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低频磁场对P19衍生神经元细胞的发育影响。

Developmental effects of low frequency magnetic fields on P19-derived neuronal cells.

作者信息

Saito Atsushi, Takayama Yuzo, Moriguchi Hiroyuki, Kotani Kiyoshi, Jimbo Yasuhiko

机构信息

Department of Human and Engineered Environment Studies, Graduate School of Frontier Sciences, University of Tokyo, Chiba, Japan.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2009;2009:5942-5. doi: 10.1109/IEMBS.2009.5334755.

Abstract

Modulation of pluripotent stem cell differentiation by several environmental factors, such as physical stimulation, is important theme in tissue engineering. In this study, we report the effects of extremely low frequency magnetic fields (ELF-MFs) exposure (1 mT or 10 mT, 50 Hz, sinusoidal) on the neuronal differentiation process of P19 embryonal carcinoma cells (P19 cells). Here, during induction of differentiation, the ELF-MFs exposed to embryoid bodies (EBs). After neuronal differentiation, the effects of ELF-MFs were evaluated by morphological analysis, immunochemical analysis (MAP2, GFAP), and the developmental neuronal network activities recorded by the micro-electrode arrays (MEAs). As a result, the percentage of MAP2 positive cells and the spike frequencies were increased by 10 mT ELF-MF, and then the percentage of GFAP positive cells were reduced. However, these effects were not seen in 1 mT exposed cells. Therefore, these results suggested that the intensity of a magnetic field was important for affecting a characteristic of neuronal differentiation and a functional neuronal network property.

摘要

通过物理刺激等多种环境因素调节多能干细胞分化是组织工程中的一个重要课题。在本研究中,我们报告了极低频磁场(ELF-MFs)暴露(1 mT或10 mT,50 Hz,正弦波)对P19胚胎癌细胞(P19细胞)神经元分化过程的影响。在此,在分化诱导过程中,将ELF-MFs施加于胚状体(EBs)。神经元分化后,通过形态学分析、免疫化学分析(MAP2、GFAP)以及微电极阵列(MEA)记录的发育中神经元网络活动来评估ELF-MFs的影响。结果,10 mT的ELF-MF使MAP2阳性细胞的百分比和尖峰频率增加,随后GFAP阳性细胞的百分比降低。然而,在暴露于1 mT的细胞中未观察到这些效应。因此,这些结果表明磁场强度对于影响神经元分化特征和功能性神经元网络特性很重要。

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