Usselman Robert J, Hill Iain, Singel David J, Martino Carlos F
Electromagnetics Division, National Institute of Standards and Technology, Boulder, Colorado, United States of America.
Department of Mechanical Engineering, University of Nevada Reno, Reno, Nevada, United States of America.
PLoS One. 2014 Mar 28;9(3):e93065. doi: 10.1371/journal.pone.0093065. eCollection 2014.
The effects of weak magnetic fields on the biological production of reactive oxygen species (ROS) from intracellular superoxide (O2•-) and extracellular hydrogen peroxide (H2O2) were investigated in vitro with rat pulmonary arterial smooth muscle cells (rPASMC). A decrease in O2•- and an increase in H2O2 concentrations were observed in the presence of a 7 MHz radio frequency (RF) at 10 μTRMS and static 45 μT magnetic fields. We propose that O2•- and H2O2 production in some metabolic processes occur through singlet-triplet modulation of semiquinone flavin (FADH•) enzymes and O2•- spin-correlated radical pairs. Spin-radical pair products are modulated by the 7 MHz RF magnetic fields that presumably decouple flavin hyperfine interactions during spin coherence. RF flavin hyperfine decoupling results in an increase of H2O2 singlet state products, which creates cellular oxidative stress and acts as a secondary messenger that affects cellular proliferation. This study demonstrates the interplay between O2•- and H2O2 production when influenced by RF magnetic fields and underscores the subtle effects of low-frequency magnetic fields on oxidative metabolism, ROS signaling, and cellular growth.
在体外利用大鼠肺动脉平滑肌细胞(rPASMC)研究了弱磁场对细胞内超氧化物(O2•-)和细胞外过氧化氢(H2O2)产生活性氧(ROS)的生物学效应。在10 μTRMS的7 MHz射频(RF)和45 μT静磁场存在的情况下,观察到O2•-减少,H2O2浓度增加。我们提出,在某些代谢过程中,O2•-和H2O2的产生是通过半醌黄素(FADH•)酶和O2•-自旋相关自由基对的单重态-三重态调制实现的。自旋自由基对产物受到7 MHz RF磁场的调制,该磁场可能在自旋相干期间解耦黄素超精细相互作用。RF黄素超精细解耦导致H2O2单重态产物增加,从而产生细胞氧化应激,并作为影响细胞增殖的第二信使。本研究证明了在RF磁场影响下O2•-和H2O2产生之间的相互作用,并强调了低频磁场对氧化代谢、ROS信号传导和细胞生长的微妙影响。