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50 Hz Extremely Low Frequency Electromagnetic Fields Enhance Protein Carbonyl Groups Content in Cancer Cells: Effects on Proteasomal Systems

机译:50 Hz的极低频电磁场增强癌细胞中蛋白质羰基的含量:对蛋白酶体系统的影响

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摘要

Electromagnetic fields are an assessed cause of prolonging free radicals lifespan. This study was carried out to investigate the influence of extremely low frequency electromagnetic fields on protein oxidation and on the 20S proteasome functionality, the complex responsible for the degradation of oxidized proteins. Caco 2 cells were exposed, for 24–72 hours, to 1 mT, 50 Hz electromagnetic fields. The treatment induced a time-dependent increase both in cell growth and in protein oxidation, more evident in the presence of TPA, while no changes in cell viability were detected. Exposing the cells to 50 Hz electromagnetic fields caused a global activation of the 20S proteasome catalytic components, particularly evident at 72 hours exposure and in the presence of TPA. The finding that EGCG, a natural antioxidant compound, counteracted the field-related pro-oxidant effects demonstrates that the increased proteasome activity was due to an enhancement in intracellular free radicals.
机译:电磁场是延长自由基寿命的估计原因。进行这项研究的目的是研究极低频电磁场对蛋白质氧化和20S蛋白酶体功能的影响,该复合物是负责氧化蛋白质降解的复合物。将Caco 2细胞暴露于1 mT,50 Hz电磁场中24-72小时。该处理诱导了细胞生长和蛋白质氧化的时间依赖性增加,这在TPA存在下更为明显,而未检测到细胞活力的变化。将细胞置于50 Hz电磁场中会引起20S蛋白酶体催化组分的整体活化,这在暴露72小时和TPA存在下尤其明显。天然抗氧化剂EGCG抵消了与田间有关的促氧化剂作用的发现表明,蛋白酶体活性的提高是由于细胞内自由基的增强所致。

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