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基于磁致变色复合平台的微流控比率型光电流生物传感器:用于磁光电化学生物分析的概念验证研究。

Microfluidic Ratiometric Photoelectrochemical Biosensor Using a Magnetic Field on a Photochromic Composite Platform: A Proof-of-Concept Study for Magnetic-Photoelectrochemical Bioanalysis.

机构信息

Collaborative Innovation Center for Green Chemical Manufacturing and Accurate Detection, Key Laboratory of Interfacial Reaction & Sensing Analysis in Universities of Shandong, University of Jinan, Jinan 250022, P. R. China.

出版信息

Anal Chem. 2021 Oct 12;93(40):13680-13686. doi: 10.1021/acs.analchem.1c03171. Epub 2021 Sep 29.

Abstract

Integrating a microfluidic sensor with a ratiometric photoelectrochemical (PEC) strategy to build a bioanalysis device for actual sample testing is often limited to large-volume space-resolution equipment and wavelength-dependent or potential-dependent paired photoactive materials. This work reports a microfluidic ratiometric magnetic-photoelectrochemical (M-PEC) biosensor on the photochromic composite platform to solve the above problems. In particular, as a proof-of-concept study, the platform BiWO/amorphous BiOCl nanosheets/BiS (p-BWO-s) mediated by photochromic color centers and the magnetic photoactive secondary antibody marker ZnFeO@AgO are integrated on the microfluidic biosensor. By enhancement of the photochromic color centers, p-BWO-s outputs a considerable photocurrent signal. Meanwhile, the photoactivity of the secondary antibody marker can be changed with a magnetic field; thus, different photocurrent signals can be obtained to realize ratiometric detection. The quenching photocurrent signal without the magnetic field and the difference photocurrent signal under the magnetic field are quantitatively related to the target concentration, which unfolds a novel general strategy for bioanalysis. Different from traditional ratiometric PEC biosensors, this work characterizes the first ratiometric PEC biosensor based on an external magnetic field. Generally speaking, combined with different biorecognition cases, this scheme with good expansibility brings a unique new perspective.

摘要

将微流控传感器与比率光电化学 (PEC) 策略集成,以构建用于实际样品测试的生物分析设备,通常受到大体积空间分辨率设备以及波长相关或电位相关的成对光活性材料的限制。本工作报告了一种基于光致变色复合平台的微流控比率磁光电化学 (M-PEC) 生物传感器,以解决上述问题。特别是,作为概念验证研究,将光致变色色心介导的平台 BiWO/无定形 BiOCl 纳米片/BiS(p-BWO-s) 和磁性光活性二级抗体标记物 ZnFeO@AgO 集成在微流控生物传感器上。通过增强光致变色色心,p-BWO-s 输出可观的光电流信号。同时,二级抗体标记物的光活性可以随磁场变化,从而可以获得不同的光电流信号,实现比率检测。无磁场时的猝灭光电流信号和磁场下的差分光电流信号与目标浓度呈定量关系,为生物分析展开了一种新颖的通用策略。与传统的比率 PEC 生物传感器不同,本工作表征了第一个基于外部磁场的比率 PEC 生物传感器。一般来说,结合不同的生物识别情况,这种具有良好扩展性的方案带来了独特的新视角。

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