Costa Frederico P, Wiedenmann Bertram, Schöll Eckehard, Tuszynski Jack
Oncology Department, Hospital Sírio Libanês, São Paulo, Brazil.
Department of Hepatology and Gastroenterology, Berlin, Germany.
Front Netw Physiol. 2024 Dec 10;4:1483401. doi: 10.3389/fnetp.2024.1483401. eCollection 2024.
A steadily increasing number of publications support the concept of physiological networks, and how cellular bioelectrical properties drive cell proliferation and cell synchronization. All cells, especially cancer cells, are known to possess characteristic electrical properties critical for physiological behavior, with major differences between normal and cancer cell counterparts. This opportunity can be explored as a novel treatment modality in Oncology. Cancer cells exhibit autonomous oscillations, deviating from normal rhythms. In this context, a shift from a static view of cellular processes is required for a better understanding of the dynamic connections between cellular metabolism, gene expression, cell signaling and membrane polarization as states in constant flux in realistic human models. In oncology, radiofrequency electromagnetic fields have produced sustained responses and improved quality of life in cancer patients with minimal side effects. This review aims to show how non-thermal systemic radiofrequency electromagnetic fields leads to promising therapeutic responses at cellular and tissue levels in humans, supporting this newly emerging cancer treatment modality with early favorable clinical experience specifically in advanced cancer.
越来越多的出版物支持生理网络的概念,以及细胞生物电特性如何驱动细胞增殖和细胞同步化。众所周知,所有细胞,尤其是癌细胞,都具有对生理行为至关重要的特征性电特性,正常细胞与癌细胞之间存在重大差异。这一契机可作为肿瘤学中的一种新型治疗方式加以探索。癌细胞表现出自主振荡,偏离正常节律。在这种情况下,需要从细胞过程的静态观点转变,以便更好地理解细胞代谢、基因表达、细胞信号传导和膜极化之间的动态联系,这些都是现实人类模型中不断变化的状态。在肿瘤学中,射频电磁场已在癌症患者中产生了持续反应并改善了生活质量,且副作用最小。本综述旨在展示非热全身射频电磁场如何在人体的细胞和组织水平上产生有前景的治疗反应,以早期良好的临床经验支持这种新兴的癌症治疗方式,特别是在晚期癌症中。