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Utilizing the micron sized non-thermal atmospheric pressure plasma inside the animal body for the tumor treatment application

机译:利用动物体内的微米级非热大气压等离子体进行肿瘤治疗

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摘要

This study aimed to evaluate the effects of micron sized non-thermal atmospheric pressure plasma inside the animal body on breast cancer tumor. The μ-plasma jet consists of micron sized hollow tube in which pure helium gas is ionized by high voltage (4 kV) and high frequency (6 kHz). The efficiency of the plasma treatment in killing cancer cells was first investigated by cell viability measurements of treated 4T1 cells using flow cytometry and cell cycle analysis. For exploration of the in vivo effects of the plasma treatment, the BALB/c mice inoculated by 4T1 cell lines were exposed subcutaneously to plasma for 3 minutes. In addition, H&E staining, TUNEL and Western blotting assays were performed in order to observed the effects of the non-thermal plasma on the tumor cells. The results showed that the efficiency of the plasma in suppression of the tumor growth is comparable to that of a typical chemotherapy drug. Moreover, the results indicated that the plasma induces apoptosis in the tumor tissue and increases the ratio of the apoptotic to anti-apoptotic protein expression. We believe that these findings presented herein may extend our knowledge of the mechanisms by which the plasma exerts its promising anti-cancer effects.
机译:这项研究旨在评估动物体内的微米级非热性大气压等离子体对乳腺癌肿瘤的影响。 μ-等离子射流由微米级的空心管组成,其中纯氦气通过高压(4 kV)和高频(6 kHz)电离。首先通过流式细胞术和细胞周期分析对处理过的4T1细胞进行细胞活力测量来研究血浆处理杀死癌细胞的效率。为了探索血浆处理的体内效果,将接种了4T1细胞系的BALB / c小鼠皮下暴露于血浆中3分钟。另外,进行H&E染色,TUNEL和Western印迹分析以观察非热血浆对肿瘤细胞的影响。结果表明,血浆抑制肿瘤生长的效率与典型的化疗药物相当。此外,结果表明血浆诱导肿瘤组织中的细胞凋亡,并增加了凋亡与抗凋亡蛋白表达的比例。我们相信,本文提出的这些发现可能会扩展我们对血浆发挥其有希望的抗癌作用的机制的认识。

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