首页> 美国卫生研究院文献>other >Extremely Low-Frequency Electromagnetic Fields Promote In Vitro Neuronal Differentiation and Neurite Outgrowth of Embryonic Neural Stem Cells via Up-Regulating TRPC1
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Extremely Low-Frequency Electromagnetic Fields Promote In Vitro Neuronal Differentiation and Neurite Outgrowth of Embryonic Neural Stem Cells via Up-Regulating TRPC1

机译:极低频电磁场通过上调TRPC1促进胚胎神经干细胞的体外神经元分化和神经突生长。

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摘要

Exposure to extremely low-frequency electromagnetic fields (ELF-EMFs) can enhance hippocampal neurogenesis in adult mice. However, little is focused on the effects of ELF-EMFs on embryonic neurogenesis. Here, we studied the potential effects of ELF-EMFs on embryonic neural stem cells (eNSCs). We exposed eNSCs to ELF-EMF (50 Hz, 1 mT) for 1, 2, and 3 days with 4 hours per day. We found that eNSC proliferation and maintenance were significantly enhanced after ELF-EMF exposure in proliferation medium. ELF-EMF exposure increased the ratio of differentiated neurons and promoted the neurite outgrowth of eNSC-derived neurons without influencing astrocyes differentiation and the cell apoptosis. In addition, the expression of the proneural genes, NeuroD and Ngn1, which are crucial for neuronal differentiation and neurite outgrowth, was increased after ELF-EMF exposure. Moreover, the expression of transient receptor potential canonical 1 (TRPC1) was significantly up-regulated accompanied by increased the peak amplitude of intracellular calcium level induced by ELF-EMF. Furthermore, silencing TRPC1 expression eliminated the up-regulation of the proneural genes and the promotion of neuronal differentiation and neurite outgrowth induced by ELF-EMF. These results suggest that ELF-EMF exposure promotes the neuronal differentiation and neurite outgrowth of eNSCs via up-regulation the expression of TRPC1 and proneural genes (NeuroD and Ngn1). These findings also provide new insights in understanding the effects of ELF-EMF exposure on embryonic brain development.
机译:暴露于极低频电磁场(ELF-EMF)可以增强成年小鼠海马神经发生。但是,很少关注ELF-EMF对胚胎神经发生的影响。在这里,我们研究了ELF-EMF对胚胎神经干细胞(eNSC)的潜在影响。我们将eNSCs暴露于ELF-EMF(50 Hz,1 mT)1、2和3天,每天4小时。我们发现,在增殖培养基中暴露于ELF-EMF后,eNSC的增殖和维持显着增强。 ELF-EMF暴露可增加分化神经元的比例并促进eNSC衍生神经元的神经突向外生长,而不会影响星形细胞的分化和细胞凋亡。此外,ELF-EMF暴露后,神经元分化和神经突向外生长至关重要的前神经基因NeuroD和Ngn1的表达增加。此外,瞬时受体电位规范1(TRPC1)的表达被显着上调,并伴随着ELF-EMF诱导的细胞内钙水平峰值的增加。此外,沉默的TRPC1表达消除了前神经基因的上调,并促进了ELF-EMF诱导的神经元分化和神经突生长。这些结果表明,ELF-EMF暴露可通过上调TRPC1和前体基因(NeuroD和Ngn1)的表达来促进eNSC的神经元分化和神经突生长。这些发现也为了解ELF-EMF暴露对胚胎脑发育的影响提供了新的见解。

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