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Cold Atmospheric Plasma Attenuates Breast Cancer Cell Growth Through Regulation of Cell Microenvironment Effectors

Title: Cold Atmospheric Plasma Attenuates Breast Cancer Cell Growth Through Regulation of Cell Microenvironment Effectors
Authors: Aggelopoulos, Christos A.; Christodoulou, Anna-Maria; Tachliabouri, Myrsini; Meropoulis, Stauros; Christopoulou, Maria-Elpida; Karalis, Theodoros T.; Chatzopoulos, Athanasios; Skandalis, Spyros S.
Source: Frontiers in Oncology ; volume 11 ; ISSN 2234-943X
Publisher Information: Frontiers Media SA
Publication Year: 2022
Collection: Frontiers (Publisher - via CrossRef)
Description: Breast cancer exists in multiple subtypes some of which still lack a targeted and effective therapy. Cold atmospheric plasma (CAP) has been proposed as an emerging anti-cancer treatment modality. In this study, we investigated the effects of direct and indirect CAP treatment driven by the advantageous nanosecond pulsed discharge on breast cancer cells of different malignant phenotypes and estrogen receptor (ER) status, a major factor in the prognosis and therapeutic management of breast cancer. The main CAP reactive species in liquid (i.e. H 2 O 2 , NO 2 − /NO 3 − ) and gas phase were determined as a function of plasma operational parameters (i.e. treatment time, pulse voltage and frequency), while pre-treatment with the ROS scavenger NAC revealed the impact of ROS in the treatment. CAP treatment induced intense phenotypic changes and apoptosis in both ER+ and ER- cells, which is associated with the mitochondrial pathway as evidenced by the increased Bax/Bcl-2 ratio and cleavage of PARP-1. Interestingly, CAP significantly reduced CD44 protein expression (a major cancer stem cell marker and matrix receptor), while differentially affected the expression of proteases and inflammatory mediators. Collectively, the findings of the present study suggest that CAP suppresses breast cancer cell growth and regulates several effectors of the tumor microenvironment and thus it could represent an efficient therapeutic approach for distinct breast cancer subtypes.
Document Type: article in journal/newspaper
Language: unknown
DOI: 10.3389/fonc.2021.826865
DOI: 10.3389/fonc.2021.826865/full
Availability: https://doi.org/10.3389/fonc.2021.826865; https://www.frontiersin.org/articles/10.3389/fonc.2021.826865/full
Rights: https://creativecommons.org/licenses/by/4.0/
Accession Number: edsbas.C81E0761
Database: BASE