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A novel ultrasensitive photoelectrochemical biosensor for detecting microRNA 21 based on cosensitization strategy and p-n heterojunction quenching mode

机译:一种新型超敏光电化学生物传感器,用于基于辅助策略检测MicroRNA 21和P-N异质结淬火模式

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摘要

Highly sensitive detection of biomarkers has a vital role in clinical diagnosis and disease treatment. Integrating cosensitization strategy and p-n heterojunction quenching mode, we have established a novel ultrasensitive "signal off photoelectrochemical (PEC) biosensor for detecting microRNA 21 (miRNA 21) via target-triggered catalytic hairpin assembly (CHA) cycling amplification. The n-type nano-hybrid (Bi_2S_3-ZnS) wrapped by tolui-dine blue O dye (TBO@Bi_2S_3-ZnS composite) has been synthesized, in which TBO and Bi_2S_3 as photosensitizers for photoactive matrix of ZnS. Since the cosensitization effect of Bi_2S_3 and TBO, 136-fold enhancement in PEC signal of TBO@Bi_2S_3-ZnS has been acquired compared with ZnS. Trace miRNA 21 can be transformed to abundant p-type copper sulflde (CuS) labeled signal tags to form p-n heterojunction with TBO@Bi_2S_3-ZnS, leading to obvious quenching effect. Thus, the PEC signals decrease with the increasing concentration of miRNA 21 and achieve the quantitative detection. The proposed PEC biosensor exhibits good linear relationship to miRNA 21 ranging from 1.0 × 10~(-17)to 10 × 10~(-11) mol·L~(-1) with a limit of detection of 3.3 × 10~(-18) mol·L~(-1).This biosensor based on TBO used as photosensitizer for the first time may offer new opportunities for detecting other biomarkers and facilitate the application of organic dyes in PEC sensing field.
机译:高敏感的生物标志物检测在临床诊断和疾病治疗中具有至关重要的作用。整合辅助化策略和PN异质结淬火模式,我们已经建立了一种通过靶引发的催化发夹组合(CHA)循环扩增来检测微瘤21(MiRNA 21)的新型超敏“信号OFF光电化学(PEC)生物传感器。n型纳米 - 已经合成了由托利 - 用餐蓝色O染料(TBO @ Bi_2S_3-ZNS复合材料)包装的混合动力车(BI_2S_3-ZNS),其中TBO和BI_2S_3作为ZNS光活性矩阵的光敏剂。由于BI_2S_3和TBO的辅助化效果,136-与ZnS相比,已经获取了TBO @ Bi_2S_3-ZNS的PEC信号中的折叠增强。追踪miRNA 21可以转化为丰富的P型Coillflde(CU)标记的信号标签,以形成PN异质结,以形成TBO @ Bi_2S_3-Zns,导致显而易见的淬火效果。因此,PEC信号随着miRNA 21的增加而降低并实现定量检测。所提出的PEC生物传感器与miRNA 21的良好线性关系表现出良好的线性关系从1.0×10〜(-17)到10×10〜(-11)mol·L〜(-1),限制为3.3×10〜(-18)mol·L〜(-1)。这基于TBO的生物传感器首次使用的TBO可以为检测其他生物标志物提供新的机会,并促进有机染料在PEC传感场中的应用。

著录项

  • 来源
    《Sensors and Actuators》 |2020年第12期|128782.1-128782.9|共9页
  • 作者单位

    Chongqing Engineering Laboratory of Nanomaterials & Sensor Technologies School of Chemistry and Chemical Engineering Southwest University Chongqing 400715 China;

    Chongqing Engineering Laboratory of Nanomaterials & Sensor Technologies School of Chemistry and Chemical Engineering Southwest University Chongqing 400715 China;

    Chongqing Engineering Laboratory of Nanomaterials & Sensor Technologies School of Chemistry and Chemical Engineering Southwest University Chongqing 400715 China;

    Chongqing Engineering Laboratory of Nanomaterials & Sensor Technologies School of Chemistry and Chemical Engineering Southwest University Chongqing 400715 China;

    Chongqing Engineering Laboratory of Nanomaterials & Sensor Technologies School of Chemistry and Chemical Engineering Southwest University Chongqing 400715 China;

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

    Photoelectrochemical biosensor; Cosensitization strategy; Toluidine blue O dye; P-n heterojunction quenching mode; MicroRNA 21;

    机译:光电化学生物传感器;康康策略;甲苯胺蓝卫生;P-n异质结淬火模式;microRNA 21.;

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