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Highly efficient silencing of microRNA by heteroduplex oligonucleotides

机译:用异络寡核苷酸高效沉默microRNA

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摘要

AntimiR is an antisense oligonucleotide that has been developed to silence microRNA (miRNA) for the treatment of intractable diseases. Enhancement of its in vivo efficacy and improvement of its toxicity are highly desirable but remain challenging. We here design heteroduplex oligonucleotide (HDO)-antimiR as a new technology comprising an antimiR and its complementary RNA. HDO-antimiR binds targeted miRNA in vivo more efficiently by 12-fold than the parent single-stranded antimiR. HDO-antimiR also produced enhanced phenotypic effects in mice with upregulated expression of miRNA-targeting messenger RNAs. In addition, we demonstrated that the enhanced potency of HDO-antimiR was not explained by its bio-stability or delivery to the targeted cell, but reflected an improved intracellular potency. Our findings provide new insights into biology of miRNA silencing by double-stranded oligonucleotides and support the in vivo potential of this technology based on a new class of for the treatment of miRNA-related diseases.
机译:Antimir是一种抗义寡核苷酸,其已经开发为沉默MicroRNA(miRNA)以治疗顽固性疾病。增强其体内疗效和改善其毒性是非常理想的,但保持挑战性。我们在这里设计异络寡核苷酸(HDO) - 亚胺,作为包含抗杀虫和互补RNA的新技术。 HDO-Antimir比母单链抗摩尔更有效地将靶向miRNA与12倍结合12倍。 HDO-Antimir还产生了具有上调MiRNA靶向信使RNA的小鼠中的增强表型作用。此外,我们证明了Hdo-antimir的增强效力不是通过其生物稳定性或输送到靶细胞的增强效力,但反映了改善的细胞内效力。我们的调查结果通过双链寡核苷酸对MiRNA沉默的生物学进行了新的见解,并基于新类别用于治疗miRNA相关疾病的新类别,支持该技术的体内潜力。

著录项

  • 来源
    《Nucleic Acids Research》 |2019年第14期|共12页
  • 作者单位

    Tokyo Med &

    Dent Univ TMDU Grad Sch Med &

    Dent Sci Dept Neurol &

    Neurol Sci Bunkyo Ku 1-5-45 Yushima Tokyo 1138519 Japan;

    Tokyo Med &

    Dent Univ TMDU Grad Sch Med &

    Dent Sci Dept Neurol &

    Neurol Sci Bunkyo Ku 1-5-45 Yushima Tokyo 1138519 Japan;

    Tokyo Med &

    Dent Univ TMDU Grad Sch Med &

    Dent Sci Dept Neurol &

    Neurol Sci Bunkyo Ku 1-5-45 Yushima Tokyo 1138519 Japan;

    Tokyo Med &

    Dent Univ TMDU Grad Sch Med &

    Dent Sci Dept Neurol &

    Neurol Sci Bunkyo Ku 1-5-45 Yushima Tokyo 1138519 Japan;

    Tokyo Med &

    Dent Univ TMDU Grad Sch Med &

    Dent Sci Dept Neurol &

    Neurol Sci Bunkyo Ku 1-5-45 Yushima Tokyo 1138519 Japan;

    Tokyo Med &

    Dent Univ TMDU Grad Sch Med &

    Dent Sci Dept Neurol &

    Neurol Sci Bunkyo Ku 1-5-45 Yushima Tokyo 1138519 Japan;

    Tokyo Med &

    Dent Univ TMDU Grad Sch Med &

    Dent Sci Dept Neurol &

    Neurol Sci Bunkyo Ku 1-5-45 Yushima Tokyo 1138519 Japan;

    Tokyo Med &

    Dent Univ TMDU Grad Sch Med &

    Dent Sci Dept Neurol &

    Neurol Sci Bunkyo Ku 1-5-45 Yushima Tokyo 1138519 Japan;

    Tokyo Med &

    Dent Univ TMDU Grad Sch Med &

    Dent Sci Dept Neurol &

    Neurol Sci Bunkyo Ku 1-5-45 Yushima Tokyo 1138519 Japan;

    Tokyo Med &

    Dent Univ TMDU Grad Sch Med &

    Dent Sci Dept Neurol &

    Neurol Sci Bunkyo Ku 1-5-45 Yushima Tokyo 1138519 Japan;

    Japan Sci &

    Technol Agcy JST Core Res Evolut Sci &

    Technol CREST Sect Mol Technol 4-1-8 Honcho Kawaguchi Saitama 3320012 Japan;

    Tokyo Med &

    Dent Univ TMDU Grad Sch Med &

    Dent Sci Dept Neurol &

    Neurol Sci Bunkyo Ku 1-5-45 Yushima Tokyo 1138519 Japan;

    Japan Sci &

    Technol Agcy JST Core Res Evolut Sci &

    Technol CREST Sect Mol Technol 4-1-8 Honcho Kawaguchi Saitama 3320012 Japan;

    Japan Sci &

    Technol Agcy JST Core Res Evolut Sci &

    Technol CREST Sect Mol Technol 4-1-8 Honcho Kawaguchi Saitama 3320012 Japan;

    Tokyo Med &

    Dent Univ TMDU Grad Sch Med &

    Dent Sci Dept Neurol &

    Neurol Sci Bunkyo Ku 1-5-45 Yushima Tokyo 1138519 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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