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首页> 外文期刊>Toxicology in vitro: an international journal published in association with BIBRA >The expression of PHOX2A, PHOX2B and of their target gene dopamine-beta-hydroxylase (DbetaH) is not modified by exposure to extremely-low-frequency electromagnetic field (ELF-EMF) in a human neuronal model.
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The expression of PHOX2A, PHOX2B and of their target gene dopamine-beta-hydroxylase (DbetaH) is not modified by exposure to extremely-low-frequency electromagnetic field (ELF-EMF) in a human neuronal model.

机译:在人的神经元模型中,暴露于极低频电磁场(ELF-EMF)不会改变PHOX2A,PHOX2B及其靶基因多巴胺-β-羟化酶(DbetaH)的表达。

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摘要

The homeodomain transcription factors PHOX2A and PHOX2B are vital for development of the autonomic nervous system. Their spatial and temporal expression at the neural crest is instrumental in determining neuronal precursor fate, and by regulating DbetaH expression, the enzyme catalysing noradrenaline synthesis from dopamine, they also play a role in determination of noradrenergic phenotype. Disturbing this finely regulated process leads to disruption of autonomic development and autonomic dysfunction syndromes such as DbetaH deficiency. As it had previously been shown that the catecholamine system is responsive to ELF-EMF, and as this has also been linked to various pathologies and to certain types of cancer, we wondered whether exposure to this type of radiation could affect the expression of PHOX2A, PHOX2B and DbetaH, also during differentiation triggered by retinoic acid. To investigate this possibility we exposed the human SH-SY5Y neuroblastoma cell line to 50 Hz power-line magnetic field at various flux densities and for various exposure times. We measured gene expression in exposed cells compared to control cells and also investigated any changes at protein level. Using our exposure protocol, we found no changes at either transcript or protein level of these important components of the autonomic nervous system and catecholaminergic system.
机译:同源域转录因子PHOX2A和PHOX2B对自主神经系统的发育至关重要。它们在神经rest处的时空表达有助于确定神经元前体的命运,并且通过调节DbetaH表达(催化多巴胺合成去甲肾上腺素的酶),它们在确定去甲肾上腺素表型中也起作用。扰乱这种精细调节的过程会导致自主神经发育和自主神经功能障碍综合症(如DbetaH缺乏症)的破坏。如先前所显示,儿茶酚胺系统对ELF-EMF有反应,并且由于它也与多种病理学和某些类型的癌症有关,我们想知道暴露于此类辐射是否会影响PHOX2A的表达, PHOX2B和DbetaH,也在视黄酸引发的分化过程中。为了研究这种可能性,我们将人类SH-SY5Y神经母细胞瘤细胞系以各种通量密度和各种暴露时间暴露于50 Hz电力线磁场。我们测量了与对照细胞相比暴露细胞中的基因表达,并研究了蛋白质水平的任何变化。使用我们的暴露方案,我们发现自主神经系统和儿茶酚胺能系统的这些重要组成部分在转录本或蛋白质水平上都没有变化。

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