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Non-Thermal Atmospheric Pressure Plasma Preferentially Induces Apoptosis in p53-Mutated Cancer Cells by Activating ROS Stress-Response Pathways

机译:非热大气压力血浆通过激活ROS应激反应途径优先诱导p53突变癌细胞中的凋亡。

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摘要

Non-thermal atmospheric pressure plasma (NTAPP) is an ionized gas at room temperature and has potential as a new apoptosis-promoting cancer therapy that acts by generating reactive oxygen species (ROS). However, it is imperative to determine its selectivity and standardize the components and composition of NTAPP. Here, we designed an NTAPP-generating apparatus combined with a He gas feeding system and demonstrated its high selectivity toward p53-mutated cancer cells. We first determined the proper conditions for NTAPP exposure to selectively induce apoptosis in cancer cells. The apoptotic effect of NTAPP was greater for p53-mutated cancer cells; artificial p53 expression in p53-negative HT29 cells decreased the pro-apoptotic effect of NTAPP. We also examined extra- and intracellular ROS levels in NTAPP-treated cells to deduce the mechanism of NTAPP action. While NTAPP-mediated increases in extracellular nitric oxide (NO) did not affect cell viability, intracellular ROS increased under NTAPP exposure and induced apoptotic cell death. This effect was dose-dependently reduced following treatment with ROS scavengers. NTAPP induced apoptosis even in doxorubicin-resistant cancer cell lines, demonstrating the feasibility of NTAPP as a potent cancer therapy. Collectively, these results strongly support the potential of NTAPP as a selective anticancer treatment, especially for p53-mutated cancer cells.
机译:非热大气压等离子体(NTAPP)在室温下是一种离子化气体,具有潜在的作为促凋亡的新型癌症疗法的作用,可通过产生活性氧(ROS)起作用。但是,必须确定其选择性并标准化NTAPP的成分和组成。在这里,我们设计了一种与氦气进料系统结合的NTAPP产生装置,并展示了其对p53突变癌细胞的高选择性。我们首先确定了NTAPP暴露以选择性诱导癌细胞凋亡的适当条件。 NTAPP对p53突变的癌细胞的凋亡作用更大。 p53阴性HT29细胞中人为p53表达降低了NTAPP的促凋亡作用。我们还检查了NTAPP处理细胞中细胞外和细胞内ROS的水平,以推断NTAPP作用的机制。尽管NTAPP介导的细胞外一氧化氮(NO)的增加不会影响细胞活力,但在NTAPP暴露下细胞内ROS会增加,并诱导凋亡性细胞死亡。用ROS清除剂治疗后,这种作用呈剂量依赖性降低。 NTAPP甚至在抗阿霉素的癌细胞系中也诱导了细胞凋亡,证明了NTAPP作为有效的癌症治疗方法的可行性。总体而言,这些结果强烈支持NTAPP作为选择性抗癌治疗的潜力,尤其是对于p53突变的癌细胞。

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