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Antimycin A shows selective antiproliferation to oral cancer cells by oxidative stress-mediated apoptosis and DNA damage

机译:抗霉素A通过氧化应激介导的细胞凋亡和DNA损伤表明对口服癌细胞的选择性抗溶剂

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摘要

The antibiotic antimycin A (AMA) is commonly used as an inhibitor for the electron transport chain but its application in anticancer studies is rare. Recently, the repurposing use of AMA in antiproliferation of several cancer cell types has been reported. However, it is rarely investigated in oral cancer cells. The purpose of this study is to investigate the selective antiproliferation ability of AMA treatment on oral cancer cells. Cell viability, flow cytometry, and western blotting were applied to explore its possible anticancer mechanism in terms of both concentration- and exposure time-effects. AMA shows the higher antiproliferation to two oral cancer CAL 27 and Ca9-22 cell lines than normal oral HGF-1 cell lines. Moreover, AMA induces the production of higher reactive oxygen species (ROS) levels and pan-caspase activation in oral cancer CAL 27 and Ca9-22 cells than in normal oral HGF-1 cells, providing the possible mechanism for its selective antiproliferation effect of AMA. In addition to ROS, AMA induces mitochondrial superoxide (MitoSOX) generation and depletes mitochondrial membrane potential (MitoMP). This further supports the AMA-induced oxidative stress changes in oral cancer CAL 27 and Ca9-22 cells. AMA also shows high expressions of annexin Ⅴ in CAL 27 and Ca9-22 cells and cleaved forms of poly (ADP-ribose) polymerase (PARP), caspase 9, and caspase 3 in CAL 27 cells, supporting the apoptosis-inducing ability of AMA. Furthermore, AMA induces DNA damage (γH2AX and 8-oxo-2'-deoxyguanosine [8-oxodG]) in CAL 27 and Ca9-22 cells. Notably, the AMA-induced selective antiproliferation, oxidative stress, and DNA damage were partly prevented from N-acetylcysteine (NAC) pre-treatments. Taken together, AMA selectively kills oral cancer cells in an oxidative stress-dependent mechanism involving apoptosis and DNA damage.
机译:抗生素抗霉素A(AMA)通常用作电子传输链的抑制剂,但其在抗癌研究中的应用是罕见的。最近,已经报道了据报道了重新淘汰了AMA在几种癌细胞类型的抗溶解中的使用。然而,在口服癌细胞中很少研究。本研究的目的是研究AMA治疗对口腔癌细胞的选择性抗溶解能力。施用细胞活力,流式细胞术和蛋白质印迹,以促进其浓度和暴露时间效应的可能抗癌机制。 AMA显示比正常口服HGF-1细胞系的两个口腔癌CAL 27和CA9-22细胞系较高的抗溶解剂。此外,AMA诱导在口服癌CA17和CA9-22细胞中产生更高的活性氧物质(ROS)水平和泛胱天冬酶活化,而不是正常口腔HGF-1细胞,为其选择性抗溶解效应提供了可能的机制。除ROS外,AMA还诱导线粒体超氧化物(MITOSOX)产生并耗尽线粒体膜电位(MITOMP)。这进一步支持口腔癌CAL 27和CA9-22细胞中的AMA诱导的氧化应激变化。 AMA还显示CAL 27和CA9-22细胞中的膜蛋白Ⅳ的高表达,并在CAL 27细胞中切割聚(ADP-核糖)聚合酶(PARP),胱天蛋白酶9和Caspase 3的形式,支持AMA的凋亡诱导能力。此外,AMA在CAL 27和CA9-22细胞中诱导DNA损伤(γH2AX和8-氧代-2'-脱氧核苷酸[8-OXODG])。值得注意的是,从N-乙酰半胱氨酸(NAC)预处理中,部分地防止了AMA诱导的选择性抗溶解,氧化应激和DNA损伤。一起服用,AMA在涉及细胞凋亡和DNA损伤的氧化胁迫依赖性机制中选择性地杀死口腔癌细胞。

著录项

  • 来源
    《Environmental toxicology》 |2020年第12期|1212-1224|共13页
  • 作者单位

    Department of Biomedical Science and Environmental Biology PhD program in Life Science College of Life Science Kaohsiung Medical University Kaohsiung Taiwan;

    Department of Biomedical Science and Environmental Biology PhD program in Life Science College of Life Science Kaohsiung Medical University Kaohsiung Taiwan;

    Department of Radiation Oncology Faculty of Medicine College of Medicine Kaohsiung Medical University Kaohsiung Taiwan Department of Radiation Oncology Kaohsiung Medical University Hospital Kaohsiung Taiwan;

    Department of Radiation Oncology Chi-Mei Foundation Medical Center Tainan Taiwan School of Medicine Taipei Medical University Taipei Taiwan Chung Hwa University of Medical Technology Tainan Taiwan;

    Institute of Biomedical Science National Sun Yat-Sen University Kaohsiung Taiwan;

    Institute of Biomedical Science National Sun Yat-Sen University Kaohsiung Taiwan;

    Department of Biomedical Science and Environmental Biology PhD program in Life Science College of Life Science Kaohsiung Medical University Kaohsiung Taiwan;

    Department of Biomedical Science and Environmental Biology PhD program in Life Science College of Life Science Kaohsiung Medical University Kaohsiung Taiwan;

    Cancer Center Kaohsiung Medical University Hospital Kaohsiung Medical University Kaohsiung Taiwan Division of Breast Surgery and Department of Surgery Kaohsiung Medical University Hospital Kaohsiung Taiwan;

    Department of Biomedical Science and Environmental Biology PhD program in Life Science College of Life Science Kaohsiung Medical University Kaohsiung Taiwan Cancer Center Kaohsiung Medical University Hospital Kaohsiung Medical University Kaohsiung Taiwan Institute of Medical Science and Technology National Sun Yat-sen University Kaohsiung Taiwan Department of Medical Research Kaohsiung Medical University Hospital Kaohsiung Taiwan Center for Cancer Research Kaohsiung Medical University Kaohsiung Taiwan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    antibiotics; drug repurposing; oral cancer; oxidative stress; selective antiproliferation;

    机译:抗生素;药物修复;口腔癌;氧化胁迫;选择性抗溶剂;

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