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Targeted treatment of cancer with radiofrequency electromagnetic fields amplitude-modulated at tumor-specific frequencies

机译:通过在肿瘤特定频率上调幅的射频电磁场靶向治疗癌症

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摘要

In the past century, there have been many attempts to treat cancer with low levels of electric and magnetic fields. We have developed noninvasive biofeedback examination devices and techniques and discovered that patients with the same tumor type exhibit biofeedback responses to the same, precise frequencies. Intrabuccal administration of 27.12 MHz radiofrequency (RF) electromagnetic fields (EMF), which are amplitude-modulated at tumor-specific frequencies, results in long-term objective responses in patients with cancer and is not associated with any significant adverse effects. Intrabuccal administration allows for therapeutic delivery of very low and safe levels of EMF throughout the body as exemplified by responses observed in the femur, liver, adrenal glands, and lungs. In vitro studies have demonstrated that tumor-specific frequencies identified in patients with various forms of cancer are capable of blocking the growth of tumor cells in a tissue- and tumor-specific fashion. Current experimental evidence suggests that tumor-specific modulation frequencies regulate the expression of genes involved in migration and invasion and disrupt the mitotic spindle. This novel targeted treatment approach is emerging as an appealing therapeutic option for patients with advanced cancer given its excellent tolerability. Dissection of the molecular mechanisms accounting for the anti-cancer effects of tumor-specific modulation frequencies is likely to lead to the discovery of novel pathways in cancer.
机译:在过去的世纪中,已经进行了许多尝试以低水平的电场和磁场来治疗癌症。我们已经开发出了无创生物反馈检查设备和技术,并发现具有相同肿瘤类型的患者对相同,精确的频率表现出生物反馈反应。颊内给予27.12 MHz射频(RF)电磁场(EMF),该电磁场在肿瘤特定的频率上进行幅度调制,导致癌症患者获得长期的客观反应,并且与任何重大的不良反应无关。颊内给药可在整个身体内实现非常低和安全水平的EMF的治疗性输送,如在股骨,肝,肾上腺和肺中观察到的反应所示。体外研究表明,在各种形式的癌症患者中鉴定出的肿瘤特异性频率能够以组织特异性和肿瘤特异性方式阻断肿瘤细胞的生长。当前的实验证据表明,肿瘤特异性调节频率调节着与迁移和侵袭有关的基因的表达,并破坏了有丝分裂纺锤体。鉴于其优异的耐受性,这种新颖的靶向治疗方法正在成为晚期癌症患者的一种有吸引力的治疗选择。解剖解释肿瘤特异性调节频率的抗癌作用的分子机制很可能导致发现癌症的新途径。

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