Brief exposure to moderate intensity static magnetic fields has been shown to produce a transient alteration in physiological function in a variety of biological systems, primarily those related to changes in intracellular Ca(2+). In the present study GH3 cells were cultured during continuous exposure to a 0.5 T field, for periods of up to 5 weeks. Following a 1-week exposure, cell growth declined by 22% and returned to control levels in 1 week. This was not statistically significant but, with a 4-week exposure, a statistically significant decline in growth of 51% was observed and return to control levels did not occur for 4 weeks. Cell diameter, on the other hand, significantly increased following 3 weeks of exposure and did not return to control levels for 3 weeks after termination of exposure. Ca(2+)-dependent changes in the dynamic reorganization of the actin cytoskeleton are suggested as the probable explanation for these observations.

译文

已显示,短暂暴露于中等强度的静态磁场会在各种生物系统中产生生理功能的瞬时改变,主要是与细胞内Ca(2) 变化有关的那些改变。在本研究中,在连续暴露于0.5 T场期间培养GH3细胞长达5周。暴露1周后,细胞生长下降22%,并在1周内恢复到对照水平。这在统计学上并不显着,但是在暴露4周的情况下,观察到51% 的生长在统计学上显着下降,并且在4周内未恢复到对照水平。另一方面,暴露3周后细胞直径显着增加,并且在暴露终止后3周内未恢复到对照水平。建议将肌动蛋白细胞骨架动态重组中的Ca(2) 依赖性变化作为这些观察结果的可能解释。

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