首页> 外文期刊>Antioxidants and redox signalling >Ascorbic Acid 2-Glucoside Stably Promotes the Primitiveness of Embryonic and Mesenchymal Stem Cells Through Ten–Eleven Translocation- and cAMP-Responsive Element-Binding Protein-1-Dependent Mechanisms
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Ascorbic Acid 2-Glucoside Stably Promotes the Primitiveness of Embryonic and Mesenchymal Stem Cells Through Ten–Eleven Translocation- and cAMP-Responsive Element-Binding Protein-1-Dependent Mechanisms

机译:抗坏血酸2-葡糖苷稳定地促进胚胎和间充质干细胞的原始性通过十一十一易位和阵营响应元件结合蛋白-1依赖性机制

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摘要

Aims: The naive or primitive states of stem cells (SCs) residing in specific niches are unstable and difficult to preserve in vitro. Vitamin C (VitC), in addition to suppressing oxygen radicals, exerts pleiotropic effects to preserve the core functions of SCs. However, this compound is labile and readily oxidized, resulting in cellular toxicity and preventing its reliable application in this context. We found that a VitC derivative, ascorbic acid 2-glucoside (AA2G), stably maintains the naive pluripotency of murine embryonic SCs (mESCs) and the primitiveness of human mesenchymal SCs (hMSCs) without cellular toxicity.Results: The beneficial effects of AA2G and related molecular mechanisms were evaluated in mESCs, induced pluripotent-SCs (iPSCs), and hMSCs. AA2G was stable in aqueous solution and barely induced cellular toxicity in cultured SCs, unlike VitC. AA2G supplementation recapitulated the well-known effects of VitC, including induction of ten–eleven translocation-dependent DNA demethylation in mESCs and suppression of p53 during generation of murine iPSCs. Furthermore, supplementation of hMSCs with AA2G improved therapeutic outcomes in an asthma mouse model by promoting their self-renewal, engraftment, and anti-inflammatory properties. Particularly, activation of the cAMP-responsive element-binding protein-1 (CREB1) pathway contributed to the ability of AA2G to maintain naive pluripotency of mESCs and functionality of hMSCs.Innovation and Conclusion: Given its long-lasting effects and low cellular toxicity, AA2G supplementation is useful to support the naive pluripotency of mESCs and the primitiveness of hMSCs, affecting their developmental potency and therapeutic efficacy. Furthermore, we demonstrate the significance of the CREB1 pathway in the mechanism of action of AA2G.
机译:目的:驻留在特定性核桃中的幼稚或原始状态的干细胞(SCS)是不稳定的并且难以在体外保持。除抑制氧自由基外,维生素C(VITC)还施加脂肪效应,以保持SCS的核心功能。然而,该化合物是不稳定的并且容易氧化,导致细胞毒性并在这种情况下预防其可靠的应用。我们发现VitC衍生物,抗坏血酸2-葡糖苷(AA2G),稳定地保持鼠胚胎SCS(MESCS)的幼稚多能性,以及人间充质SCs(HMSCs)的原始性,没有细胞毒性。结果:AA2G的有益效果和在MESCS,诱导的多能-CCS(IPSC)和HMSC中评估了相关的分子机制。与vitc不同,Aa2g在水溶液中稳定,在培养的SCs中勉强诱导细胞毒性。 AA2G补充综合涵盖了VITC的众所周知的效果,包括在Murine IPSC产生期间MESCS中的诱导诱导鼠标的10-11级静态DNA去甲基化和抑制P53。此外,通过促进其自我更新,植入和抗炎特性,补充具有AA2G的HMSCs改善了哮喘小鼠模型中的治疗结果。特别地,阵营响应元件结合蛋白-1(CREB1)途径的激活有助于AA2G维持母体MESCS和HMSCs的功能的能力。鉴于其长期效果和低细胞毒性, AA2G补充可用于支持MESCS的天真多能性和HMSCs的原始性,影响其发育效力和治疗效果。此外,我们证明了CREB1途径在AA2G作用机制中的重要性。

著录项

  • 来源
    《Antioxidants and redox signalling》 |2020年第1期|共25页
  • 作者单位

    Department of Biomedical Sciences Asan Medical Center University of Ulsan College of Medicine;

    Department of Biomedical Sciences Asan Medical Center University of Ulsan College of Medicine;

    Department of Stem Cell Biology School of Medicine Konkuk University;

    Department of Biomedical Sciences Asan Medical Center University of Ulsan College of Medicine;

    Department of Biomedical Sciences Asan Medical Center University of Ulsan College of Medicine;

    Department of Biomedical Sciences Asan Medical Center University of Ulsan College of Medicine;

    Department of Biomedical Sciences Asan Medical Center University of Ulsan College of Medicine;

    Department of Biomedical Sciences Asan Medical Center University of Ulsan College of Medicine;

    Department of Biomedical Sciences Asan Medical Center University of Ulsan College of Medicine;

    Department of Biomedical Sciences Asan Medical Center University of Ulsan College of Medicine;

    Department of Stem Cell Biology School of Medicine Konkuk University;

    Department of Pulmonary and Critical Care Medicine Asan Medical Center University of Ulsan;

    Research Institute Graduate School of Cancer Science and Policy National Cancer Center;

    Research Institute Graduate School of Cancer Science and Policy National Cancer Center;

    JJ. MADIN Inc;

    Department of Convergence Medicine Asan Medical Center University of Ulsan College of Medicine;

    Department of Convergence Medicine Asan Medical Center University of Ulsan College of Medicine;

    Department of Biochemistry College of Life Science and Biotechnology Yonsei University;

    Department of Biochemistry College of Life Science and Biotechnology Yonsei University;

    Department of Stem Cell Biology School of Medicine Konkuk University;

    Department of Biomedical Sciences Asan Medical Center University of Ulsan College of Medicine;

    Department of Stem Cell Biology School of Medicine Konkuk University;

    Department of Biomedical Sciences Asan Medical Center University of Ulsan College of Medicine;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 基础医学;
  • 关键词

    AA2G; TET; CREB1; DNA demethylation; ESC; MSC;

    机译:AA2G;TET;CREB1;DNA去甲基化;ESC;MSC;

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