Physical Aspects of Chemical Carcinogenesis

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Abstract

This study investigated the effects of chemical carcinogenesis induced by 7, 12-dimethylbenz (α) anthracene (DMBA) in mice. The respiratory activity of isolated mitochondria in mouse livers was investigated at various times after the subcutaneous administration of DMBA. Our findings indicated that DMBA derivatives did not exhibit damaging effects on mitochondrial membranes. On the contrary, they showed a stimulating effect on the phosphorylation process compared with the control. This paper discusses the possible role of coherent electromagnetic radiation in biological systems. Additionally, data on the non-chemical interactions between isolated mitochondria and the material (plexiglass and quartz) of the incubation cells were considered. Carcinogenesis was previously considered an exclusive process of biochemical and genetic disorders. However, recent studies have increasingly focused on the physical aspects of carcinogenesis, such as the influence of various wavelengths of electromagnetic radiation on biological systems, the special energy organization of the intracellular space associated with the architectonics of mitochondria and microtubules, and the generation of coherent electromagnetic waves. It was assumed that the biological features of the malignant cells were due to the violation of the electrodynamic parameters of the intracellular space, and the initiating factor was the intrinsic emission of carcinogenic substances. The results of this study indicated that non-chemical factors influenced the mitochondrial poly-enzyme system and confirmed the importance of the non-chemical effect of a carcinogen on bio-objects by examining respiration and phosphorylation of isolated mouse liver mitochondria at various times after the subcutaneous injection of DMBA.
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化学致癌的物理方面
本研究探讨了7,12 -二甲基苯(α)蒽(DMBA)对小鼠的化学致癌作用。皮下注射DMBA后,在不同时间观察小鼠肝脏中分离线粒体的呼吸活性。我们的研究结果表明,DMBA衍生物对线粒体膜没有破坏性影响。相反,与对照组相比,它们对磷酸化过程表现出刺激作用。本文讨论了相干电磁辐射在生物系统中的可能作用。此外,还考虑了分离线粒体与孵育细胞的材料(有机玻璃和石英)之间的非化学相互作用的数据。癌变以前被认为是生化和遗传疾病的唯一过程。然而,最近的研究越来越多地集中在癌变的物理方面,如不同波长的电磁辐射对生物系统的影响,与线粒体和微管结构相关的细胞内空间的特殊能量组织,以及相干电磁波的产生。假设恶性细胞的生物学特征是由于细胞内空间的电动力学参数被破坏,致癌物质的内在释放是引发因素。本研究结果表明,非化学因素影响线粒体多酶系统,并通过皮下注射DMBA后不同时间对离体小鼠肝脏线粒体的呼吸和磷酸化的检测,证实了致癌物非化学作用的重要性。
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来源期刊
Journal of Electrical and Electronics Engineering
Journal of Electrical and Electronics Engineering Engineering-Electrical and Electronic Engineering
CiteScore
0.90
自引率
0.00%
发文量
0
审稿时长
16 weeks
期刊介绍: Journal of Electrical and Electronics Engineering is a scientific interdisciplinary, application-oriented publication that offer to the researchers and to the PhD students the possibility to disseminate their novel and original scientific and research contributions in the field of electrical and electronics engineering. The articles are reviewed by professionals and the selection of the papers is based only on the quality of their content and following the next criteria: the papers presents the research results of the authors, the papers / the content of the papers have not been submitted or published elsewhere, the paper must be written in English, as well as the fact that the papers should include in the reference list papers already published in recent years in the Journal of Electrical and Electronics Engineering that present similar research results. The topics and instructions for authors of this journal can be found to the appropiate sections.
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