首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Feed gas humidity: A vital parameter affecting a cold atmospheric-pressure plasma jet and plasma-treated human skin cells
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Feed gas humidity: A vital parameter affecting a cold atmospheric-pressure plasma jet and plasma-treated human skin cells

机译:进料气湿度:影响冷大气压等离子体射流和经等离子体处理的人体皮肤细胞的重要参数

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In this study, the effect of feed gas humidity on the reactive component generation of an atmospheric-pressure argon plasma jet and its effect on human skin cells are investigated. Feed gas humidity is identified as one key parameter that strongly influences stability and reproducibility of plasma medical studies. The plasma jet is investigated by absorption spectroscopy in the ultraviolet and infrared spectral region for its ozone production depending on the humidity concentration in the feed gas. By optical emission spectroscopy the dependence of present excited plasma species such as hydroxyl radicals, molecular nitrogen, argon and atomic oxygen on the feed gas humidity is investigated. As an interface layer between the plasma jet effluent and the biological cell, a buffer solution is treated and the hydrogen peroxide (H _2O_2) production is studied with two independent colorimetric assays as a function of humidity admixture to the feed gas. Ultimately, the effect of varying feed gas humidity on the cell viability of indirect plasma treated adherent HaCAT cells is investigated. The highest viability is found for the driest feed gas condition. Furthermore, this work shows answers for the relevance of unwanted - or intended - feed gas humidity in plasma medical experiments and their comparatively large relevance with respect to ambient humidity. The findings will lead to more reproducible experiments in the field of plasma medicine.
机译:在这项研究中,研究了进料气体湿度对大气压氩等离子体射流反应成分的影响及其对人体皮肤细胞的影响。进料气湿度被确定为是一个关键参数,会严重影响血浆医学研究的稳定性和可重复性。等离子体射流通过吸收光谱法在紫外和红外光谱区域中进行研究,以根据进料气体中的湿度浓度产生臭氧。通过光发射光谱法研究了当前激发的等离子体种类如羟基自由基,分子氮,氩气和原子氧对进料气体湿度的依赖性。作为血浆喷射流出物和生物细胞之间的界面层,对缓冲溶液进行处理,并通过两个独立的比色测定法研究过氧化氢(H _2O_2)的产生,该比色测定是进料气体中湿度的函数。最终,研究了改变进料气体湿度对间接血浆处理的贴壁HaCAT细胞的细胞活力的影响。对于最干燥的进料气条件,发现了最高的可行性。此外,这项工作为等离子体医学实验中有害的或预期的进料气体湿度的相关性及其与环境湿度的较大相关性提供了答案。这些发现将导致在血浆医学领域进行更多可重复的实验。

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