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Atmospheric pressure dry-and mist-plasma jets using pulsed power generator and their effects on HeLa cells

机译:使用脉冲发电机的大气压干燥和雾等离子体喷射及其对HeLa细胞的影响

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Atmospheric-pressure non-thermal plasma jets have recently received significant attention due to their unique characteristics - low temperature, low cost, portability, and ease of operation - which are suitable to such novel applications as analytical chemistry, thin film processing, nanomaterial synthesis, surface modification, sterilization, and etching. In biological applications, chemical species including NO2, HNO3, O3and OH generated in air phase are rapidly converted to liquid phase, and accompanied chemical stimuli can inactivate bacteria. The hydroxyl radical (OH) in particular plays an important role in plasma chemistry and plasma medicine due to its oxidation and disinfection potential, substantially higher than other oxidative species. Also reported is that H2O2produced by plasma holds potential for inactivation of human cancer cell viability. Our previous study focused on OH and H2O2production utilizing a system we developed called a “mist plasma jet (MPJ)” which uses dry helium gas mixed with water mist to improve upon the traditional method using only dry helium gas, known as the “dry plasma jet (DPJ)”. We irradiated both plasma to HeLa cells. This study focuses on observation and comparison of effects of both MPJ and DPJ on HeLa cells, a type of human cancer cell, surrounded by cell culture medium 24 hours after irradiation by plasma. First, we examined voltage dependency of saturation temperatures on DPJ and MPJ; next, we irradiated plasma to cell culture medium including cells and observed cells exposed to the plasma-treated culture medium after 24 hours. These experiments revealed that MPJ has a greater influence on cell death than DPJ.
机译:由于其独特的特性 - 低温,低成本,便携性和操作易于操作,近似接受了显着的关注 - 适用于这种新颖的应用作为分析化学,薄膜处理,纳米材料合成,表面改性,灭菌和蚀刻。在生物应用中,化学物种包括否 2 ,HNO. 3 ,O. 3 在空气相中产生的oO迅速转化为液相,伴随的化学刺激可以灭活细菌。特别是由于其氧化和消毒电位,基本上高于其他氧化物种,羟基自由基(OH)在血浆化学和血浆药物中起重要作用。还报道了 2 O. 2 由等离子体产生的潜力使人癌细胞活力失活。我们以前的一项研究专注于哦和h 2 O. 2 利用我们开发的系统的生产被称为“雾等离子体喷射(MPJ)”,该系统使用与水雾混合的干燥氦气仅使用干燥氦气的传统方法,称为“干等离子体射流(DPJ)”。我们将两种血浆照射给Hela细胞。本研究侧重于观察和比较MPJ和DPJ对HeLa细胞的影响,一种人类癌细胞,在通过血浆照射后24小时被细胞培养基包围。首先,我们检查了DPJ和MPJ上饱和温度的电压依赖性;接下来,我们将血浆照射到细胞培养基,包括细胞,并在24小时后观察到暴露于血浆处理的培养基的细胞。这些实验表明,MPJ对细胞死亡的影响大于DPJ。

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