Protective Effect of Qi-Shield on the Regeneration of Cultured Connective Tissue Fibroblasts after Mobile Phone Radiation – A Study Using Continuous Monitoring by Video Micrography

P. Dartsch
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Abstract

Background: Mobile phones are high performance devices that consume a lot of energy and also generate heat in form of microwaves. This heat is mainly created by the high frequency electromagnetic fields that transmit voice or data in mobile communications. Moreover, mobile phones also possess non-thermal radiation which has been shown to induce oxidative stress and molecular and cellular damage. Material and methods: In this study not only the dynamic process of cellular damage following oxidative stress from the radiation of an actively transmitting mobile phone was investigated, but also a device named Qi-Shield, which claims to protect from the adverse effects of a mobile phone & WLAN radiation at realistic conditions. The regeneration process of cultured connective tissue cells (cell line L-929) which results in the closure of an artificial cell-free area by cell proliferation and migration, was used for continuous video micrography evaluation for more than 60 hours. Three different experimental approaches were conducted: (1) Regeneration of untreated control cells; (2) Regeneration of unprotected cells after 4 hours of mobile phone radiation; (3) Regeneration of Qi-Shield protected cells after 4 hours of mobile phone radiation. For definite time points during the regeneration process the residual cell-free area was examined by a specialized software with artificial intelligence. Four independent experiments over a period of four weeks were conducted. Results and conclusions: A quite consistent cell reaction for the three different experimental approaches was observed in all experiments. The unexposed control cells showed a nearly linear reduction of the cell-free area with a time point of closure at 50 hours. The unprotected cells after mobile phone exposure also showed a roughly linear reduction of the cell-free area, but its magnitude was significantly lower and did not result in any closure of the cell-free area. The cells protected by Qi-Shield behaved very close to the unexposed cells, although a closure of the cell-free area within 60 hours of regeneration was only observed in two of four experiments. When calculating a relation between the values at 50 hours of regeneration by setting the value for the reduction of unexposed control cells as 100 %, a reduction value of 22 % was obtained for the unprotected cells, but 82.7 % for the Qi-Shield protected cells. Therefore, Qi-Shield was able to protect cells from the adverse effects of mobile phone & WLAN radiation by more than 82 %. The results clearly demonstrate the different dynamic reactions of connective tissue cells after mobile phone radiation and the successful use of Qi-Shield to reduce adverse cellular effects. Keywords: Mobile phone radiation; Oxidative stress; Fibroblast; L-929; Cell regeneration; Cell culture
气盾对手机辐射后结缔组织成纤维细胞再生的保护作用——视频显微连续监测研究
背景:手机是一种高性能的设备,它消耗大量的能量,也会以微波的形式产生热量。这种热量主要是由移动通信中传输语音或数据的高频电磁场产生的。此外,手机还具有非热辐射,这已被证明会引起氧化应激和分子和细胞损伤。材料和方法:本研究不仅研究了主动发射手机辐射氧化应激后细胞损伤的动态过程,而且研究了一种名为Qi-Shield的装置,该装置声称可以在现实条件下保护手机和WLAN辐射的不良影响。利用培养结缔组织细胞(L-929细胞系)的再生过程,通过细胞增殖和迁移关闭人工无细胞区,进行60小时以上的连续视频显微评价。采用三种不同的实验方法:(1)未经处理的对照细胞再生;(2)手机辐射4小时后未受保护的细胞再生;(3)手机辐射4小时后Qi-Shield保护细胞的再生。在再生过程的特定时间点上,用专门的人工智能软件检测剩余无细胞面积。在四周的时间里进行了四个独立的实验。结果和结论:三种不同的实验方法在所有实验中都观察到相当一致的细胞反应。未暴露的对照细胞显示,在50小时关闭的时间点上,无细胞面积几乎呈线性减少。暴露于手机后未受保护的细胞也显示出无细胞面积的大致线性减少,但其幅度明显较低,并且没有导致无细胞区域的任何关闭。受Qi-Shield保护的细胞与未暴露的细胞表现非常接近,尽管在四个实验中只有两个实验在再生后60小时内观察到无细胞区域的关闭。将未暴露的对照细胞的还原值设为100%,计算再生50小时时这些值之间的关系时,未受保护的细胞的还原值为22%,而Qi-Shield保护的细胞的还原值为82.7%。因此,Qi-Shield能够保护细胞免受手机和无线局域网辐射的不利影响超过82%。结果清楚地证明了手机辐射后结缔组织细胞的不同动态反应,以及成功使用气盾来减少不良细胞效应。关键词:手机辐射;氧化应激;成纤维细胞;l - 929;细胞再生;细胞培养
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