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Rapid Detection and Identification of miRNAs by Surface-Enhanced Raman Spectroscopy Using Hollow Au Nanoflowers Substrates

机译:用空心Au纳米割草机表面增强拉曼光谱法快速检测和鉴定MIRNA

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摘要

MicroRNAs (miRNAs) are recognized as regulators of gene expression during the biological processes of cells as well as biomarkers of many diseases. Development of rapid and sensitive miRNA profiling methods is crucial for evaluating the pattern of miRNA expression related to normal and diseased states.This work presents a novel hollow Au nanoflowers (HAuNFs) substrate for rapid detection and identification of miRNAs by surface-enhanced Raman scattering (SERS) spectroscopy.We synthesized the HAuNFs by a seed-mediated growth approach. Then, HAuNFs substrates were fabricated by depositing HAuNFs onto the surfaces of (3- aminopropyl)triethoxysilane- (APTES-) functionalized ITO glass.The result demonstrated that HAuNFs substrates had very good reproducibility, homogeneous SERS activity, and high SERS effect.The substrates enabled us to successfully obtain the SERS spectra of miR-10a-5p, miR-125a-5p, and miR-196a-5p. The difference spectra among the three kinds of miRNAs were studied to better interpret the spectral differences and identify miRNA expression patterns with high accuracy. The principal component analysis (PCA) of the SERS spectra was used to distinguish among the three kinds of miRNAs. Considering its time efficiency, being labelfree, and its sensitivity, the SERS based on HAuNFs substrates is very promising for miRNA research and plays an important role in early disease detection and prevention.
机译:MicroRNAS(miRNA)被认为是细胞生物过程中基因表达的调节因子以及许多疾病的生物标志物。快速和敏感的miRNA分析方法的开发对于评估与正常和患病状态相关的miRNA表达模式至关重要。本文通过表面增强拉曼散射快速检测和鉴定MiRNA的新型空心Au纳米母线(HaunFS)底物。 SERS)光谱学。我们通过种子介导的生长方法合成HAUNFS。然后,通过将HaunFS沉积在(3-氨基丙基)三乙氧基硅烷 - (Apt-)官能化ITO玻璃的表面上来制造Haunfs底物。结果表明Haunfs底物具有非常好的再现性,均匀的SERS活动,以及高均匀的效果。基材使我们能够成功获得MiR-10A-5P,MIR-125A-5P和MIR-196A-5P的SERS光谱。研究了三种miRNA中的差异光谱,以更好地解释光谱差异,并以高精度鉴定miRNA表达模式。 SERS光谱的主要成分分析(PCA)用于区分三种MIRNA。考虑到其时间效率,是Labelfree及其敏感性,基于Haunfs底物的Sers对MiRNA研究非常有前途,在早期疾病检测和预防中起重要作用。

著录项

  • 来源
    《Journal of nanomaterials》 |2017年第5期|共11页
  • 作者单位

    Institute of Translational Medicine Medical College Yangzhou University Yangzhou 225001 China;

    Institute of Translational Medicine Medical College Yangzhou University Yangzhou 225001 China;

    Institute of Translational Medicine Medical College Yangzhou University Yangzhou 225001 China;

    Institute of Translational Medicine Medical College Yangzhou University Yangzhou 225001 China;

    Institute of Translational Medicine Medical College Yangzhou University Yangzhou 225001 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    Rapid; Detection; Identification;

    机译:快速;检测;识别;

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