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Cold atmospheric plasma activated media selectively affects human head and neck cancer cell lines

Viviana di Giacomo, Marwa Balaha, Morena Pinti, Maria Carmela Di Marcantonio, Ilaria Cela, Tirtha Raj Acharya, Nagendra Kumar Kaushik, Eun Ha Choi, Gabriella Mincione, Gianluca Sala, Miryam Perrucci, Marcello Locatelli, Vittoria Perrotti

2024Oral Diseases12 citationsDOIOpen Access PDF

Abstract

OBJECTIVE: Cold atmospheric plasma (CAP) is a novel approach for cancer treatment. It can be used to treat liquids-plasma-activated media (PAM)-which are then transferred to the target as an exogenous source of reactive oxygen and nitrogen species (RONS). The present study aimed at chemically characterizing different PAM and assessing their in vitro selectivity against head and neck cancer cells (HNC). METHODS: PAM were obtained by exposing 2 and 5 mL of cell culture medium to CAP for 5, 10 and 20 min at a 6 mm working distance. Anions kinetics was evaluated by ion chromatography. Cell proliferation inhibition, apoptosis occurrence, and cell cycle modifications were assessed by MTS and flow cytometry, on human epidermal keratinocyte (HaCaT) and HNC cell lines HSC3, HSC4 and A253. RESULTS: The 2 mL conditions showed a significant reduction in cell proliferation whereas for the 5 mL the effect was milder, but the time-dependence was more evident. HaCaT were unaffected by the 5 mL PAM, indicating a selectivity for cancer cells. CONCLUSIONS: The media chemical composition modified by CAP exposure influenced cell proliferation by modulating cell cycle and inducing apoptosis in cancer cells, without affecting normal cells.

Topics & Concepts

HaCaTApoptosisCancer cellCell growthFlow cytometryCell cycleCell cultureChemistryCellIn vitroKeratinocyteReactive oxygen speciesCancerMolecular biologyBiophysicsBiochemistryBiologyGeneticsPlasma Applications and DiagnosticsMedical and Biological Ozone ResearchAerogels and thermal insulation
Cold atmospheric plasma activated media selectively affects human head and neck cancer cell lines | Litcius