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Bitte verwenden Sie diesen Link, wenn Sie dieses Dokument zitieren oder verlinken wollen: https://nbn-resolving.org/urn:nbn:de:gbv:9-opus-61194

New Approach against Chondrosoma Cells—Cold Plasma Treatment Inhibits Cell Motility and Metabolism, and Leads to Apoptosis

  • (1) Background: Chondrosarcoma (CS) is a malignant primary bone tumor with a cartilaginous origin. Its slow cell division and severely restricted vascularization are responsible for its poor responsiveness to chemotherapy and radiotherapy. The decisive factor for the prognosis of CS patients is the only adequate therapy—surgical resection. Cold atmospheric pressure plasma (CAP) is emerging as a new option in anti-cancer therapy. Its effect on chondrosarcomas has been poorly investigated. (2) Methods: Two CS cell lines—SW 1353 and CAL 78—were used. Various assays, such as cell growth kinetics, glucose uptake, and metabolic activity assay, along with two different apoptosis assays were performed after CAP treatment. A radius cell migration assay was used to examine cell motility. (3) Results: Both cell lines showed different growth behavior, which was taken into account when using the assays. After CAP treatment, a reduction in metabolic activity was observed in both cell lines. The immediate effect of CAP showed a reduction in cell numbers and in influence on this cell line’s growth rate. The measurement of the glucose concentration in the cell culture medium showed an increase after CAP treatment. Live-dead cell imaging shows an increase in the proportion of dead cells over the incubation time for both cell lines. There was a significant increase in apoptotic signals after 48 h and 72 h for both cell lines in both assays. The migration assay showed that CAP treatment inhibited the motility of chondrosarcoma cells. The effects in all experiments were related to the duration of CAP exposure. (4) Conclusions: The CAP treatment of CS cells inhibits their growth, motility, and metabolism by initiating apoptotic processes.

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Metadaten
Author: Andreas Nitsch, Silas Strakeljahn, Josephine M. Jacoby, Konrad F. Sieb, Alexander Mustea, Sander BekeschusORCiD, Axel Ekkernkamp, Matthias B. Stope, Lyubomir Haralambiev
URN:urn:nbn:de:gbv:9-opus-61194
DOI:https://doi.org/10.3390/biomedicines10030688
ISSN:2227-9059
Parent Title (English):Biomedicines
Publisher:MDPI
Editor: Gyoocheon Kim
Document Type:Article
Language:English
Date of first Publication:2022/03/17
Release Date:2022/04/08
Tag:CAL 78; SW 1353; TUNEL assay; caspase-3/7 assay; cold atmospheric pressure plasma; live/dead cell imaging; radius cell migration assay
GND Keyword:-
Volume:10
Issue:3
First Page:688
Faculties:Universitätsmedizin / Klinik und Poliklinik für Chirurgie Abt. für Unfall- und Wiederherstellungschirurgie
Collections:Artikel aus DFG-gefördertem Publikationsfonds
Licence (German):License LogoCreative Commons - Namensnennung