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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >An amperometric aptasensor for ultrasensitive detection of sulfadimethoxine based on exonuclease-assisted target recycling and new signal tracer for amplification
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An amperometric aptasensor for ultrasensitive detection of sulfadimethoxine based on exonuclease-assisted target recycling and new signal tracer for amplification

机译:基于外切核酸酶辅助目标再循环和新信号示踪剂进行扩增的磺酰嘧啶超细嘧啶超细嘧啶的安培式Aptasensor

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摘要

The risks caused by veterinary drug residues in animal foodstuffs are of great concern to the public. Accordingly, this work reported an amperometric aptasensor for highly sensitive detection of sulfadimethoxine (SDM). Functionalised fullerene (C-60)-doped graphene (C-60-rGO) nanohybrid was designed and prepared to load electroactive toluidine blue (Tb) through the pi-pi stacking, forming a C-60-rGO-Tb nanocomposite. Furthermore, the as-prepared nanocomposite was decorated with gold nanoparticles and used for the immobilization of signal probes to form a new signal tracer, which was coupled with exonuclease-catalyzed target recycling for amplification. To construct the aptasensor, a thiolated double-stranded DNA (dsDNA) of aptamer-capture probe complex was immobilised on a gold electrode surface through strong Au-S bond. In the presence of SDM, the aptamer preferred to form an aptamer-SDM complex, which led to the dissociation of dsDNA. Then aptamer could be selectively digested by RecJ(f) exonuclease, resulting in liberated SDM molecules to participate in the next reaction cycling and achieve signal amplification. Then, capture probes released from the cyclic processes were hybridized with the signal tracer, which could further enhance electrochemical signal responses. On the basis of cascade signal amplification strategies, the proposed aptasensor exhibited a wide linear range from 10 fg/mL to 10 ng/mL for SDM with high sensitivity, good selectivity and satisfactory stability.
机译:动物食品中兽药残留造成的风险对公众来说非常关心。因此,该工作报告了磺胺嘧啶(SDM)的高敏感检测的安培序列传感器。官能化富勒烯(C-60) - 设计并制备通过PI-PI堆叠将电活性甲苯胺蓝(TB)加载C-60-rgo-Tb纳米复合材料的设计并制备并制备。此外,用金纳米颗粒装饰有制备的纳米复合材料并用于固定信号探针以形成新的信号示踪剂,其与外切核酸酶催化的靶再循环结合进行扩增。为了构建Aptasensor,通过强AU-S键将Aptamer-Capture探针复合物的硫醇化双链DNA(DSDNA)固定在金电极表面上。在SDM的存在下,适体优选形成Aptamer-SDM复合物,其导致DSDNA的解离。然后可以通过RECJ(F)外切核酸酶选择性地消化适体,得到释放的SDM分子,以参与下一个反应循环并达到信号扩增。然后,从循环过程中释放的捕获探针与信号示踪剂杂交,这可以进一步增强电化学信号响应。在级联信号放大策略的基础上,所提出的Aptasensor对于具有高灵敏度,良好的选择性和令人满意的稳定性,表现出从10fg / ml至10ng / ml的宽线性范围。

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