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磁场与细胞凋亡:一种可能的作用机制

Magnetic fields and apoptosis: a possible mechanism.

机构信息

Department of Medical Physics, Ivrea Hospital - ASL Torino Nord-Ovest TO4, Ivrea Torino, Italy.

Department of Public Health Science, School of Medicine, University of Turin, Ivrea Torino, Italy.

出版信息

Electromagn Biol Med. 2022 Jul 3;41(3):293-303. doi: 10.1080/15368378.2022.2073547. Epub 2022 May 11.

Abstract

The potential therapeutic uses of electromagnetic fields (EMF), part of the nonionizing radiation spectrum, increase with time. Among them, those considering the potential antitumor effects exerted by the Magnetic Fields (MFs), part of the EMF entity, have gained more and more interest. A recent review on this subject reports the MFs' effect on apoptosis of tumor cells as one of the most important breakthroughs. Apoptosis is considered a key mechanism regulating the genetic stability of cells and as such is considered of fundamental importance in cancer initiation and development. According to an atomic/sub-atomic analysis, based on quantum physics, of the complexity of biological life and the role played by oxygen and its radicals in cancer biology, a possible biophysical mechanism is described. The mechanism considers the influence of MFs on apoptosis through an effect on electron spin that is able to increase reactive oxygen species (ROS) concentration. Impacting on the delicate balance between ROS production and ROS elimination in tumor cells is considered a promising cancer therapy, affecting different biological processes, such as apoptosis and metastasis. An analysis in the literature, which allows correlation between MFs exposure characteristics and their influence on apoptosis and ROS concentration, supports the validity of the mechanism.

摘要

电磁场(EMF)的潜在治疗用途属于非电离辐射谱的一部分,随着时间的推移而增加。其中,越来越多的人关注电磁场实体的磁场(MFs)对肿瘤细胞潜在的抗肿瘤作用。最近的一篇综述报告称,MFs 对肿瘤细胞凋亡的影响是最重要的突破之一。凋亡被认为是调节细胞遗传稳定性的关键机制,因此在癌症的发生和发展中被认为具有重要意义。根据基于量子物理学的对生物生命复杂性及其在癌症生物学中所扮演角色的原子/亚原子分析,描述了一种可能的生物物理机制。该机制通过对能够增加活性氧(ROS)浓度的电子自旋的影响,考虑了 MFs 对细胞凋亡的影响。影响肿瘤细胞中 ROS 产生和消除之间的微妙平衡被认为是一种有前途的癌症治疗方法,影响了不同的生物学过程,如细胞凋亡和转移。文献中的分析允许将 MFs 暴露特征与其对凋亡和 ROS 浓度的影响相关联,支持该机制的有效性。

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