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Methodology for MC-LR detection using surface plasmon resonance of the gold nanorods-aptamer complex in aqueous solutions

机译:MC-LR检测方法使用水溶液中金纳米棒 - 适体复合物的表面等离子体共振

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摘要

By high concentration sodium chloride system, the high affinity of the aptamer-based gold nanorod was used as the sensing material for selective detection of Microcystin-LR (MC-LR). The combination of MC-LR and aptamer resulted in red shift in the absorption peak of the gold nanorods. As the increasing of MC-LR, the structure of the aptamer adsorbed on the gold nanorods changed, reducing the exposure of the bases and causing the gold nanorods to aggregate under the induction of salt solution. MC-LR concentration was measured according to the change of A~(798)/A~(560) ratio of gold nanorods. In order to verify the accuracy of the nano method, the concentration of MC-LR in different growth periods was detected by comparing with that of liquid chromato-graphy-mass spectrometry. The results showed that the aptamer-based colorimetric system had fast and sensitive detection performance with a linear range of 0.5 nM-8 uM and the detection limit reached 0.2 nM. In one month of short-term culture, the concentration of MC-LR detected by gold nanorods existed in the cell and kept increasing. That indicated that the modified gold nanorod method could detect MC-LR with high recovery and sensitivity in the actual environment.
机译:通过高浓度的氯化钠体系,使用基于Aptamer的金纳米棒的高亲和力用作用于选择性检测微囊糖-LR(MC-LR)的传感材料。 MC-LR和适体的组合导致金纳米棒的吸收峰值中的红色移位。随着MC-LR的增加,吸附在金纳米棒上的适体的结构改变,减少了碱的暴露并使金纳米棒在盐溶液的诱导下聚集。根据金纳米棒的〜(798)/ a(560)比的变化测量MC-LR浓度。为了验证纳米方法的准确性,通过与液体色谱 - 石墨质谱法相比,检测不同生长周期中MC-LR的浓度。结果表明,基于Aptamer的比色系统具有快速且敏感的检测性能,线性范围为0.5nm-8 um,检测限达到0.2nm。在一个月的短期培养中,在细胞中存在由金纳米棒检测的MC-LR的浓度并保持增加。这表明改进的金纳频方法可以检测实际环境中具有高回收率和灵敏度的MC-LR。

著录项

  • 来源
    《Materials Science and Engineering》 |2021年第1期|114765.1-114765.6|共6页
  • 作者

    Shuyu Liu; Yan Tan; Li Liu;

  • 作者单位

    School of Environment and Chemical Engineering Shanghai University Shanghai 201800 PR China;

    School of Environment and Chemical Engineering Shanghai University Shanghai 201800 PR China;

    Florida International University Florida FL 33032 United States;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    MC-LR aptamer; Gold nanorods; High selectivity;

    机译:MC-LR Aptamer;金纳米棒;高选择性;

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