Roman Adam, Zyss Tomasz, Nalepa Irena
Laboratory of Intracellular Signalling, Department of Biochemistry, Institute of Pharmacology, Polish Academy of Sciences, 31-343 Kraków, Poland.
Bioelectromagnetics. 2005 Apr;26(3):201-6. doi: 10.1002/bem.20066.
We aimed to find out how the exposure of isolated lymphocytes to a pulsed magnetic field (MF) affected their in vitro proliferative response to mitogenic stimulation. Cells were exposed to MF of various intensities (0.3, 0.6, and 1.2 T) at a constant frequency of 30 Hz, for a period of 60, 180, and 330 s. Then, the proliferative response of splenocytes was induced by optimal concentrations of concanavalin A (Con A; mitogenic toward T cells), bacterial lipopolysaccharide (LPS; mitogenic toward B cells), or pokeweed mitogen (PWM; mitogenic toward both populations). We found that the exposure of lymphocytes to the MF profoundly inhibited their proliferative response to mitogens. The suppressive action of the MF on B and T cell proliferation was intensified when a cooperative response of those two lymphocyte populations was simultaneously induced by PWM. The inhibitory effect of MF depended on the exposure time and MF intensity. Prolonged exposure and/or a stronger intensity of the MF weakened its inhibitory influence on the response of lymphocyte to mitogenic stimulation. The data show that an exposure to MF may influence the activity of lymphocytes in their response to mitogenic stimuli.
我们旨在探究将分离的淋巴细胞暴露于脉冲磁场(MF)如何影响其对促有丝分裂刺激的体外增殖反应。细胞在30 Hz的恒定频率下,暴露于各种强度(0.3、0.6和1.2 T)的MF中,持续60、180和330秒。然后,通过最佳浓度的伴刀豆球蛋白A(Con A;对T细胞有促有丝分裂作用)、细菌脂多糖(LPS;对B细胞有促有丝分裂作用)或商陆有丝分裂原(PWM;对两种细胞群体均有促有丝分裂作用)诱导脾细胞的增殖反应。我们发现,淋巴细胞暴露于MF会显著抑制其对促有丝分裂原的增殖反应。当PWM同时诱导这两种淋巴细胞群体的协同反应时,MF对B细胞和T细胞增殖的抑制作用增强。MF的抑制作用取决于暴露时间和MF强度。延长暴露时间和/或增加MF强度会减弱其对淋巴细胞对促有丝分裂刺激反应的抑制影响。数据表明,暴露于MF可能会影响淋巴细胞对促有丝分裂刺激的反应活性。