化学动力联合血浆治疗肿瘤的前景

L. K. Gadallo
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摘要

化学动力疗法是一种基于Fenton-Fenton样反应的新型癌症治疗方法。在芬顿化学过程中,过氧化氢在铁的存在下转化为羟基自由基,羟基自由基是一种高活性物质,可诱导细胞损伤。肿瘤发生Fenton-Fenton样反应的最佳条件是:高浓度过氧化氢、低pH、低谷胱甘肽浓度。对这些条件的要求限制了我们从癌症化学动力治疗中获得最佳效果,因此可能需要与其他治疗相结合。本文利用目前的研究成果和细胞模型,首先介绍了化学动力疗法在癌症治疗中的局限性,然后提出冷大气等离子体可能是化学动力疗法联合治疗的合适候选者,以克服这些局限性。
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The Perspective of Chemodynamic Therapy Combination with Plasma in Cancer Treatments
Chemodynamic therapy is (CDT) a novel emerging cancer treatment based on the Fenton-Fenton like reactions. During the Fenton chemical process, hydrogen peroxide in the presence of iron is converted to hydroxyl radical which is a highly reactive species to induce cell damage. The tumor optimal conditions for the occurrence of the Fenton-Fenton like reaction are: a high concentration of hydrogen peroxide, low pH level, and low Glutathione concentration. The requirement for these conditions limit us to achieving the best results from cancer chemodynamic therapy, thus combination with other treatments may be necessary. Here, using current research and a cell model, firstly we introduce the limitations of chemodynamic therapy in cancer treatment and then propose that cold atmospheric plasma could be a suitable candidate for combination with chemodynamic therapy to overcome these limitations.
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