Plasma treatment limits human melanoma spheroid growth and metastasis independent of the ambient gas composition

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Date
2020
Volume
12
Issue
9
Journal
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Book Title
Publisher
Basel : MDPI AG
Abstract

Melanoma skin cancer is still a deadly disease despite recent advances in therapy. Previous studies have suggested medical plasma technology as a promising modality for melanoma treatment. However, the efficacy of plasmas operated under different ambient air conditions and the comparison of direct and indirect plasma treatments are mostly unexplored for this tumor entity. Moreover, exactly how plasma treatment affects melanoma metastasis has still not been explained. Using 3D tumor spheroid models and high-content imaging technology, we addressed these questions by utilizing one metastatic and one non-metastatic human melanoma cell line targeted with an argon plasma jet. Plasma treatment was toxic in both cell lines. Modulating the oxygen and nitrogen ambient air composition (100/0, 75/25, 50/50, 25/75, and 0/100) gave similar toxicity and reduced the spheroid growth for all conditions. This was the case for both direct and indirect treatments, with the former showing a treatment time-dependent response while the latter resulted in cytotoxicity with the longest treatment time investigated. Live-cell imaging of in-gel cultured spheroids indicated that plasma treatment did not enhance metastasis, and flow cytometry showed a significant modulation of S100A4 but not in any of the five other metastasis-related markers (β-catenin, E-cadherin, LEF1, SLUG, and ZEB1) investigated. © 2020 by the authors. Licensee MDPI, Basel, Switzerland.

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Keywords
KINPen, MNT-1, Oncology, Plasma medicine, Reactive oxygen species, ROS, SK-MEL-28
Citation
Hasse, S., Meder, T., Freund, E., Woedtke, T. v., & Bekeschus, S. (2020). Plasma treatment limits human melanoma spheroid growth and metastasis independent of the ambient gas composition. 12(9). https://doi.org//10.3390/cancers12092570
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CC BY 4.0 Unported