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Safety aspects of atmospheric pressure helium plasma jet operation on skin: In vivo study on mouse skin

机译:大气压氦等离子体喷射对皮肤的安全性:小鼠皮肤的体内研究

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摘要

Biomedical applications of plasma require its efficacy for specific purposes and equally importantly its safety. Herein the safety aspects of cold plasma created with simple atmospheric pressure plasma jet produced with helium gas and electrode discharge are evaluated in skin damage on mouse, at different duration of exposure and gas flow rates. The extent of skin damage and treatments are systematically evaluated using stereomicroscope, labelling with fluorescent dyes, histology, infrared imaging and optical emission spectroscopy. The analyses reveal early and late skin damages as a consequence of plasma treatment, and are attributed to direct and indirect effects of plasma. The results indicate that direct skin damage progresses with longer treatment time and increasing gas flow rates which reflect changes in plasma properties. With increasing flow rates, the temperature on treated skin grows and the RONS formation rises. The direct effects were plasma treatment dependent, whereas the disclosed late—secondary effects were more independent on discharge parameters and related to diffusion of RONS species. Thermal effects and skin heating are related to plasma-coupling properties and are separated from the effects of other RONS. It is demonstrated that cumulative topical treatment with helium plasma jet could lead to skin damage. How these damages can be mitigated is discussed in order to provide guidance, when using atmospheric pressure plasma jets for skin treatments.
机译:血浆的生物医学应用需要针对特定​​目的的功效,同样重要的是其安全性。在此,在暴露的持续时间和气体流速不同的情况下,评估了由简单的由氦气产生的大气压等离子体射流和电极放电产生的冷等离子体的安全性,以评估小鼠的皮肤损伤。使用立体显微镜,荧光染料标记,组织学,红外成像和光发射光谱系统评估皮肤损伤和治疗的程度。这些分析揭示了血浆治疗导致的早期和晚期皮肤损害,并归因于血浆的直接和间接作用。结果表明,直接的皮肤损伤随着治疗时间的延长和气体流速的增加而进展,这反映了血浆性质的变化。随着流速的增加,处理过的皮肤上的温度会上升,RONS的形成也会上升。直接作用取决于等离子体处理,而所公开的后期-次要作用更不依赖于放电参数,并且与RONS种类的扩散有关。热效应和皮肤加热与等离子体耦合特性有关,并且与其他RONS的效应分开。已证明用氦等离子体喷射的累积局部治疗可能导致皮肤损伤。为了提供指导,在使用大气压等离子流进行皮肤治疗时,将讨论如何减轻这些损害。

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