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BEMER电磁场疗法通过增强活性氧生成和诱导DNA损伤降低癌细胞的放射抗性。

BEMER Electromagnetic Field Therapy Reduces Cancer Cell Radioresistance by Enhanced ROS Formation and Induced DNA Damage.

作者信息

Storch Katja, Dickreuter Ellen, Artati Anna, Adamski Jerzy, Cordes Nils

机构信息

OncoRay - National Center for Radiation Research in Oncology, Faculty of Medicine and University Hospital Carl Gustav Carus, Technische Universität Dresden, Dresden, Germany.

Helmholtz-Zentrum Dresden - Rossendorf, Institute of Radiooncology, Dresden, Germany.

出版信息

PLoS One. 2016 Dec 13;11(12):e0167931. doi: 10.1371/journal.pone.0167931. eCollection 2016.

Abstract

Each year more than 450,000 Germans are expected to be diagnosed with cancer subsequently receiving standard multimodal therapies including surgery, chemotherapy and radiotherapy. On top, molecular-targeted agents are increasingly administered. Owing to intrinsic and acquired resistance to these therapeutic approaches, both the better molecular understanding of tumor biology and the consideration of alternative and complementary therapeutic support are warranted and open up broader and novel possibilities for therapy personalization. Particularly the latter is underpinned by the increasing utilization of non-invasive complementary and alternative medicine by the population. One investigated approach is the application of low-dose electromagnetic fields (EMF) to modulate cellular processes. A particular system is the BEMER therapy as a Physical Vascular Therapy for which a normalization of the microcirculation has been demonstrated by a low-frequency, pulsed EMF pattern. Open remains whether this EMF pattern impacts on cancer cell survival upon treatment with radiotherapy, chemotherapy and the molecular-targeted agent Cetuximab inhibiting the epidermal growth factor receptor. Using more physiological, three-dimensional, matrix-based cell culture models and cancer cell lines originating from lung, head and neck, colorectal and pancreas, we show significant changes in distinct intermediates of the glycolysis and tricarboxylic acid cycle pathways and enhanced cancer cell radiosensitization associated with increased DNA double strand break numbers and higher levels of reactive oxygen species upon BEMER treatment relative to controls. Intriguingly, exposure of cells to the BEMER EMF pattern failed to result in sensitization to chemotherapy and Cetuximab. Further studies are necessary to better understand the mechanisms underlying the cellular alterations induced by the BEMER EMF pattern and to clarify the application areas for human disease.

摘要

预计每年有超过45万德国人被诊断出患有癌症,随后接受包括手术、化疗和放疗在内的标准多模式治疗。此外,分子靶向药物的使用也越来越多。由于对这些治疗方法存在内在和获得性耐药性,因此有必要更好地从分子层面理解肿瘤生物学,并考虑采用替代和补充性治疗支持,这为治疗个性化开辟了更广泛和新颖的可能性。特别是后者得到了民众对非侵入性补充和替代医学使用增加的支持。一种被研究的方法是应用低剂量电磁场(EMF)来调节细胞过程。一种特殊的系统是BEMER疗法,作为一种物理血管疗法,低频脉冲EMF模式已证明其能使微循环正常化。在用放疗、化疗以及抑制表皮生长因子受体的分子靶向药物西妥昔单抗治疗时,这种EMF模式是否会影响癌细胞存活仍不明确。我们使用更具生理性的、基于三维基质的细胞培养模型以及源自肺、头颈部、结肠直肠和胰腺的癌细胞系,结果显示,与对照组相比,BEMER治疗后糖酵解和三羧酸循环途径的不同中间产物发生了显著变化,并且癌细胞放射增敏作用增强,这与DNA双链断裂数量增加以及活性氧水平升高有关。有趣的是,将细胞暴露于BEMER EMF模式下并未导致对化疗和西妥昔单抗的增敏作用。有必要进行进一步研究,以更好地理解BEMER EMF模式诱导细胞改变的潜在机制,并阐明其在人类疾病中的应用领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6208/5154536/8a800daa90cc/pone.0167931.g001.jpg

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