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首页> 外文期刊>Analytical chemistry >Ultrasensitive Self-Powered Aptasensor Based on Enzyme Biofuel Cell and DNA Bioconjugate: A Facile and Powerful Tool for Antibiotic Residue Detection
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Ultrasensitive Self-Powered Aptasensor Based on Enzyme Biofuel Cell and DNA Bioconjugate: A Facile and Powerful Tool for Antibiotic Residue Detection

机译:基于酶生物燃料细胞和DNA生物缀合物的超敏感自我动力的AptaSensor:一种抗生素残留检测的容易和强大的工具

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摘要

Herein, we reported a novel ultrasensitive one-compartment enzyme biofuel cells (EBFCs)-based self-powered aptasensing platform for antibiotic residue detection. By taking full advantage of the unique features of both EBFCs-based self-powered sensors and aptamers, the as-proposed aptasensing platform has the merits of simple instrumentation, anti-interference ability, high selectivity, and low cost. In this study, DNA bioconjugate, i.e., SiO2@gold nanoparticles-complementary strand of aptamer (SiO2@AuNPs-csDNA), was elaborately designed and played a key role in blocking the mass transport of glucose to the bioanode. While in the presence of the target antibiotic, SiO2@AuNPs-csDNA bioconjugate broke away from the bioanode due to the aptamer recognition of the target. Without the blocking of glucose by the DNA bioconjugate, a significantly elevated open circuit voltage of the EBFCs-based aptasensor was obtained, whose amplitude was dependent on the antibiotic concentration. In addition, this proposed aptasensor was the first reported self-powered aptasensing platform for antibiotic determination and featured high sensitivity owing to the elaborate design of the DNA bioconjugate modified bioanode of EBFC, which was superior to those previously reported in the literature. Furthermore, due to the anti-interference ability and the excellent selectivity of the aptasensor, no special sample pretreatment was needed for the detection of antibiotics in milk samples. Therefore, the proposed EBFCs-based self-powered aptasensor has a great promise to be applied as a powerful tool for on-site assay in the field of food safety.
机译:在此,我们报道了一种新型超敏感的单室酶生物燃料细胞(EBFC),用于基于抗生素残留检测的自我供电的Aptasening平台。通过充分利用基于EBFCS的自动传感器和适体的独特功能,AS提出的Aptasening平台具有简单的仪器,抗干扰能力,选择性和低成本的优点。在该研究中,在诱导葡萄糖对生物孔的葡萄糖的大规模转运方面设计并发挥关键作用,DNA生物缀合物,即,SiO 2乙型纳米颗粒 - 互补链(SiO 2 -CSDNA),在阻断葡萄糖的大规模转运中进行了精心设计和发挥的关键作用。在存在靶抗生素的存在时,SiO2 @ AUNPS-CSDNA生物缀合物由于靶标识的适体识别而脱离生物潮。在没有通过DNA生物缀合物阻断葡萄糖的阻断,获得了基于EBFCS的Aptasentor的显着升高的开路电压,其振幅取决于抗生素浓度。此外,这一提出的Aptasensor是第一个报告的用于抗生素测定的自我动力APTasensing平台,并且由于EBFC的DNA生物缀合物改性生物天然的精细设计而设计的高灵敏度,其优于先前在文献中报道的那些。此外,由于抗干扰能力和Aptasensor的优异选择性,未经特殊的样品预处理需要在牛奶样品中检测抗生素。因此,所提出的基于EBFCS的自动APTASENSOR具有很大的承诺,可以应用于食品安全领域的现场测定的强大工具。

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  • 来源
    《Analytical chemistry》 |2017年第3期|共7页
  • 作者单位

    Qingdao Agr Univ Coll Chem &

    Pharmaceut Sci Qingdao 266109 Peoples R China;

    Qingdao Agr Univ Coll Chem &

    Pharmaceut Sci Qingdao 266109 Peoples R China;

    Qingdao Agr Univ Coll Chem &

    Pharmaceut Sci Qingdao 266109 Peoples R China;

    Qingdao Agr Univ Coll Chem &

    Pharmaceut Sci Qingdao 266109 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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