首页> 外文期刊>Journal of Hazardous Materials >A label-free aptasensor for ultrasensitive Pb~(2+) detection based on electrochemiluminescence resonance energy transfer between carbon nitride nanofibers and Ru(phen)_3~(2+)
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A label-free aptasensor for ultrasensitive Pb~(2+) detection based on electrochemiluminescence resonance energy transfer between carbon nitride nanofibers and Ru(phen)_3~(2+)

机译:基于氮化碳纳米纤维与Ru(phen)_3〜(2+)之间电化学发光共振能量转移的超灵敏Pb〜(2+)检测用无标记适体传感器

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摘要

A label-free aptasensor was developed for ultrasensitive detection of Pb2+ based on electrochemiluminescence resonance energy transfer (ECL-RET) from graphitic carbon nitride nanofibers (CNNFs) to Ru(phen)(3)(2+). The CNNFs synthesized via a facile two-step hydrolysis-electrolysis strategy showed intense and stable ECL signal by taking advantages of amplifying and stabilizing effect of carbon nanotubes and Au nanoparticles. After the specific hybridation between capture DNA and Pb2+ specific aptamer, Ru(phen)(3)(2+) could be captured onto CNNFs modified electrode by effectively intercalating into the grooves of double-strand DNA, thus triggering the ECL-RET and leading to highly enhanced ECL intensity. The presence of Pb2+ would result in the detachment of Ru(phen)(3)(2+) and then the inhibition of ECL-RET. Then Pb2+ concentration could be quantified based on ECL change before and after introduction of Pb2+. The target recycling based on exonuclease I (Exo I) mediated digestion of Pb2+-aptamer complex was implemented to further improve the sensitivity. These synergistic amplification strategies enabled the aptasensor to be ultrasensitive for Pb2+ determination with a detection limit of 0.04 pM. The proposed probe was utilized to analyze environmental samples with satisfactory results.
机译:开发了一种基于电化学发光共振能量从石墨化碳氮化物纳米纤维(CNNFs)到Ru(phen)(3)(2+)的电化学发光共振能量转移(ECL-RET)的无标记适体传感器,用于Pb2 +的超灵敏检测。通过简便的两步水解-电解策略合成的CNNFs利用碳纳米管和Au纳米粒子的放大和稳定作用,显示出强烈而稳定的ECL信号。在捕获DNA和Pb2 +特异性适体之间特异性杂交后,Ru(phen)(3)(2+)可以通过有效地插入双链DNA的凹槽中而被捕获到CNNFs修饰的电极上,从而触发ECL-RET并导致增强ECL强度。 Pb2 +的存在将导致Ru(phen)(3)(2+)脱离,然后抑制ECL-RET。然后可以根据引入Pb2 +前后的ECL变化来定量Pb2 +的浓度。基于核酸外切酶I(Exo I)介导的Pb2 +-适体复合物消化的目标回收被实施,以进一步提高灵敏度。这些协同扩增策略使适体传感器对Pb2 +的测定具有超灵敏性,检测极限为0.04 pM。提出的探针用于分析环境样品,结果令人满意。

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