首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Molecular machine and gold/graphene quantum dot hybrid based dual amplification strategy for voltammetric detection of VEGF165
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Molecular machine and gold/graphene quantum dot hybrid based dual amplification strategy for voltammetric detection of VEGF165

机译:用于VEGF165的伏安检测的分子机和金/石墨烯量子点杂交双放大策略

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摘要

Graphene quantum dots (GQDs) were prepared via pyrolysis of citric acid and glutamic acid, then reacted with chlorauric acid to form agold/graphene quantum dot hybrid (Au/GQD), and finally connected with hairpin DNA probe 1 (H1) and thionine (Thi). The H1-Au/GQD-Thi composite is found to be a viable redox probe for electrochemical and aptamer-based determination of vascular endothelial growth factor VEGF165. A dual amplification strategy is employed based on the use of molecular machine and theAu/GQD. Each single VEGF165 molecule can bind two DNA probes via specific aptamer-target recognition to produce a molecular machine. Surface-tethered hairpin DNA 2 (H2) hybridizes with the molecular machine through proximity effect, and the prelocked toehold domain of H2 becomes exposed. This part binds to H1-Au/GQD-Thi to release the molecular machine which then moves to the neighboring H2 upon which a surface programmatic chain reaction is initiated. By continuous molecular machine travel, many H1-Au/GQD-Thi probes are present on the gold electrode surface. This implies an efficient signal amplification capability. The Au/GQD based redox probes in-situ catalyzes the redox activity of thionine and further enhances the detection signal. The aptasensor exhibits ultrahigh sensitivity and selectivity for VEGF165. The square wave voltammetric signal, best measured at -0.18V vs. Ag/AgCl, increases linearly in the1.0 fM to 120 pM VEGF165 concentration range, and the detection limit is 0.3 fM. Conceivably, the method may be applied to other target proteins if the corresponding high-affinity aptamers are available.
机译:石墨烯量子点(GQDS)通过柠檬酸和谷氨酸的热解制备,然后与氯酸反应形成agold /石墨烯斑点杂种(Au / GQD),最后与发夹DNA探针1(H1)和噻吩连接( thi)。发现H1-AU / GQD-THI复合材料是一种可行的氧化还原探针,用于电化学和适于基于血管内皮生长因子VEGF165的测定。采用双扩增策略,基于使用分子机和阿达法/ GQD。每种单一VEGF165分子可以通过特异性适体 - 目标识别结合两个DNA探针以产生分子机。表面束缚的发夹DNA 2(H2)通过邻近效应与分子机杂交,并且H2的预热脚趾域暴露。该部分与H1-AU / GQD-TH结合,释放分子机,然后将其移动到相邻的H2,在该分子机上启动表面编程链反应。通过连续分子机器行程,许多H1-AU / GQD-THI探针存在于金电极表面上。这意味着有效的信号放大能力。基于AU / GQD的氧化还原探针原位催化噻嗪的氧化还原活性并进一步增强检测信号。 Aptasensor展示了VEGF165的超高敏感性和选择性。在-0.18V与Ag / AgCl处最佳测量的方波伏安信号,在1.0 fm至120mVf165浓度范围内线性增加,检测限为0.3 fm。可以想象,如果相应的高亲和力适体可用,则可以将该方法应用于其他靶蛋白。

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