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首页> 外文期刊>Radiation Research: Official Organ of the Radiation Research Society >SHORT EXPOSURES TO 60 HZ MAGNETIC FIELDS DO NOT ALTER MYC EXPRESSION IN HL60 OR DAUDI CELLS
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SHORT EXPOSURES TO 60 HZ MAGNETIC FIELDS DO NOT ALTER MYC EXPRESSION IN HL60 OR DAUDI CELLS

机译:在60 HZ磁场中短时间照射不会改变HL60或DAUDI细胞中的MYC表达

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摘要

Analysis of changes in gene expression induced by 60 Hz magnetic fields has been considered to support an association between exposure to magnetic fields and cancer risk. Several reports have indicated that these fields rapidly activate many genes in mammalian cells. However, previous studies in this area have not provided sufficient information to support the conclusions drawn. To clarify this controversial research, we have attempted to validate, under rigorously controlled conditions, key experiments on induction of gene expression by magnetic fields. An extensive series of experiments, incorporating critical improvements in experimental design, most notably blind exposures and internal standards, was performed with human HL60 and Daudi cells. Exposure conditions covered a range of flux densities (5.7 mu T to 10 mT) and times (20-60 min). No alteration in the human MYC gene, commonly referred to as c-myc, or beta-actin steady-state mRNA levels was observed. The lack of an effect was not attributable to exposure geometry, timing of RNA preparation, or serum lot and concentration. To eliminate any remaining variables, exact replication was performed in one of the laboratories previously reporting gene expression effects; again, no evidence for altered MYC expression was found. Finally, differential display PCR indicated that extremely low-frequency magnetic field-induced changes in gene expression were not prevalent. (C) 1995 by Radiation Research Society [References: 37]
机译:已考虑分析由60 Hz磁场引起的基因表达变化,以支持暴露于磁场和癌症风险之间的关联。几篇报道表明,这些领域迅速激活了哺乳动物细胞中的许多基因。但是,该领域的先前研究尚未提供足够的信息来支持得出的结论。为了澄清这一有争议的研究,我们试图在严格控制的条件下验证通过磁场诱导基因表达的关键实验。用人HL60和Daudi细胞进行了一系列广泛的实验,结合了实验设计的关键改进,尤其是盲曝光和内标。暴露条件涵盖了一系列的通量密度(5.7μT至10 mT)和时间(20-60分钟)。没有观察到通常称为c-myc或β-肌动蛋白稳态mRNA水平的人类MYC基因的改变。缺乏影响并非归因于接触几何形状,RNA制备时间或血清批次和浓度。为了消除任何剩余的变量,在以前报告基因表达作用的实验室之一中进行了精确复制。再次,没有发现改变MYC表达的证据。最后,差异显示PCR表明,极低频磁场诱导的基因表达变化并不普遍。 (C)1995年,由放射研究学会[参考:37]

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