voltage and thus dependent on the characteristics of ionic channels present in a particular preparation. Calcium increases could suggest more than one mechanism to explain the biological effects of exposure due to the fact that all the cellular pathways using calcium ions as a second messenger could be, in theory, disturbed by the electromagnetic field exposure. In the present work, we investigate the early phase of the signal transmission in the peripheral nervous system. We present evidence that the firing rate of rat sensory neurons can be modified by 50/60 Hz magnetic field but not by low level 900 MHz fields. The action of the 50/60 Hz magnetic field is biphasic. At first, the number of action potentials increases in time. Following this early phase, the firing rate decreases more rapidly than in control conditions. The explanation can be found at the single-channel level. Dynamic action current recordings in dorsal root ganglion neurons acutely exposed to the electromagnetic field show increased functionality of calcium channels, In parallel, a calcium-activated potassium channel is able to increase its mean open time. (c) 2006 Elsevier B.V. All rights reserved.
机译:膜表面电荷的变化代表电磁暴露对生物结构最有趣的影响之一。在极低的频率下存在一些证据,而在射频范围内尚未检测到相同的效果。跨膜电压的变化可能是先前研究中描述的细胞内钙动员的原因,而其他研究中未证实。这些有争议的结果可能是由于受检查的细胞类型和/或膜的通透性。根据这样的假设,由于膜电压的感应变化,钙振荡将是次要作用,因此取决于特定制剂中存在的离子通道的特性。由于从理论上讲所有使用钙离子作为第二信使的细胞途径都可能受到电磁场干扰,因此钙的增加可能暗示了一种解释暴露的生物学效应的机制。在目前的工作中,我们调查了周围神经系统中信号传输的早期阶段。我们提供的证据表明,大鼠感觉神经元的放电速率可以通过50/60 Hz磁场进行修改,但不能通过低水平的900 MHz磁场进行修改。 50/60 Hz磁场的作用是双相的。首先,动作电位的数量随时间增加。在此早期阶段之后,点火速率的下降比控制条件下的下降更快。可以在单通道级别找到说明。急性暴露于电磁场的背根神经节神经元中的动态动作电流记录显示,钙通道的功能增强。与此同时,钙激活的钾通道能够增加其平均开放时间。 (c)2006 Elsevier B.V.保留所有权利。

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