首页> 外文期刊>Analytica chimica acta >A class-specific artificial receptor-based on molecularly imprinted polymer-coated quantum dot centers for the detection of signaling molecules, N-acyl-homoserine lactones present in gram-negative bacteria
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A class-specific artificial receptor-based on molecularly imprinted polymer-coated quantum dot centers for the detection of signaling molecules, N-acyl-homoserine lactones present in gram-negative bacteria

机译:基于特定的人工受体 - 基于分子印迹聚合物涂覆的量子点中心,用于检测革兰氏阴性细菌中存在的信号分子,N-酰基 - 甲状甲虫内酯

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摘要

Herein, a novel class-specific artificial receptor-based on molecularly imprinted polymer (MIP)-coated quantum dots (QDs@MIP) was synthesized, characterized, and used for the detection and quantification of the bacterial quorum signaling molecules N-acyl-homoserine lactones (AHLs), a class of autoinducers from Gram-negative bacteria. The QDs@MIP was prepared by surface imprinting technique under controlled conditions using CdSe/ZnS QDs as the signal transducing material. The synthesis of the QDs@MIP was characterized by transmission electron microscopy, scanning electron microscopy, Fourier transform infrared spectroscopy, X-ray diffraction analysis, and fluorescence spectroscopy. After template elution, the obtained cavities sensitively and selectively recognized the target AHLs of interest. The fluorescence intensity of the QDs@MIP was significantly quenched compared to the control non-imprinted polymer (QDs@NIP) upon exposure to different AHL concentrations. It also had a good linearity in the range from 2 to 18?nM along with a detection limit of 0.66, 0.54, 0.88, 0.72 and 0.68?nM for DMHF, C4-HSL, C6-HSL, C8-HSL and N-3oxo-C6-HSL, respectively. Most interestingly, the proposed sensor exhibited high sensitivity, good stability and fast response (30?s) towards the target molecules due to successful formation of surface imprints. The practicability of the developed sensor in real samples was further confirmed through the analysis of bacterial supernatant samples with satisfactory recoveries ranging from 89 to 103%. According to these results, the as-prepared QDs@MIP can be used as a new potential supporting technique for the rapid and real-time detection of bacterial pathogens in food safety and healthcare facilities.
机译:在此,合成了一种基于分子印迹聚合物(MIP)涂覆的量子点(QDS @ MIP)的新型类特异性人工受体 - 特征,并用于检测和定量细菌法定信令分子N-酰基 - 型鼠静脉乳酰胺(AHLS),一类来自革兰氏阴性细菌的自动化器。 QDS @ MIP通过在受控条件下使用CDSE / ZnS QDS作为信号转换材料来制备QDS @ MIP。 QDS @ MIP的合成,其特征在于透射电子显微镜,扫描电子显微镜,傅里叶变换红外光谱,X射线衍射分析和荧光光谱。在模板洗脱之后,所获得的空腔敏感地和选择性地认识到目标AHL。与在暴露于不同的AHL浓度时,与对照非印记聚合物(QDS @ NIP)相比,QDS @ MIP的荧光强度显着淬火。它在2至18Ω·Nm的范围内也具有良好的线性度,检测限为0.66,0.54,0.88,0.72和0.68Ω,C4-HSL,C6-HSL,C8-HSL和N-3OxO。 -C6-HSL分别。最有意义地,由于成功形成表面印记,所提出的传感器呈现出高灵敏度,良好的稳定性和快速响应(30μs)。通过分析细菌上清液样品,进一步证实了实际样品中发达的传感器的实用性,令人满意的回收率为89至103%。根据这些结果,AS制备的QDS @ MIP可以用作新的潜在支持技术,用于食品安全和医疗保健设施中的细菌病原体的快速和实时检测。

著录项

  • 来源
    《Analytica chimica acta》 |2018年第2018期|共11页
  • 作者单位

    State Key Laboratory of Food Science and Technology School of Food Science National Engineering Research Center for Functional Foods Synergetic Innovation Center of Food Safety Joint International Research Laboratory on Food Safety Jiangnan Universit;

    State Key Laboratory of Food Science and Technology School of Food Science National Engineering Research Center for Functional Foods Synergetic Innovation Center of Food Safety Joint International Research Laboratory on Food Safety Jiangnan Universit;

    State Key Laboratory of Food Science and Technology School of Food Science National Engineering Research Center for Functional Foods Synergetic Innovation Center of Food Safety Joint International Research Laboratory on Food Safety Jiangnan Universit;

    Department of Food Technology School of Food Science and Technology University of Rwanda;

    State Key Laboratory of Food Science and Technology School of Food Science National Engineering Research Center for Functional Foods Synergetic Innovation Center of Food Safety Joint International Research Laboratory on Food Safety Jiangnan Universit;

    State Key Laboratory of Food Science and Technology School of Food Science National Engineering Research Center for Functional Foods Synergetic Innovation Center of Food Safety Joint International Research Laboratory on Food Safety Jiangnan Universit;

    State Key Laboratory of Food Science and Technology School of Food Science National Engineering Research Center for Functional Foods Synergetic Innovation Center of Food Safety Joint International Research Laboratory on Food Safety Jiangnan Universit;

    Zhangjiagang Entry-Exit Inspection and Quarantine Bureau;

    State Key Laboratory of Food Science and Technology School of Food Science National Engineering Research Center for Functional Foods Synergetic Innovation Center of Food Safety Joint International Research Laboratory on Food Safety Jiangnan Universit;

    State Key Laboratory of Food Science and Technology School of Food Science National Engineering Research Center for Functional Foods Synergetic Innovation Center of Food Safety Joint International Research Laboratory on Food Safety Jiangnan Universit;

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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

    N-Acyl-homoserine lactones; Molecularly imprinted polymer; Quantum dots; Fluorescent sensor;

    机译:N-酰基 - 型甲络合物;分子印迹聚合物;量子点;荧光传感器;

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