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首页> 外文期刊>Chemical engineering journal >Polydopamine-based molecular imprinted optic microfiber sensor enhanced by template-mediated molecular rearrangement for ultra-sensitive C-reactive protein detection
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Polydopamine-based molecular imprinted optic microfiber sensor enhanced by template-mediated molecular rearrangement for ultra-sensitive C-reactive protein detection

机译:基于多元胺的分子印迹光学微纤维传感器通过模板介导的用于超敏感的C反应蛋白检测的分子重排得到增强

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摘要

Conventional molecular imprinting technique is utilized for the construction of three dimensional binding cavities just providing complementary shape and size of the specific template molecule for the recognition of the same. Although molecular imprinting is able to largely improve the selectivity of detection, it lowers the limit of detection (LOD) a little. In this study, a microfiber interference sensor decorated with the polydopamine (PDA)-based molecularly imprinted with C-reactive protein (CMIP-PDA) was developed for C-reactive protein (CRP) detection, in which template molecule induced dopamine2/5,6-dihydroxyindole (DHI) trimer rearrangement in the dopamine self-polymerization process and further forms complementary hydrophobic/hydrophilic and charge distribution other than shape and size in the imprinting cavity corresponding to template. The combination of optical fiber interferometer with enhancement effect from template-mediated rearrangement remarkably boosts the recognition sensitivity. Therefore, our sensor sensitivity reaches 0.881 nm/ (lg ng/mL) and the LOD is found to be 5.813 x 10(-10) ng/mL, which is about 8 orders of magnitude lower than the commercial sandwich-type ELISA kit. Moreover, the CMIP-PDA microfiber sensor has excellent repeatability and high selectivity for the target molecule. These findings confirm that the proposed PDA-based molecular imprinting can provide an ultrasensitive, rapid, low cost and label-free CRP diagnosis as well as can be varied to meet any specific biomarkers. This work also opens up new opportunity to quantitatively monitor biological molecules with extremely low concentration.
机译:常规的分子压印技术用于构建三维结合腔,仅提供特定模板分子的互补形状和尺寸,以识别该互补形状和尺寸。虽然分子印迹能够在很大程度上改善检测的选择性,但它会降低检测极限(LOD)。在该研究中,为C-反应蛋白(CRP)检测产生了用分子印迹的聚二胺(PDA)装饰的微纤维干扰传感器,其中模板分子诱导多巴胺2/5,在多巴胺自聚合过程中的6-二羟基吲哚(DHI)三聚体重排,进一步形成与模板相对应的压印腔中的形状和尺寸的互补疏水/亲水和电荷分布。光纤干涉仪的组合具有来自模板介导的重排的增强效果显着提高了识别敏感性。因此,我们的传感器灵敏度达到0.881nm /(lg ng / ml),并且植物被发现为5.813×10( - 10)ng / ml,比商业夹层型ELISA试剂盒低约8个数量级。此外,CMIP-PDA微纤维传感器具有优异的可重复性和对靶分子的高选择性。这些发现证实,所提出的基于PDA的分子印迹可以提供超敏感,快速,低成本和无标记的CRP诊断,也可以改变以满足任何特定的生物标志物。这项工作还开辟了全新的机会,以定量监测具有极低浓度的生物分子。

著录项

  • 来源
    《Chemical engineering journal》 |2020年第2020期|共8页
  • 作者单位

    Jinan Univ Inst Photon Technol Guangdong Prov Key Lab Opt Fiber Sensing &

    Commun Guangzhou 510632 Peoples R China;

    Jinan Univ Inst Photon Technol Guangdong Prov Key Lab Opt Fiber Sensing &

    Commun Guangzhou 510632 Peoples R China;

    Jinan Univ Inst Photon Technol Guangdong Prov Key Lab Opt Fiber Sensing &

    Commun Guangzhou 510632 Peoples R China;

    Jinan Univ Inst Photon Technol Guangdong Prov Key Lab Opt Fiber Sensing &

    Commun Guangzhou 510632 Peoples R China;

    Jinan Univ Inst Photon Technol Guangdong Prov Key Lab Opt Fiber Sensing &

    Commun Guangzhou 510632 Peoples R China;

    South China Normal Univ Sch Life Sci Guangzhou 510631 Peoples R China;

    Jinan Univ Key Lab Biomat Guangdong Higher Educ Inst Dept Biomed Engn Guangzhou 510632 Peoples R China;

    Jinan Univ Inst Photon Technol Guangdong Prov Key Lab Opt Fiber Sensing &

    Commun Guangzhou 510632 Peoples R China;

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

    Polydopamine; Molecular imprinting; Microfiber interference sensor; Template-induced polymerization rearrangement; C-reactive protein;

    机译:聚二胺;分子印迹;微纤维干扰传感器;模板诱导的聚合重排;C-反应蛋白;

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