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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Reduced graphene oxide-gold nanoparticlescatalase-based dual signal amplification strategy in a spatial-resolved ratiometric electrochemiluminescence immunoassay
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Reduced graphene oxide-gold nanoparticlescatalase-based dual signal amplification strategy in a spatial-resolved ratiometric electrochemiluminescence immunoassay

机译:降低石墨烯氧化物 - 金纳米甲酰基碳酸酯酶的双信号放大策略在空间分辨的比例电化学荧光免疫测定中

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摘要

A novel spatial-resolved electrochemiluminescent (ECL) ratiometry for cardiac troponin I (cTnI) analysis was developed using resonance energy transfer (RET) and a coreactant consumption strategy for signal amplification. Specifically, the spatial-resolved dual-disk glassy carbon electrodes were modified with CdS nanowires (CdS NWs) and luminol-gold nanoparticles (L-Au NPs) as potential-resolved ECL emitters, respectively. After stepwise immobilization of anti-cTnI and bovine serum albumin on the dual-disk electrodes, the CdS NWs-based electrode, with varied concentrations of cTnI, was used to provide a working signal, whereas the L-Au NPs-based electrode, with a fixed amount of cTnI, was employed to provide the reference signal. To efficiently amplify the working signal on the CdS NWs-based electrode, an anti-cTnIreduced graphene oxide-gold nanoparticles-catalase probe (anti-cTnI-rGO-Au NPs-CAT) was loaded onto the electrode to form a sandwich immunocomplex. The RET from CdS NWs to Au NPs and the coreactant (i.e. H_2O_2) consumption by the CAT generate a significant ECL decrease on the CdS NWs-based electrode in the presence of cTnI. This novel and sensitive ratiometric detection mode for cTnI was achieved using the ratio values of the working signal of the CdS NWs-based electrode and the reference signal of the L-Au NPs-based electrode. The integration of RET and coreactant consumption strategy in the designed spatial-resolved ratiometric platform endows the immunosensor with a wide linear range of 5.0 × 10~(-13)-1.0 × 10~(-7) g mL~(-1) and a low detection limit of 0.10 pg mL~(-1) for cTnI. Furthermore, the method exhibits high accuracy and sensitivity for cTnI determination in human serum samples.
机译:使用共振能量转移(RET)和信号放大的性消耗策略,开发了一种新的新型空间分辨的电化学电化学(ECL)比例的心肌肌钙蛋白I(CTNI)分析。具体地,分别用Cds纳米线(Cds NWS)和Luminol-gold纳米颗粒(L-Au NP)改性空间分辨的双盘玻璃碳电极作为潜在的溶解的ECL发射器。在双盘电极上逐步固定抗CTNI和牛血清白蛋白,使用具有多种CTNI浓度的CDS NWS基电极来提供工作信号,而基于L-Au NPS的电极,具有采用固定量的CTNI来提供参考信号。为了有效地扩增CDS NWS基电极上的工作信号,将抗CTnighious的石墨烯氧化物 - 金纳米颗粒 - 过氧化氢酶探针(抗CTNI-rgo-Au NPS-CAT)加载到电极上以形成夹心免疫激活。从CDS NWS的RET到Au nps和猫的消耗(即h_2O_2)在CTNI存在下产生显着的ECL在CDS NWS基电极上产生显着的ECL降低。使用CDS NWS基电极的工作信号的比率和基于L-AU NPS的电极的参考信号的比率来实现CTNI的这种新颖和敏感的比例检测模式。在设计的空间分辨比率平台中的RET和器官消费策略的整合赋予免疫传感器的宽线性范围为5.0×10〜(-13)-1.0×10〜(-7)G ml〜(-1)和对于CTNI的0.10pg ml〜(-1)的低检测限。此外,该方法对人血清样品中的CTNI测定表现出高精度和敏感性。

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