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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Electrochemical aptasensor for multi-antibiotics detection based on endonuclease and exonuclease assisted dual recycling amplification strategy
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Electrochemical aptasensor for multi-antibiotics detection based on endonuclease and exonuclease assisted dual recycling amplification strategy

机译:基于内切核酸酶和外切核酸酶的多抗生素检测的电化学Aptasensor辅助双重回收扩增策略

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摘要

AbstractAn ultrasensitive electrochemical aptasensor for multiplex antibiotics detection based on endonuclease and exonuclease assisted dual recycling amplification strategy was proposed. Kanamycin and chloramphenicol were selected as candidates. Firstly, aptamers of the antibiotics were immobilized on bar A and then binding with their endonuclease labeled complementary DNA strands to construct enzyme-cleavage probes. Secondly, The nano zirconium-metal organic framework (NMOF) particles with 1,4-benzene-dicarboxylate (BDC) as linker was defined as UiO-66. And its updated version, hierarchically porous UiO-66 (HP-UIO-66) decorated with different electroactive materials as signal tags were synthesized. Then they were immobilized on bar B linked by two duplex DNA strands which can be specifically cleaved by corresponding enzyme-cleavage probes in bar A. Once targets were introduced into system, aptamers can capture them and then release enzyme-cleavage probes. In the presence of exonuclease-I, exonuclease assisted target recycling amplification was triggered and more enzyme-cleavage probes were released into solution. The probes can trigger endonuclease assisted recycles and repeatedly cleave their corresponding duplex DNA strands on bar B then released numerous signal tags into supernatant. Thus two recycling amplification was performed in the system. Finally, MB and Fc in the signal tags were detected by square wave voltammetry after removing bar A/B and the current intensities were correspondent with the concentration of KANA and CAP respectively. Under the optimum condition, the limits of detection for the KANA and CAP were 35fM and 21fM respectively with a wide linear range from 1 × 1
机译:<![cdata [ 抽象 提出了一种基于内切核酸酶和外切核酸酶辅助双重回收扩增策略的超敏感的电化学Aptasensor。作为候选者选择Kanamycin和氯霉素。首先,将抗生素的适体固定在棒A上,然后与其内切核酸酶结合标记的互补DNA链以构建酶切割探针。其次,纳米锆 - 金属有机框架(NMOF)颗粒作为接头,作为接头的1,4-苯二羧酸酯(BDC)被定义为UIO-66。及其更新的版本,合成了用不同的电活性材料装饰的分层多孔UIO-66(HP-UIO-66)作为信号标签。然后将它们固定在由两种双相DNA链连接的棒B上,该双链DNA链可以通过相应的酶 - 切割探针在棒A中具体地切割。一旦将靶引入系统中,Aptamers可以捕获它们然后释放酶切割探针。在外切核酸酶-1的存在下,触发外切核酸酶辅助靶再循环扩增,并将更多的酶 - 切割探针释放到溶液中。探针可以触发内切核酸酶辅助回收,并反复切割它们对应的双链DNA链,然后将许多信号标签释放成上清液。因此,在系统中进行两个回收扩增。最后,通过方波伏安法检测信号标签中的MB和Fc,除了棒A / B之后,并且当前强度分别对应于卡纳和帽的浓度。在最佳条件下,Kana和帽的检测限率分别为35FM和21Fm,宽线性范围为1×1

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    State Key Laboratory Base of Novel Functional Materials and Preparation Science Faculty of Materials Science and Chemical Engineering Ningbo University;

    State Key Laboratory Base of Novel Functional Materials and Preparation Science Faculty of Materials Science and Chemical Engineering Ningbo University;

    State Key Laboratory Base of Novel Functional Materials and Preparation Science Faculty of Materials Science and Chemical Engineering Ningbo University;

    State Key Laboratory Base of Novel Functional Materials and Preparation Science Faculty of Materials Science and Chemical Engineering Ningbo University;

    State Key Laboratory Base of Novel Functional Materials and Preparation Science Faculty of Materials Science and Chemical Engineering Ningbo University;

    State Key Laboratory Base of Novel Functional Materials and Preparation Science Faculty of Materials Science and Chemical Engineering Ningbo University;

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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

    Dual enzyme recycling amplification; Endonuclease and exonuclease; Multiplex antibiotics detection; Electrochemical aptasensors;

    机译:双酶回收扩增;内切核酸酶和外切核酸酶;多重抗生素检测;电化学Aptasensors;

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