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首页> 外文期刊>Journal of Medicinal Chemistry >Antioxidant-Inspired Drug Discovery: Antitumor Metabolite Is Formed in Situ from a Hydroxycinnamic Acid Derivative upon Free-Radical Scavenging
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Antioxidant-Inspired Drug Discovery: Antitumor Metabolite Is Formed in Situ from a Hydroxycinnamic Acid Derivative upon Free-Radical Scavenging

机译:抗氧化剂灵感的药物发现:抗肿瘤代谢物在自由基清除时从羟基氨基酸衍生物原位形成

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摘要

Cancer cells generally possess higher levels of reactive oxygen species than normal cells, and this can serve as a possible therapeutic target. In this proof-of-concept study, an antioxidant-inspired drug discovery strategy was evaluated using a hydroxycinnamic acid derivative. The processing of oxidized mixtures of p-coumaric acid methyl ester (pcm) revealed a new antitumor lead, graviquinone. Graviquinone bypassed ABCB1-mediated resistance, induced DNA damage in lung carcinoma cells but exerted DNA protective activity in normal keratinocytes, and modulated DNA damage response in MCF-7 cells. The cytotoxic effect of pcm in MCF-7 cells was potentiated under H2O2-induced oxidative stress, and the formation of graviquinone was confirmed by Fenton's reaction on pcm. In silico density functional theory calculations suggested graviquinone as a kinetic product of pcm-scavenging (OH)-O-center dot radicals. Our results demonstrate the pharmacological value of an in situ-formed, oxidative stress-related metabolite of an antioxidant. This might be of particular importance for designing new strategies for antioxidant-based drug discovery.
机译:癌细胞通常具有比正常细胞更高水平的反应性氧物质,这可以用作可能的治疗靶标。在该概念证明研究中,使用羟基氨基酸衍生物评估抗氧化吸毒的药物发现策略。氧化混合物的氧化性混合物的p-香豆酸甲酯(PCM)揭示了一种新的抗肿瘤铅诱导。诱导诱导ABCB1介导的抗性,肺癌细胞诱导的DNA损伤,但在正常角质形成细胞中施加DNA保护活性,并在MCF-7细胞中调节DNA损伤反应。在H2O2诱导的氧化应激下调节PCM在MCF-7细胞中的细胞毒性作用,并通过FENTON对PCM的反应确认胶质蛋白的形成。在硅密度函数理论计算中,诱导诱导作为PCM-扫描(OH)-O中心点基团的动力学产品。我们的结果证明了抗氧化剂的原位形成的氧化应激相关代谢物的药理价值。这可能特别重要,用于设计基于抗氧化剂的药物发现的新策略。

著录项

  • 来源
    《Journal of Medicinal Chemistry 》 |2019年第3期| 共12页
  • 作者单位

    Univ Szeged Interdisciplinary Excellence Ctr Inst Pharmacognosy Eotvos Str 6 H-6720 Szeged Hungary;

    Univ Limoges INSERM UMR 1248 Fac Pharm IPPRITT 2 Rue Dr Marcland F-87000 Limoges France;

    Kaohsiung Med Univ Grad Inst Nat Prod Shih Chuan 1st Rd 100 Kaohsiung 807 Taiwan;

    Univ Belgrade Inst Biol Res Dept Neurobiol Bulevar Despota Stefana 142 Belgrade 11060 Serbia;

    Univ Szeged Fac Med Inst Med Microbiol &

    Immunobiol Dom Ter 10 H-6720 Szeged Hungary;

    Univ Szeged Interdisciplinary Excellence Ctr Inst Pharmacognosy Eotvos Str 6 H-6720 Szeged Hungary;

    Gedeon Richter Plc Spectroscop Res Gyomroi U 19-21 H-1103 Budapest Hungary;

    Gedeon Richter Plc Spectroscop Res Gyomroi U 19-21 H-1103 Budapest Hungary;

    Gedeon Richter Plc Compound Profiling Lab Gyomroi U 19-21 H-1103 Budapest Hungary;

    Univ Belgrade Inst Biol Res Dept Neurobiol Bulevar Despota Stefana 142 Belgrade 11060 Serbia;

    Kaohsiung Med Univ Grad Inst Nat Prod Shih Chuan 1st Rd 100 Kaohsiung 807 Taiwan;

    Univ Limoges INSERM UMR 1248 Fac Pharm IPPRITT 2 Rue Dr Marcland F-87000 Limoges France;

    Univ Szeged Interdisciplinary Excellence Ctr Inst Pharmacognosy Eotvos Str 6 H-6720 Szeged Hungary;

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

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