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Effects of Low-intensity Nanosecond Pulsed Electromagnetic Field on PC3 Cells

机译:低强度纳秒脉冲电磁场​​对PC3细胞的影响

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The effects of the electromagnetic field on organism have been the issue concerned by environmental, electrical, biological, medical and related subjects. From the perspective of the dielectric properties of organisms, the pulsed electromagnetic field may cause a stronger influence on organism. A nanosecond pulsed generator was established to generate the electromagnetic circumstances. The main parameters of nanosecond electromagnetic field are that the rise time is less than 15ns, the duration time is adjustable and the magnetic induction intensity reaches 6mT. The prostate cancer cell (PC3) and human fibroblast cells (IMR-90) are taken as the researched samples. The nanosecond electromagnetic field with different intensity and different times were imposed on the cells, and the cellular activity, mitochondrial membrane potential and reactive oxygen species (ROS) were tested. The results showed that when the duration time is 50ns and 50 times per second for 6h, the cellular activity of PC3 increased along with the increase of the magnetic field intensity, 78% at 0.14mT whereas 106% at 1mT. The mitochondrial membrane potential of PC3 decreased along with the increase of the magnetic field intensity, which is 40% higher than that of control group when the magnetic field intensity is 0.14mT. In the case of reactive oxygen species test, the date showed that the ROS is 80% higher than the control group. However the electromagnetic field with the same parameters helps IMR-90 to withstand the injury caused by room temperature. These experimental results demonstrate that the effects of nanosecond pulsed electromagnetic fields on cells have regular pattern and vary with different parameters. This research may contribute to studying the mechanism of the biological effects on the basis of the biological dielectric model.
机译:电磁场对生物体的影响一直是环境,电气,生物,医学和相关科目的问题。从生物体的介电性质的角度来看,脉冲电磁场​​可能对生物体产生更强的影响。建立纳秒脉冲发电机以产生电磁环境。纳秒电磁场的主要参数是上升时间小于15ns,持续时间可调,磁感应强度达到6mt。将前列腺癌细胞(PC3)和人成纤维细胞(IMR-90)作为研究的样品进行。对细胞施加不同强度和不同时间的纳秒电磁场,并测试细胞活性,线粒体膜电位和反应性氧物质(ROS)。结果表明,当持续时间为50ns并且每秒50次6小时时,PC3的细胞活性随着磁场强度的增加而增加,78%在0.14mt,而106%在1mt。随着磁场强度的增加,PC3的线粒体膜电位随着磁场强度为0.14MT的磁场强度的增加而降低,这比对照组的40%高。在反应性氧物种测试的情况下,日期显示ROS比对照组高80%。然而,具有相同参数的电磁场有助于IMR-90能够承受由室温引起的损伤。这些实验结果表明,纳秒脉冲电磁场​​对细胞上的影响具有规则的图案,并随不同的参数而变化。该研究可能有助于根据生物介电模型的基础研究生物学效应的机制。

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