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The synergistic effect of Au-COF nanosheets and artificial peroxidase Au@ZIF-8(NiPd) rhombic dodecahedra for signal amplification for biomarker detection

机译:的协同效应Au-COF nanosheets和人工过氧化物酶Au@ZIF-8 (NiPd)菱形十二面体的信号放大生物标志物检测

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摘要

Here, a new type of signal amplification strategy is proposed employing Au nanoparticle (AuNP)-functionalized covalent organic framework (Au-COF) nanosheets and AuNP functionalized ZIF-8(NiPd) (Au@ZIF-8(NiPd)) rhombic dodecahedra nanocomposites for sandwich electrochemical sensor construction. The peroxidase mimics Au@ZIF-8(NiPd) took the place of natural enzymes in enzyme-assisted amplification strategies, both acting as catalysts for H2O2 reduction for signal amplification, and serving as ideal nanocarriers for signal probe anchoring. The cancer biomarker thrombin (TB) was selected as the target. Thrombin binding aptamers (TBA 2) were fixed on Au@ZIF-8(NiPd), and the obtained TBA 2-Au@ZIF-8(NiPd) bioconjugates were employed as tracer labels, and TB was sandwiched between the tracer labels and capture probe TBA 1 which were immobilized on the Au-COF nanosheet modified electrode. Au-COFs with a high specific area, super electroconductivity, and uniformly distributed AuNPs were utilized as the electrode substrate to fix TBA 1. Exploiting the sandwich method, the proposed TB aptasensor exhibited a wide linear range of 0.1 pM to 20 nM with a low detection limit of 15 fM (S/N = 3). The ingenious sensing strategy enriched the application diversity of the artificial enzyme and showed promise in research and development of point-of-care diagnostics.
机译:在这里,一种新型的信号放大策略提出了利用Au纳米颗粒吗(AuNP)功能化共价有机框架(Au-COF) nanosheets AuNP功能化纳米复合材料对三明治电化学传感器结构。Au@ZIF-8 (NiPd)取代天然酶在enzyme-assisted放大策略,作为催化剂对过氧化氢还原信号放大,作为理想的人们信号探测锚定。凝血酶(TB)被选为目标。凝血酶结合寡核苷酸适配子(稍后通知2)被固定在Au@ZIF-8 (NiPd),稍后通知2-Au@ZIF-8 (NiPd)物了示踪剂标签,和结核病被夹在了中间示踪剂标签和捕获探针1是稍后通知固定在Au-COF nanosheet修改电极。超级导电度,均匀分布式AuNPs是利用电极基质修复稍后通知1。方法,提出结核病aptasensor展出线性范围宽的0.1点到20 nM低检出限15调频(S / N = 3)。巧妙的传感策略丰富应用程序多样性的人工酶和显示承诺的研究和开发现场即时诊断。

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