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Research ArticleExperimental Studies

PEMF Potentiates Doxorubicin-induced Late G2 Arrest in MDA-MB-231 Breast Cancer Cells

SUNG-HUN WOO, BYUNG CHUL JUNG, JUN-YOUNG KIM, YONG-HEUM LEE and YOON SUK KIM
Anticancer Research July 2024, 44 (7) 2837-2846; DOI: https://doi.org/10.21873/anticanres.17096
SUNG-HUN WOO
1Department of Biomedical Laboratory Science, College of Software and Digital Healthcare Convergence, Yonsei University, Wonju, Republic of Korea;
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BYUNG CHUL JUNG
1Department of Biomedical Laboratory Science, College of Software and Digital Healthcare Convergence, Yonsei University, Wonju, Republic of Korea;
2Department of Nutritional Sciences and Toxicology, University of California, Berkeley, CA, U.S.A.;
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JUN-YOUNG KIM
3Department of Biomedical Engineering, College of Software and Digital Healthcare Convergence, Yonsei University, Wonju, Republic of Korea
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YONG-HEUM LEE
3Department of Biomedical Engineering, College of Software and Digital Healthcare Convergence, Yonsei University, Wonju, Republic of Korea
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  • For correspondence: koaim{at}yonsei.ac.kr
YOON SUK KIM
1Department of Biomedical Laboratory Science, College of Software and Digital Healthcare Convergence, Yonsei University, Wonju, Republic of Korea;
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  • For correspondence: yoonsukkim{at}yonsei.ac.kr
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Abstract

Background/Aim: Pulsed electromagnetic field (PEMF) stimulation enhances the efficacy of several anticancer drugs. Doxorubicin is an anticancer drug used to treat various types of cancer, including breast cancer. However, the effect of PEMF stimulation on the efficacy of doxorubicin and the underlying mechanisms remain unclear. Thus, this study aimed to investigate the effect of PEMF stimulation on the anticancer activity of doxorubicin in MDA-MB-231 human breast cancer cells. Materials and Methods: MDA-MB-231 cells were seeded and allowed to incubate for 48 h. The cells were treated with doxorubicin, cisplatin, 5-fluorouracil, or paclitaxel for 48 h. Subsequently, the cells were stimulated with a 60-min PEMF session thrice a day (with an interval of 4 h between each session) for 24 or 48 h. Cell viability was assessed by trypan blue dye exclusion assay and cell-cycle analysis was analyzed by flow cytometry. Molecular mechanisms involved in late G2 arrest were confirmed by a western blot assay and confocal microscopy. Results: MDA-MB-231 cells treated with a combination of doxorubicin and PEMF had remarkably lower viability than those treated with doxorubicin alone. PEMF stimulation increased doxorubicin-induced cell-cycle arrest in the late G2 phase by suppressing cyclin-dependent kinase 1 (CDK1) activity through the enhancement of myelin transcription factor 1 (MYT1) expression, cell division cycle 25C (CDC25C) phosphorylation, and stratifin (14-3-3σ) expression. PEMF also increased doxorubicin-induced DNA damage by inhibiting DNA topoisomerase II alpha (TOP2A). Conclusion: These findings support the use of PEMF stimulation as an adjuvant to strengthen the antiproliferative effect of doxorubicin on breast cancer cells.

Key Words:
  • Pulsed electromagnetic field
  • PEMF
  • doxorubicin
  • MDA-MB-231
  • late G2 arrest
  • DNA damage
  • Received April 24, 2024.
  • Revision received June 2, 2024.
  • Accepted June 3, 2024.
  • Copyright © 2024 International Institute of Anticancer Research (Dr. George J. Delinasios), All rights reserved.
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Anticancer Research: 44 (7)
Anticancer Research
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July 2024
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PEMF Potentiates Doxorubicin-induced Late G2 Arrest in MDA-MB-231 Breast Cancer Cells
SUNG-HUN WOO, BYUNG CHUL JUNG, JUN-YOUNG KIM, YONG-HEUM LEE, YOON SUK KIM
Anticancer Research Jul 2024, 44 (7) 2837-2846; DOI: 10.21873/anticanres.17096

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PEMF Potentiates Doxorubicin-induced Late G2 Arrest in MDA-MB-231 Breast Cancer Cells
SUNG-HUN WOO, BYUNG CHUL JUNG, JUN-YOUNG KIM, YONG-HEUM LEE, YOON SUK KIM
Anticancer Research Jul 2024, 44 (7) 2837-2846; DOI: 10.21873/anticanres.17096
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Keywords

  • Pulsed electromagnetic field
  • PEMF
  • doxorubicin
  • MDA-MB-231
  • late G2 arrest
  • DNA damage
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