Lindström E, Lindström P, Berglund A, Mild K H, Lundgren E
Department of Cell and Molecular Biology, Umeå University, Sweden.
J Cell Physiol. 1993 Aug;156(2):395-8. doi: 10.1002/jcp.1041560223.
Applied weak magnetic fields have been shown to affect cellular activity on several levels, but the mechanisms involved remain elusive. We have decided to study an early signal transduction event in the human T cell line Jurkat; oscillations of free [Ca2+]i, of the type seen by crosslinking the CD3 complex. Cells were exposed to a 50 Hz, 0.1 mT, sinusoidal magnetic field while intracellular free calcium was measured in individual cells, using fura-2 as a probe. An acute response was observed with oscillatory increases in [Ca2+]i, which subsided when the field was turned off. The effect of the magnetic field on [Ca2+]i was comparable to that achieved by an anti-CD3 monoclonal antibody.
已表明施加的弱磁场会在多个层面影响细胞活动,但其中涉及的机制仍不清楚。我们决定研究人类T细胞系Jurkat中的早期信号转导事件;即通过交联CD3复合物所观察到的那种类型的游离[Ca2+]i振荡。细胞暴露于50 Hz、0.1 mT的正弦磁场中,同时使用fura-2作为探针在单个细胞中测量细胞内游离钙。观察到[Ca2+]i呈振荡性增加的急性反应,当磁场关闭时该反应减弱。磁场对[Ca2+]i的影响与抗CD3单克隆抗体所产生的影响相当。