首页> 美国卫生研究院文献>Frontiers in Neurology >Enhancement of Cortical Network Activity in vitro and Promotion of GABAergic Neurogenesis by Stimulation with an Electromagnetic Field with a 150 MHz Carrier Wave Pulsed with an Alternating 10 and 16 Hz Modulation
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Enhancement of Cortical Network Activity in vitro and Promotion of GABAergic Neurogenesis by Stimulation with an Electromagnetic Field with a 150 MHz Carrier Wave Pulsed with an Alternating 10 and 16 Hz Modulation

机译:通过以150 CorMHz载波交替调制10和16 Hz调制的电磁波刺激电磁场增强体外皮层网络的活性并促进GABA能神经发生。

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摘要

In recent years, various stimuli were identified capable of enhancing neurogenesis, a process which is dysfunctional in the senescent brain and in neurodegenerative and certain neuropsychiatric diseases. Applications of electromagnetic fields to brain tissue have been shown to affect cellular properties and their importance for therapies in medicine is recognized. In this study, differentiating murine cortical networks on multiwell microelectrode arrays were repeatedly exposed to an extremely low-electromagnetic field (ELEMF) with alternating 10 and 16 Hz frequencies piggy backed onto a 150 MHz carrier frequency. The ELEMF exposure stimulated the electrical network activity and intensified the structure of bursts. Further, the exposure to electromagnetic fields within the first 28 days in vitro of the differentiation of the network activity induced also reorganization within the burst structure. This effect was already most pronounced at 14 days in vitro after 10 days of exposure. Overall, the development of cortical activity under these conditions was accelerated. These functional electrophysiological changes were accompanied by morphological ones. The percentage of neurons in the neuron glia co-culture was increased without affecting the total number of cells, indicating an enhancement of neurogenesis. The ELEMF exposure selectively promoted the proliferation of a particular population of neurons, evidenced by the increased proportion of GABAergic neurons. The results support the initial hypothesis that this kind of ELEMF stimulation could be a treatment option for specific indications with promising potential for CNS applications, especially for degenerative diseases, such as Alzheimer’s disease and other dementias.
机译:近年来,已鉴定出能够增强神经发生的各种刺激,该过程在衰老的大脑以及神经退行性疾病和某些神经精神疾病中是功能失调的。已经证明,将电磁场施加到脑组织会影响细胞特性,并且认识到它们在医学治疗中的重要性。在这项研究中,将多孔微电极阵列上的区分鼠皮层网络反复暴露于极低电磁场(ELEMF)中,该极低电磁场具有交替的10和16 Hz频率,背负于150 MHz的载波频率。 ELEMF暴露刺激了网络活动并增强了突发结构。此外,在体外前28天之内暴露于网络活动分化的电磁场中,也会诱发爆发结构内的重组。暴露10天后,在体外14天时这种效应已经最为明显。总体而言,在这些条件下皮质活动的发展得到了加速。这些功能性电生理变化伴随着形态学变化。神经元胶质细胞共培养中神经元的百分比增加,而不影响细胞总数,表明神经发生增强。 ELEMF暴露选择性地促进特定神经元群体的增殖,这由GABA能神经元的比例增加证明。该结果支持最初的假设,即这种ELEMF刺激可以作为具有中枢神经系统应用潜力的特定适应症的治疗选择,尤其是对于退行性疾病,例如阿尔茨海默氏病和其他痴呆症。

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