从等离子体辐射与DNA相互作用的角度解读癌症的另一个概念

IF 0.1
M. M. Ahmed, S. Montaser, A. Elhadary, G. Elaragi
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引用次数: 1

摘要

几项研究包括我们之前关于不同类型和剂量的血浆源对正常细胞和癌细胞的作用。所有先前的研究都试图讨论和解释基于血浆和细胞相互作用的癌症治疗概念。通过许多研究(遗传学、免疫学和生化测量),血浆对癌细胞的结局具有有效的作用和特异性,这使我们找到了许多不同理论的途径,这可能会创造一种新的考虑方法。本研究采用由特斯拉线圈驱动的等离子体射流,用于介质阻挡放电产生冷大气压等离子体射流(CAPPJ)。受试者样本被分为三组,第一组是癌细胞系。第二组是正常血液样本,第三组是在暴露于cappj的培养物中培养的未暴露的血细胞。细胞分裂阻断微核试验(CBMN)、细胞组测定、P53和Bcl2基因的蛋白表达、白细胞介素(IL-1β、IL-6和IL-10)和肿瘤坏死因子(TNF-α)是当前研究中使用的变量。结果表明,细胞与CAPPJ的直接相互作用比暴露于CAPPJ培养的细胞更有效。CAPPJ辐照后乳腺癌细胞株(BCC)细胞活力及Bcl2、P53基因蛋白表达水平的变化具有重要意义。CAPPJ不仅通过自由基和几种重要途径的增强来影响细胞,还可能通过与DNA的直接相互作用来影响细胞。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Another Concept of Cancer Interpretation in View of the Interaction between Plasma Radiation and DNA
Several studies included our preceding works on different types and doses of plasma sources on both normal and cancerous cells. All previous research tried to discuss and interpret cancer treatment concepts given plasma and cell interaction. Plasma has an effective role and specification character on cancerous cells outcome via many investigations (genetically, immunologically, and biochemically measurements) lead us to numerous paths of different theories which may create a new approach for considerations. This study was designed using a plasma jet powered by a Tesla coil used for generating Cold Atmospheric Pressure Plasma Jet (CAPPJ) from dielectric barrier discharge. The subject samples were categorized into three groups, the first was the cancer cell line. The second was normal blood samples whereas, the third one was non-exposed blood cells cultivated in CAPPJ-exposed cultures. The Cytokinesis Blocked Micronucleus Test (CBMN), a cytome assay, the protein expression of the P53 and Bcl2 genes, the interleukins (IL-1β, IL-6, and IL-10), and tumor necrosis factor (TNF-α) were the variables used in the current investigation. Results indicated that the direct interaction between cells and CAPPJ is more efficient than cells cultivated in CAPPJ-exposed cultures. Cell viability and protein expression levels of Bcl2 and P53 genes in CAPPJ irradiated Breast Cancer Cell lines (BCC) were remarkably valuable. CAPPJ affects cells via not only free radicals and enhancement of several important pathways but may be via direct interaction with DNA.
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