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复杂光与磁脉冲的时间耦合对黑色素瘤细胞增殖和涡虫再生的协同相互作用。

Synergistic interactions between temporal coupling of complex light and magnetic pulses upon melanoma cell proliferation and planarian regeneration.

作者信息

Murugan Nirosha J, Karbowski Lukasz M, Persinger Michael A

机构信息

a Biomolecular Sciences Program, Department of Behavioural Neuroscience , Laurentian University , Sudbury , Canada.

出版信息

Electromagn Biol Med. 2017;36(2):141-148. doi: 10.1080/15368378.2016.1202838. Epub 2016 Jul 27.

Abstract

Synergisms between a physiologically patterned magnetic field that is known to enhance planarian growth and suppress proliferation of malignant cells in culture and three light emitting diode (LED) generated visible wavelengths (blue, green, red) upon planarian regeneration and melanoma cell numbers were discerned. Five days of hourly exposures to either a physiologically patterned (2.5-5.0 μT) magnetic field, one of three wavelengths (3 kLux) or both treatments simultaneously indicated that red light (680 nm), blue light (470 nm) or the magnetic field significantly facilitated regeneration of planarian compared to sham field exposed planarian. Presentation of both light and magnetic field conditions enhanced the effect. Whereas the blue and red light diminished the growth of malignant (melanoma) cells, the effect was not as large as that produced by the magnetic field. Only the paired presentation of the blue light and magnetic field enhanced the suppression. On the other hand, the changes following green light (540 nm) exposure did not differ from the control condition and green light presented with the magnetic field eliminated its effects for both the planarian and melanoma cells. These results indicate specific colors affect positive adaptation that is similar to weak, physiologically patterned frequency modulated (8-24 Hz) magnetic fields and that the two forms of energy can synergistically summate or cancel.

摘要

已知能促进涡虫生长并抑制培养中恶性细胞增殖的生理模式磁场,与三种发光二极管(LED)产生的可见光波长(蓝色、绿色、红色)对涡虫再生和黑色素瘤细胞数量的影响之间的协同作用被识别出来。每小时暴露于生理模式(2.5 - 5.0 μT)磁场、三种波长之一(3 kLux)或两种处理同时进行五天,结果表明,与假磁场暴露的涡虫相比,红光(680 nm)、蓝光(470 nm)或磁场显著促进了涡虫的再生。光和磁场条件同时存在增强了这种效果。虽然蓝光和红光减少了恶性(黑色素瘤)细胞的生长,但其效果不如磁场产生的效果大。只有蓝光和磁场的配对呈现增强了抑制作用。另一方面,绿光(540 nm)暴露后的变化与对照条件没有差异,并且绿光与磁场同时呈现消除了其对涡虫和黑色素瘤细胞的影响。这些结果表明特定颜色影响类似于弱的、生理模式的调频(8 - 24 Hz)磁场的正向适应,并且这两种能量形式可以协同叠加或抵消。

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