ANTITUMOR EFFECT OF ELECTROMAGNETIC FIELDS AND THEIR EFFECT ON PAIN IN EXPERIMENTAL AND CLINICAL ONCOLOGY

E. Frantsiyants, E. Sheiko
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引用次数: 4

Abstract

The review examined and analyzed scientific publications on the effect of electromagnetic fields (EMF) on various sys­tems of the human body and animals with tumors, as well as on pain in the experiment and the clinic. The theoretical foundations and practical results of the use of EMF in various modulations and modes in the goals and objectives of oncology, including how to optimize the process of anesthesia and correct the vital activity of the body's functional systems with a tumor, are consecrated. Information is given on possible physicochemical effects, features, and mecha­nisms of therapeutic influence at various levels of a living organism. The ability of electromagnetic waves to transfer in­formation both within a single biosystem and at the level of a whole living organism with a tumor is shown. Studies of combined action of EMF and chemotherapy were analyzed. It has been established that there are experimental prerequisites for using this factor in order to induce changes in the permeability of the membranes of tumor cells by in­creasing the internalization of chemotherapeutic agents and, thus, enhance the antitumor effect. The role of EMF in the induction of apoptosis in tumor cells is shown. It has been shown that chemotherapy together with electromagnetic fields induces apoptosis and has an inhibitory effect on DNA synthesis in osteosarcoma cells, breast cancer, colon cancer, melanoma and other tumors. The role of magnetic fields in order to enhance the analgesic effect was investigated. The analgesic effect is due to the cessation or weakening of nerve impulses from the painful focus due to the elimination of hypoxia, the improvement of microcirculation, and the reduction of edema, it has been shown. Transcranial magnetic therapy is used as an analgesic tool in onconurology. The therapeutic anti-pain effect is associated with the stimulation of the antinociceptive system, an increase in the synthesis of natural analgesics — endorphins with their subsequent release into the cerebrospinal fluid and blood. As it has already been shown, with the increase in the intensity of pain and its duration, all indicators of the quality of life and the results of treatment of the patient deteriorate, so the search for ways to improve the antitumor effectiveness of specialized treatment and eliminate the causes that prevent their im­plementation continue to be relevant and in demand.
电磁场的抗肿瘤作用及其对肿瘤实验和临床疼痛的影响
该审查审查和分析了有关电磁场对人体和肿瘤动物的各种系统的影响的科学出版物,以及对实验和临床疼痛的影响。在肿瘤学的目标和目的中,包括如何优化麻醉过程和纠正肿瘤的身体功能系统的重要活动,在各种调制和模式下使用EMF的理论基础和实际结果是神圣的。信息给出了可能的物理化学作用,特点,和机制的治疗影响在不同水平的生物体。显示了电磁波在单个生物系统内和在带有肿瘤的整个生物体的水平上传递信息的能力。对电磁场与化疗联合作用的研究进行了分析。已经确定,使用该因子通过增加化疗药物的内化来诱导肿瘤细胞膜通透性的变化,从而增强抗肿瘤效果,具有实验前提条件。显示了电磁场在诱导肿瘤细胞凋亡中的作用。研究表明,化疗联合电磁场诱导骨肉瘤细胞、乳腺癌、结肠癌、黑色素瘤等肿瘤细胞凋亡,并对DNA合成有抑制作用。研究了磁场在增强镇痛作用中的作用。镇痛作用是由于缺氧的消除、微循环的改善和水肿的减少而使疼痛病灶的神经冲动停止或减弱,这已被证明。经颅磁疗是一种用于肿瘤治疗的镇痛手段。治疗性镇痛作用与抗痛觉系统的刺激、天然镇痛药内啡肽合成的增加及其随后释放到脑脊液和血液中有关。正如已经显示的那样,随着疼痛强度和持续时间的增加,患者的生活质量和治疗结果的所有指标都会恶化,因此寻找提高专门治疗的抗肿瘤有效性并消除阻止其实施的原因的方法仍然是相关的和需要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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