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Data on combination effect of PEG-coated gold nanoparticles and non-thermal plasma inhibit growth of solid tumors

机译:PEG涂层金纳米粒子与非热等离子体联合抑制实体瘤生长的作用数据

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摘要

Highly resistant tumor cells are hard to treat at low doses of plasma. Therefore, researchers have gained more attention to development of enhancers for plasma therapy. Some enhancers could improve the efficacy of plasma towards selectivity of cancer cells damage. In this dataset, we report the application of low doses of PEG-coated gold nanoparticles with addition of plasma treatment. This data consists of the effect of PEG-coated GNP and cold plasma on two solid tumor cell lines T98G glioblastoma and A549 lung adenocarcinoma. Cell proliferation, frequency of cancer stem cell population studies by this co-treatment was reported. Finally, we included in this dataset the effect of co-treatment in vivo, using tumor xenograft nude mice models. The data supplied in this article supports the accompanying publication “Low doses of PEG-coated gold nanoparticles sensitize solid tumors to cold plasma by blocking the PI3K/AKT-driven signaling axis to suppress cellular transformation by inhibiting growth and EMT” (N. K. Kaushik, N. Kaushik, K. C. Yoo, N Uddin, J. S. Kim, S. J. Lee et al., 2016) .
机译:高抵抗力的肿瘤细胞很难以低剂量的血浆进行治疗。因此,研究人员对血浆疗法增强剂的开发越来越关注。一些增强剂可以提高血浆对癌细胞损伤选择性的功效。在此数据集中,我们报告了在添加等离子处理后低剂量的PEG涂层金纳米颗粒的应用。该数据包括PEG包被的GNP和冷血浆对两种实体瘤细胞系T98G胶质母细胞瘤和A549肺腺癌的影响。报道了通过这种共同治疗的细胞增殖,癌症干细胞群体研究的频率。最后,我们在该数据集中使用肿瘤异种移植裸鼠模型在体内进行了联合治疗。本文提供的数据支持随附的出版物“低剂量的PEG包覆的金纳米颗粒通过阻断PI3K / AKT驱动的信号轴,通过抑制生长和EMT抑制细胞转化,从而使实体肿瘤对冷血浆敏感”(NK Kaushik,N Kaushik,KC Yoo,N Uddin,JS Kim,SJ Lee等,2016)。

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