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DNAzyme-Powered Three-Dimensional DNA Walker Nanoprobe for Detection Amyloid beta-Peptide Oligomer in Living Cells and in Vivo

机译:DNAzyme供电的三维DNA步行者Nanoprobe用于检测活细胞和体内淀粉样蛋白β-肽低聚物

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摘要

Amyloid beta-peptide oligomer (A beta O) is widely acknowledged as the promising biomarker for the diagnosis of Alzheimer's disease (AD). In this work, we designed a three-dimensional (3D) DNA walker nanoprobe for , A beta O detection and real-time imaging in living cells and in vivo. The presence of A beta O triggered the DNAzyme walking strand to cleave the fluorophore (TAMRA)-labeled substrate strand modified on the gold nanoparticle (AuNP) surface and release TAMRA-labeled DNA fragment, resulting in the recovery of fluorescent signal. The entire process was autonomous and continuous, without external fuel strands or protease, and finally produced plenty of TAMRA fluorescence, achieving signal amplification effect. The nanoprobe enabled the quantitative detection of A beta O in vitro, and the limit of detection was 22.3 pM. Given the good biocompatibility of 3D DNA walker nanoprobe, we extended this enzyme-free signal amplification method to real-time imaging of A beta O. Under the microscope, nanoprobe accurately located and visualized the distribution of A beta O in living cells. Moreover, in vivo imaging results showed that our nanoprobe could be used to effectively distinguish the AD mice from the wild-type mice. This nanoprobe with the advantages of great sensitivity, high specificity, and convenience, provides an outstanding prospect for AD's early diagnosis development.
机译:淀粉样蛋白β-肽低聚物(βo)被广泛地被认为是诊断阿尔茨海默病(AD)的有前途的生物标志物。在这项工作中,我们设计了一种三维(3D)DNA步行者Nanoprobe,β0检测和活细胞的实时成像和体内。 βO的存在引发了DNazyme行走链以将荧光团(TAMRA) - 标记的衬底链切割在金纳米颗粒(AUNP)表面上进行改性并释放Tamra标记的DNA片段,导致荧光信号的回收率。整个过程是自主和连续的,没有外部燃料股或蛋白酶,最后产生大量的TAMRA荧光,实现信号放大效果。 Nanopobe能够在体外定量检测βo,检测限为22.3μm。鉴于3D DNA步行者Nanoprobe的良好生物相容性,我们将这种无酶信号放大方法扩展到βO的实时成像。在显微镜下,纳米孔精确定位并可视化活细胞中β0的分布。此外,在体内成像结果表明,我们的纳泊孔可用于有效地区分来自野生型小鼠的广告小鼠。该纳米孔具有较大敏感性,高特异性和便利性的优点,为广告的早期诊断发育提供了卓越的前景。

著录项

  • 来源
    《Analytical chemistry》 |2020年第13期|共10页
  • 作者单位

    Xuzhou Med Univ Jiangsu Key Lab New Drug Res &

    Clin Pharm Xuzhou 221004 Jiangsu Peoples R China;

    Xuzhou Med Univ Jiangsu Key Lab New Drug Res &

    Clin Pharm Xuzhou 221004 Jiangsu Peoples R China;

    Xuzhou Med Univ Jiangsu Key Lab New Drug Res &

    Clin Pharm Xuzhou 221004 Jiangsu Peoples R China;

    Xuzhou Med Univ Jiangsu Key Lab New Drug Res &

    Clin Pharm Xuzhou 221004 Jiangsu Peoples R China;

    Xuzhou Med Univ Jiangsu Key Lab New Drug Res &

    Clin Pharm Xuzhou 221004 Jiangsu Peoples R China;

    Xuzhou Med Univ Jiangsu Key Lab New Drug Res &

    Clin Pharm Xuzhou 221004 Jiangsu Peoples R China;

    Xuzhou Med Univ Jiangsu Key Lab New Drug Res &

    Clin Pharm Xuzhou 221004 Jiangsu Peoples R China;

    Xuzhou Med Univ Jiangsu Key Lab New Drug Res &

    Clin Pharm Xuzhou 221004 Jiangsu Peoples R China;

    Xuzhou Med Univ Jiangsu Key Lab New Drug Res &

    Clin Pharm Xuzhou 221004 Jiangsu Peoples R China;

    Univ Sci &

    Technol Beijing Res Ctr Bioengn &

    Sensing Technol Beijing 100083 Peoples R China;

    Xuzhou Med Univ Jiangsu Key Lab New Drug Res &

    Clin Pharm Xuzhou 221004 Jiangsu Peoples R China;

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

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