Controlling plasma‐activated solution chemistry for targeted cancer cell death

Author:

Liu Zhijie1ORCID,Tantai Xiamin1,Wang Sitao1,Pang Bolun1,Gao Yuting1,Zhang Feng1,Zhao Xinyi2,Xu Dehui1,Soni Aswathi3,Mai‐Prochnow Anne4,Cullen Patrick4,Zhou Renwu1ORCID

Affiliation:

1. State Key Laboratory of Electrical Insulation and Power Equipment, Centre for Plasma Biomedicine, School of Electrical Engineering Xi'an Jiaotong University Xi'an China

2. School of Life Science and Technology Xi'an Jiaotong University Xi'an China

3. Food System Integrity, Smart Foods and Bioproducts AgResearch Ltd. Palmerston North New Zealand

4. School of Chemical and Biomolecular Engineering The University of Sydney Camperdown New South Wales Australia

Abstract

AbstractPlasma‐activated solutions (PAS) are attracting attention in biomedicine, however their complexity necessitates a greater understanding of both the plasma activation process and the selected starting solution. Here, five solutions, including deionized water, saline, PB, PBS, and RPMI 1640, were treated to investigate the physicochemical properties and anticancer effects. The findings show that the different solutions largely affected the gas–liquid interaction reactions and the color penetration distribution of H2O2 and NO2. The anticancer effects are in the order of DI > PB≈saline> PBS > RPMI 1640, attributed to the important role of H2O2 and NO2 in inactivating cancer cells. This study provides insights into designing and applying PAS in practical anticancer therapy.

Publisher

Wiley

Subject

Polymers and Plastics,Condensed Matter Physics

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