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 >Dendrimer functionalized reduced graphene oxide as nanocarrier for sensitive pseudobienzyme electrochemical aptasensor
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Dendrimer functionalized reduced graphene oxide as nanocarrier for sensitive pseudobienzyme electrochemical aptasensor

机译:树枝状聚合物官能化的氧化石墨烯作为纳米载体用于敏感的假双酶电化学适体传感器

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摘要

A novel sensitive sandwich-type pseudobienzyme aptasensor was developed by dendrimer functionalized reduced graphene oxide (PAMMA-rGO) as nanocarrier and hemin/G-quadruplex as NADH oxidase and HRP-mimicking DNAzyme. Greatly enhanced sensitivity for the target thrombin was achieved by using a dual signal amplification strategy: first, the PAMMA-rGO not only constructed an effective platform for anchoring larger amounts of electron mediator thionine (TH) and hemin/G-quadruplex bioelectrocatalytic complex with high stability and bioactivity but also accelerated the electron transfer process assisted by the conductive rGO with amplified electrochemical signal output. Second, the hemin/G-quadruplex simultaneously acting as an NADH oxidase and HRP-mimicking DNAzyme for constructing pseudobienzyme amplifying system could in situ biocatalyze formation of H_2O_2 with high local concentrations and low transfer loss that lead to obvious signal enhancements. On the basis of the dual signal amplification strategy of PAMMA-rGO and the pseudobienzyme amplifying, the developed aptasensor could respond to 0.1pM thrombin with a linear calibration range from 0.0002 to 30.0nM. Compared with protein enzymes assisted bienzyme aptasensor, this new aptasensor avoided the fussy labeling process and the spatial distribution of each sequentially acting enzyme, which provided ideal candidate for the development of sensitive and simple bioanalytical platform.
机译:以树状大分子官能化的还原氧化石墨烯(PAMMA-rGO)为纳米载体,以血红素/ G-四链体为NADH氧化酶和模仿HRP的DNAzyme,开发了一种新型的敏感的三明治型假双酶适体传感器。通过使用双重信号放大策略,大大提高了对目标凝血酶的敏感性:首先,PAMMA-rGO不仅构建了一个有效的平台,可锚定大量的电子介质亚硫氨酸(TH)和高血红素/ G-四链体生物电催化复合物稳定性和生物活性,但在导电rGO的协助下加速了电子转移过程,并放大了电化学信号输出。其次,血红素/ G-四链体同时充当NADH氧化酶和模拟HRP的DNA酶来构建假双酶扩增系统,可以原位生物催化H_2O_2的形成,具有高局部浓度和低转移损失,从而导致明显的信号增强。在PAMMA-rGO双信号放大策略和假双酶放大的基础上,开发的适体传感器可响应0.1pM凝血酶,线性校正范围为0.0002至30.0nM。与蛋白质酶辅助的双酶适体传感器相比,这种新型适体传感器避免了繁琐的标记过程和每个顺序起作用的酶的空间分布,从而为开发灵敏而简单的生物分析平台提供了理想的候选者。

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