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首页> 外文期刊>Biochimica et biophysica acta: international journal of biochemistry and biophysics >Extremely low frequency pulsed DC electric fields promote neutrophil extension, metabolic resonance and DNA damage when phase-matched with metabolic oscillators.
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Extremely low frequency pulsed DC electric fields promote neutrophil extension, metabolic resonance and DNA damage when phase-matched with metabolic oscillators.

机译:与代谢振荡器相位匹配时,极低频的脉冲直流电场会促进中性粒细胞扩展,代谢共振和DNA损伤。

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Application of extremely low frequency pulsed DC electric fields that are frequency- and phase-matched with endogenous metabolic oscillations leads to greatly exaggerated neutrophil extension and metabolic resonance wherein oscillatory NAD(P)H amplitudes are increased. In the presence of a resonant field, migrating cell length grows from 10 to approximately 40 microm, as does the overall length of microfilament assemblies. In contrast, cells stop locomotion and become spherical when exposed to phase-mismatched fields. Although cellular effects were not found to be dependent on electrode type and buffer, they were sensitive to temporal constraints (phase and pulse length) and cell surface charge. We suggest an electromechanical coupling hypothesis wherein applied electric fields and cytoskeletal polymerization forces act together to overcome the surface/cortical tension of neutrophils, thus promoting net cytoskeletal assembly and heightened metabolic amplitudes. Metabolic resonance enhances reactive oxygen metabolic production by neutrophils. Furthermore, cellular DNA damage was observed after prolonged metabolic resonance using both single cell gel electrophoresis ('comet' assay) and 3'-OH DNA labeling using terminal deoxynucleotidyl transferase. These results provide insights into transmembrane signal processing and cell interactions with weak electric fields.
机译:频率和相位与内源性代谢振荡频率匹配和相位匹配的极低频脉冲直流电场的应用会导致嗜中性粒细胞扩展和代谢共振大大夸大,其中振荡NAD(P)H振幅会增加。在存在共振场的情况下,迁移细胞的长度从10微米增长到大约40微米,微丝组件的总长度也一样。相反,当暴露于相位不​​匹配的场时,细胞会停止运动并变成球形。尽管未发现细胞效应取决于电极类型和缓冲液,但它们对时间限制(相位和脉冲长度)和细胞表面电荷敏感。我们提出了一种机电耦合假说,其中施加的电场和细胞骨架聚合力共同作用以克服嗜中性粒细胞的表面/皮质张力,从而促进净细胞骨架组装和新陈代谢幅度的增加。代谢共振增强了中性粒细胞的活性氧代谢。此外,使用单细胞凝胶电泳(“彗星”测定)和使用末端脱氧核苷酸转移酶进行3'-OH DNA标记,在延长的代谢共振后观察到细胞DNA损伤。这些结果提供了跨膜信号处理和弱电场下细胞相互作用的见解。

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