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首页> 外文期刊>Toxicology mechanisms and methods >Ornithine Decarboxylase Activity in Tissues from Rats Exposed to 60 Hz Magnetic Fields;;Including Harmonic and Transient Field Characteristics
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Ornithine Decarboxylase Activity in Tissues from Rats Exposed to 60 Hz Magnetic Fields;;Including Harmonic and Transient Field Characteristics

机译:暴露于60 Hz磁场的大鼠组织中的鸟氨酸脱羧酶活性;包括谐波和瞬态场特征

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摘要

Ornithine decarboxylase (ODC) activity is used widely as a biomarker for tumor promotion in animal model systems. Several previous studies have reported increases in ODC activity in tissues of rats exposed to 60 Hz magnetic fields. The goals of this study were to confirm these findings and to determine whether ODC activity is increased in tissues of animals exposed to magnetic fields containing complex metrics. Three experiments were conducted in male F344 rats. Each study included a sham control group and a group exposed to pure continuous 60 Hz fields (0.2 mT). Additional groups included animals exposed to randomly time-varying 60 Hz fields (range of 0.02 to 0.2 mT); intermittent 60 Hz fields (2 mT) with on-off cycles ranging from 5 s to 5 min; pure continuous 180 Hz fields (2 mT); 60 Hz fields with a superimposed 3rd harmonic (total field strength, 2 mT); 60 Hz fields with superimposed third, fifth, and seventh harmonics (total field strength, 2 mT); 60 Hz fields (2 mT) with superimposed transients; and randomly time-varying 60 Hz fields (range of 0.02 to 0.2 mT) with superimposed transients. After 4 weeks of exposure (18.5 h/day), eight animals per group were euthanized within 1 h of magnetic field deactivation. Homogenates of liver, kidneys, spleen, and brain were prepared from each animal, quick-frozen, and shipped for analysis by four independent laboratories. No consistent pattern of differences in the ODC activity among experimental groups was found either within a laboratory or among laboratories. The results do not support the hypothesis that exposure to extremely low frequency magnetic fields stimulates ODC activity.
机译:鸟氨酸脱羧酶(ODC)活性被广泛用作动物模型系统中促进肿瘤的生物标志物。先前的一些研究报道了暴露于60 Hz磁场的大鼠组织中ODC活性的增加。这项研究的目的是证实这些发现,并确定暴露于含有复杂指标的磁场的动物组织中ODC活性是否增加。在雄性F344大鼠中进行了三个实验。每个研究包括假对照组和暴露于纯连续60 Hz场(0.2 mT)的组。其他组包括暴露于随机时变60 Hz场(范围为0.02至0.2 mT)的动物。间歇性60 Hz磁场(2 mT),开关周期为5 s至5 min;纯连续180 Hz场(2 mT);叠加了三次谐波的60 Hz磁场(总磁场强度2 mT); 60 Hz场,具有三次,五次和七次谐波叠加(总场强2 mT);具有叠加瞬态的60 Hz磁场(2 mT);以及随机瞬变的60 Hz场(范围为0.02到0.2 mT),具有瞬态叠加。暴露4周(每天18.5小时)后,每组8只动物在磁场失效1小时内被安乐死。从每只动物中制备肝脏,肾脏,脾脏和大脑的均质物质,速冻并运输到四个独立的实验室进行分析。在实验室内部或实验室之间,未发现实验组中ODC活性的一致差异。结果不支持以下假设:暴露于极低频磁场会刺激ODC活性。

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