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'Signal-on' molecularly imprinting-aptamer electrochemiluminescence platform for ultrasensitive detection of thrombin

机译:“信号 - 上”分子印迹 - 适体电化学电化学平台,用于凝血酶超声检测

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摘要

A novel "signal-on" molecular imprinting-aptamer electrochemiluminescence (ECL) platform is designed for ultrasensitive bioanalysis of thrombin (TB) based on the SiO_2 loaded with Ru(bpy)_3~(2+)polyetherimide-graphene oxide (RuNP/PEI-GO) nanocomposite as signal labels. Specifically, "signal-on" ECL sensing strategy and molecular imprinting technology is combined together to fabricate sensing platform. The nanocavity corresponding to TB produced by molecular imprinting can be used for multiple specific recognition of TB together with aptamers. Moreover, high-quality ECL nanocomposite luminophore is achieved by means of RuNP/PEI-GO nanocomposite with significant ECL efficiency and stability. Simultaneously, PEI, as a co-reaction, can shorten the electron-transfer path of this ECL system to reduce the energy loss, resulting in the enhancement of ECL signal effectively. ECL signal strength of RuNP/PEI-GO is about 7 times higher than that of RuNP due to the synergy effect of PEI, GO and RuNP, thus further expanding the detection range of TB. This ECL sensing platform for TB detection shows satisfactory sensitivity with a low detection limit of 28.73 fM in the concentration range from 10~(13) M to 10~8 M. This developed "signal-on" ECL platform with RuNP/PEI-GO nanocomposite is expected to become a promising tool for detecting other biomarkers in the future.
机译:一种新的“信号 - 上”分子印迹 - 适体电化学电化学(ECL)平台被设计用于基于由Ru(BPY)_3〜(2+)聚醚酰亚胺 - 氧化烯(RUNP / PEI)的SiO_2的SiO_2进行超声凝血酶(TB)的超声生物分析-go)纳米复合材料作为信号标签。具体地,“信号上”ECL传感策略和分子压印技术组合在一起以制造传感平台。对应于通过分子印迹产生的TB的纳米钙可用于与适体一起进行TB的多种特异性识别。此外,通过具有显着的ECL效率和稳定性的RUNP / PEI-GO-GOOCHECHECH实现了高质量的ECL纳米复合发光体。同时,PEI作为共同反应,可以缩短该ECL系统的电子传输路径以降低能量损失,从而有效地提高了ECL信号。由于PEI,GO和RUNP的协同效应,RUNP / PEI-GO的ECL信号强度大约高于RUNP的7倍,从而进一步扩展了TB的检测范围。用于TB检测的ECL传感平台显示出令人满意的灵敏度,浓度为28.73 fm的浓度,浓度范围为10〜(13)米至10〜8米。这开发出具有RUNP / PEI-GO的“信号上”ECL平台预计纳米复合材料将成为未来检测其他生物标志物的有希望的工具。

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  • 来源
    《Sensors and Actuators》 |2021年第7期|129870.1-129870.7|共7页
  • 作者单位

    Key Laboratory of Optic-Electric Sensing and Analytical Chemistry for Life Science MOE State Key Laboratory Base of Eco-Chemical Engineering College of Chemistry and Molecular Engineering Qingdao University of Science and Technology Qingdao 266042 PR China;

    Key Laboratory of Optic-Electric Sensing and Analytical Chemistry for Life Science MOE State Key Laboratory Base of Eco-Chemical Engineering College of Chemistry and Molecular Engineering Qingdao University of Science and Technology Qingdao 266042 PR China;

    Key Laboratory of Optic-Electric Sensing and Analytical Chemistry for Life Science MOE State Key Laboratory Base of Eco-Chemical Engineering College of Chemistry and Molecular Engineering Qingdao University of Science and Technology Qingdao 266042 PR China;

    Key Laboratory of Optic-Electric Sensing and Analytical Chemistry for Life Science MOE State Key Laboratory Base of Eco-Chemical Engineering College of Chemistry and Molecular Engineering Qingdao University of Science and Technology Qingdao 266042 PR China;

    Key Laboratory of Optic-Electric Sensing and Analytical Chemistry for Life Science MOE State Key Laboratory Base of Eco-Chemical Engineering College of Chemistry and Molecular Engineering Qingdao University of Science and Technology Qingdao 266042 PR China;

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

    Molecular imprinting; Electrochemiluminescence; "Signal on" sensing strategy; Nanocomposite; Aptamer; Thrombin;

    机译:分子印迹;电化学荧光;“发出”传感策略;纳米复合材料;适体;凝血酶;

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