Atmospheric pressure plasma jet-mouse skin interaction: Mitigation of damages by liquid interface and gas flow control

Author:

Jurov Andrea12ORCID,Kos Špela3ORCID,Blagus Tanja3ORCID,Sremački Ivana4ORCID,Filipič Gregor1ORCID,Hojnik Nataša1ORCID,Nikiforov Anton4ORCID,Leys Christophe4ORCID,Čemažar Maja35ORCID,Serša Gregor36ORCID,Cvelbar Uroš1ORCID

Affiliation:

1. Department F6, Jožef Stefan Institute, Jamova cesta 39, SI-1000 Ljubljana, Slovenia, European Union

2. International Postgraduate School Jožef Stefan, Jamova cesta 39, SI-1000 Ljubljana, Slovenia, European Union

3. Department of Experimental Oncology, Institute of Oncology Ljubljana, Zaloška 2, SI-1000 Ljubljana, Slovenia, European Union

4. Department of Applied Physics, Ghent University, Sint-Petersnieuwstraar 41, 9000 Gent, Belgium, European Union

5. Faculty of Health Sciences, University of Primorska, Polje 42, SI-6310 Izola, Slovenia, European Union

6. Faculty of Health Sciences, University of Ljubljana, Zdravstvena pot 5, SI-1000 Ljubljana, Slovenia, European Union

Abstract

The possible benefits of an atmospheric pressure plasma jet skin treatment have been tested in vivo on mouse skin. Many studies have been conducted in vitro on mouse skin cells, but only a few in vivo where, due to the complexity of the biological system, plasma can cause severe damages. For this reason, we investigated how kHz plasma generated in a jet that is known to inflict skin damage interacts with mouse skin and explored how we can reduce the skin damage. First, the focus was on exploring plasma effects on skin damage formation with different plasma gases and jet inclinations. The results pointed to the perpendicular orientation of a He plasma jet as the most promising condition with the least skin damage. Then, the skin damage caused by a He plasma jet was explored, focusing on damage mitigation with different liquid interfaces applied to the treatment site, adding N2 to the gas mixture, or alternating the gas flow dynamics by elongating the jet's glass orifice with a funnel. All these mitigations proved highly efficient, but the utmost benefits for skin damage reduction were connected to skin temperature reduction, the reduction in reactive oxygen species (ROS), and the increase in reactive nitrogen species (RNS).

Funder

Javna Agencija za Raziskovalno Dejavnost RS

Fonds Wetenschappelijk Onderzoek

Publisher

American Vacuum Society

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Materials Science,Biomaterials,General Chemistry

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