Boric Acid Affects the Expression of DNA Double-Strand Break Repair Factors in A549 Cells and A549 Cancer Stem Cells: An In Vitro Study

被引:0
作者
Sevimli, Tugba Semerci [1 ]
Ghorbani, Aynaz [1 ]
Cevizlidere, Bahar Demir [1 ]
Altug, Burcuguel [1 ]
Sevimli, Murat [2 ]
机构
[1] Eskiehir Osmangazi Univ, Cellular Therapy & Stem Cell Prod Applicat & Res, TR-26040 Eskisehir, Turkiye
[2] Eskisehir Osmangazi Univ, Dept Histol & Embryol, Fac Med, TR-26040 Eskisehir, Turkiye
关键词
Lung cancer stem cell; Boric acid; DNA DSB; Cytotoxicity; LUNG-CANCER;
D O I
10.1007/s12011-024-04082-y
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
DNA double-strand break (DSB) repair genes interact with tumor stemness- and resistance-associated processes in cancer stem cells (CSCs). Therefore, targeting DNA DSB genes in cancer treatment is important for the CSC phenotype. Although the anti-cancer effect of boric acid (BA) has been studied, its effect on DNA DSB is unclear. Moreover, no studies investigate BA's effects on DNA DSB of lung cancer stem cells (LC-SCs). To fill the gap, we aimed to assess the effects of BA on A549 cancer stem cells. CSCs were isolated from human non-small cell lung cancer cells (A549) and characterized by flow cytometry. Different concentrations of BA (at doses ranging from 1 to 100 mM) were applied to cancer stem cells. Cytotoxic activities were determined using the cell viability assay (MTT assay) at 24 and 48 h. Expression levels of DNA DSB genes that BRCA1, BRCA2, RAD51, KU70/80, ATM, and XRCC4 were evaluated by RT-qPCR. Additionally, immunofluorescence staining analysis was exploited for caspase-3 and E-cadherin. ATM expression increased significantly (p<0.001). No significant change was observed in the expression of other genes. Moreover, BA up-regulated caspase-3 and E-cadherin expression. Consequently, we can say that BA affects DNA DSB and the apoptotic abilities of LC-SCs.
引用
收藏
页码:5017 / 5024
页数:8
相关论文
共 33 条
[21]  
Prabavathy D, 2018, Stem Cell Investig, V5, P6, DOI 10.21037/sci.2018.02.01
[22]   Drug resistance in cancer therapy: the Pandora's Box of cancer stem cells [J].
Rezayatmand, Hamed ;
Razmkhah, Mahboobeh ;
Razeghian-Jahromi, Iman .
STEM CELL RESEARCH & THERAPY, 2022, 13 (01)
[23]   Clinical relevance of stem cells in lung cancer [J].
Romeo, Horacio Eduardo ;
Arcos, Maria Laura Barreiro .
WORLD JOURNAL OF STEM CELLS, 2023, 15 (06) :576-588
[24]   Comparative effects of boric acid and calcium fructoborate on breast cancer cells [J].
Scorei, R. ;
Ciubar, Raluca ;
Ciofrangeanu, Cristina M. ;
Mitran, Valentina ;
Cimpean, Anisoara ;
Iordachescu, Dana .
BIOLOGICAL TRACE ELEMENT RESEARCH, 2008, 122 (03) :197-205
[25]   Boric acid suppresses cell proliferation by TNF signaling pathway mediated apoptosis in SW-480 human colon cancer line [J].
Sevimli, Murat ;
Bayram, Dilek ;
Ozgocmen, Meltem ;
Armagan, Ilkay ;
Sevimli, Tugba Semerci .
JOURNAL OF TRACE ELEMENTS IN MEDICINE AND BIOLOGY, 2022, 71
[26]  
SEVIMLI TS, 2023, BIOL TRACE ELEM 1212, DOI DOI https://doi.org/10.1007/s12011-023-03987-4
[27]   In vitro effects of boric acid on human liver hepatoma cell line (HepG2) at the half-maximal inhibitory concentration [J].
Tombuloglu, Aysegul ;
Copoglu, Hulya ;
Aydin-Son, Yesim ;
Guray, N. Tulin .
JOURNAL OF TRACE ELEMENTS IN MEDICINE AND BIOLOGY, 2020, 62
[28]   Cancer Stem Cells: Current Status and Evolving Complexities [J].
Visvader, Jane E. ;
Lindeman, Geoffrey J. .
CELL STEM CELL, 2012, 10 (06) :717-728
[29]   COVID-19: immunopathogenesis and Immunotherapeutics [J].
Yang, Li ;
Liu, Shasha ;
Liu, Jinyan ;
Zhang, Zhixin ;
Wan, Xiaochun ;
Huang, Bo ;
Chen, Youhai ;
Zhang, Yi .
SIGNAL TRANSDUCTION AND TARGETED THERAPY, 2020, 5 (01)
[30]  
Yilmaz S, 2016, CELL J, V17, P748