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竞争多机制驱动电化学发光检测 8-羟基-2'-脱氧鸟苷。

Competitive Multiple-Mechanism-Driven Electrochemiluminescent Detection of 8-Hydroxy-2'-deoxyguanosine.

机构信息

Jiangsu Engineering Laboratory of Smart Carbon-Rich Materials and Device, Jiangsu Province Hi-Tech Key Laboratory for Bio-Medical Research, School of Chemistry and Chemical Engineering, Medical School, Southeast University , Nanjing 211189, China.

出版信息

J Am Chem Soc. 2018 Feb 28;140(8):2801-2804. doi: 10.1021/jacs.8b00515. Epub 2018 Feb 19.

Abstract

Natural selection over billions of years has developed highly effective in vivo signal transduction that is often governed by a series of competitive multiple mechanisms. Several artificial signal transduction pathways have inspired numerous biosensing systems, but most of these are driven by a single mechanism. Herein we describe a multiple-mechanism-driven electrochemiluminescent (ECL) biosensor that utilizes competitive catalytic and steric hindrance effects by assembling hemin/G-quadruplex on carbon nitride nanosheets. Taking the detection of 8-hydroxy-2'-deoxyguanosine (8-OHdG) as example, the dynamic ranges of the detectable concentrations from the different mechanisms were integrated into a single sensor interface. Moreover, the detection sensitivity was more precisely controlled by the competition between the two mechanisms and inherently boosted compared with that of single-mechanism-driven detection. Going beyond the conventional single-mechanism-driven biosensing, the elaborate biomimetic coupling of multiple mechanisms in a single interface may open a new approach for future multiplexed biosensing.

摘要

数十亿年来的自然选择已经发展出了高度有效的体内信号转导系统,这些系统通常由一系列竞争性的多重机制控制。一些人工信号转导途径激发了许多生物传感系统,但这些系统大多由单一机制驱动。在这里,我们描述了一种由多重机制驱动的电致化学发光(ECL)生物传感器,它通过将血红素/G-四链体组装在氮化碳纳米片上利用竞争催化和空间位阻效应。以检测 8-羟基-2'-脱氧鸟苷(8-OHdG)为例,不同机制的可检测浓度的动态范围被整合到单个传感器界面中。此外,通过两种机制之间的竞争,可以更精确地控制检测灵敏度,并且与单机制驱动检测相比固有地提高了灵敏度。超越传统的单机制驱动生物传感,在单个界面中精细仿生偶联多种机制可能为未来的多路复用生物传感开辟新途径。

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