首页> 美国卫生研究院文献>BioMed Research International >Alterations in Adenylate Kinase Activity in Human PBMCs after In Vitro Exposure to Electromagnetic Field: Comparison between Extremely Low Frequency Electromagnetic Field (ELF) and Therapeutic Application of a Musically Modulated Electromagnetic Field (TAMMEF)
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Alterations in Adenylate Kinase Activity in Human PBMCs after In Vitro Exposure to Electromagnetic Field: Comparison between Extremely Low Frequency Electromagnetic Field (ELF) and Therapeutic Application of a Musically Modulated Electromagnetic Field (TAMMEF)

机译:体外暴露于电磁场后人PBMC中腺苷酸激酶活性的变化:极低频电磁场(ELF)与音乐调制电磁场(TAMMEF)的治疗应用之间的比较

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摘要

This study investigated the effects of electromagnetic fields on enzymes involved in purine metabolism in human peripheral blood mononuclear cells in vitro. Cells were obtained from 20 volunteers. We tested both low-energy, extremely low frequency (ELF; 100-Hz) electromagnetic fields and the Therapeutic Application of Musically Modulated Electromagnetic Fields (TAMMEFs); the latter is characterized by variable frequencies, intensities, and wave shapes. Adenylate kinase activity was increased after ELF field exposure but decreased slightly after TAMMEF exposure. Neither of the two electromagnetic field affected the activities of the purine metabolism enzymes ecto-5′-nucleotidase, adenosine deaminase, and adenosine kinase. We concluded that ELF fields may influence cellular electrical charge stability; stimulation of adenylate kinase activity could restore the cell to a state of equilibrium. In contrast, TAMMEF fields may be useful for maintaining and regulating the cellular electrical charge.
机译:这项研究调查了电磁场对人外周血单个核细胞中嘌呤代谢相关酶的影响。细胞来自20名志愿者。我们测试了低能量,极低频(ELF; 100Hz)电磁场和音乐调制电磁场(TAMMEF)的治疗应用;后者的特点是频率,强度和波形可变。 ELF场暴露后,腺苷酸激酶活性增加,而TAMMEF暴露后,腺苷酸激酶活性略有下降。这两个电磁场均未影响嘌呤代谢酶ecto-5'-核苷酸酶,腺苷脱氨酶和腺苷激酶的活性。我们得出的结论是,ELF场可能会影响细胞电荷的稳定性。刺激腺苷酸激酶活性可以使细胞恢复到平衡状态。相反,TAMMEF场可用于维持和调节细胞电荷。

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