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Updated: Aug 23, 2026

Basic Research in Plasma Medicine - A Throughput Approach from Liquids to Cells
Published on: November 17, 2017
Cold atmospheric plasma affects metabolic processes in malignant melanoma
Erika Rein1, Tom Zimmermann1, Stefan Fischer2
1Institute of Biochemistry, University of Erlangen-Nürnberg, 91054, Erlangen, Germany.
Background:
Partially ionized gas, also known as cold atmospheric plasma (CAP), is reported to have anti-tumor specific properties via reactive oxygen and nitrogen species (RONS) in different tumor entities. Many CAP effects have already been studied, but the exact influence on metabolism has yet to be defined.
Methods:
Analyses of metabolic substrates, metabolic pathways, genes, mRNA and nitration were performed to investigate CAP-treated and untreated melanoma and non-malignant cells.
Results:
We discovered a dose-dependent downregulation of oxidative phosphorylation and glycolysis in CAP-treated compared to untreated melanoma cells, whereas for non-malignant cells we saw no change in the oxidative phosphorylation and even an increase in the glycolysis. Gene set enrichment analyses demonstrated a downregulation of gene sets associated with metabolic processes in melanoma cells. These effects could be explained by posttranslational modification via tyrosine nitration, induced by RONS. A higher induction of protein nitration was found in CAP-treated melanoma cells opposed to non-malignant cells. This difference may contribute to the antitumor-specific effects of CAP.
Conclusion:
This study shows different molecular and metabolic responses of melanoma and non-malignant cells in vitro. It thereby contributes to a better understanding of the antitumor-specific effects of CAP and facilitates the development of CAP-based treatments.
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