Mechanical & Aerospace Engineering Department, George Washington University, Washington, DC 20052, USA.
Br J Cancer. 2011 Oct 25;105(9):1295-301. doi: 10.1038/bjc.2011.386. Epub 2011 Oct 6.
Plasma is an ionised gas that is typically generated in high-temperature laboratory conditions. However, recent progress in atmospheric plasmas has led to the creation of cold plasmas with ion temperature close to room temperature.
Both in-vitro and in-vivo studies revealed that cold plasmas selectively kill cancer cells.
We show that: (a) cold plasma application selectively eradicates cancer cells in vitro without damaging normal cells; and (b) significantly reduces tumour size in vivo. It is shown that reactive oxygen species metabolism and oxidative stress responsive genes are deregulated.
The development of cold plasma tumour ablation has the potential of shifting the current paradigm of cancer treatment and enabling the transformation of cancer treatment technologies by utilisation of another state of matter.
等离子体是一种电离气体,通常在高温实验室条件下产生。然而,近年来大气等离子体的进展导致了具有接近室温的离子温度的冷等离子体的产生。
体外和体内研究都表明,冷等离子体选择性地杀死癌细胞。
我们表明:(a)冷等离子体应用选择性地消除体外的癌细胞,而不损伤正常细胞;(b)显著减少体内肿瘤的大小。结果表明,活性氧代谢和氧化应激反应基因失调。
冷等离子体肿瘤消融的发展有可能改变当前的癌症治疗模式,并通过利用物质的另一种状态来实现癌症治疗技术的变革。