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二合一:基于便携式压电和等离子激元激子效应的协同增强光电化学生物传感器,用于即时检测低丰度癌症标志物。

Two-in-one: Portable piezoelectric and plasmonic exciton effect-based co-enhanced photoelectrochemical biosensor for point-of-care testing of low-abundance cancer markers.

机构信息

College of Ecological Environment and Urban Construction, Fujian University of Technology, Fuzhou, 350118, People's Republic of China.

College of Ecological Environment and Urban Construction, Fujian University of Technology, Fuzhou, 350118, People's Republic of China.

出版信息

Biosens Bioelectron. 2022 Sep 1;211:114413. doi: 10.1016/j.bios.2022.114413. Epub 2022 May 20.

Abstract

In-depth exploration of the local surface plasmon resonance and piezoelectric effects associated with metal can help develop efficient biosensors. Here, we presented for the first time the localized surface plasmon resonance (LSPR) and piezoelectric effects co-enhance the construction of an efficient intra-body phase electric field for the construction of efficient photoelectrochemical (PEC) biosensors. Briefly, the LSPR enhancement and piezoelectric enhancement effects between Ag nanoparticles and the piezoelectric material NaNbO were investigated in a PEC biosensor system under the excitation of portable UV light. Notably, the simplified treatment of the basic building blocks of the PEC sensor, including a handheld UV flashlight instead of a physical excitation light source and a digital multimeter instead of an electrochemical workstation. The capture and immunoincubation process of target PSA occurs on separated microtiter plates and hydrogen peroxide, generated by enzyme-linked immunization, induces the directional separation of electrons and holes in the composite heterogeneous material under the excitation of light. The coupling with a digital multimeter allows for real-time monitoring of photocurrents. Further, the effect of Ag deposition on piezoelectric perovskite NaNbO was obtained by density functional theory (DFT) calculations. Impressively, under optimized conditions, the system exhibits an ultra-wide linear range and ultra-low detection limits for the target PSA. The system is also comparable to commercially available ELISA kits at the 95% confidence level. This work provides a novel idea of enhanced PEC biosensor for rapid and accurate detection of cancer-related proteins.

摘要

深入研究与金属相关的局域表面等离子体共振和压电效应有助于开发高效的生物传感器。在这里,我们首次提出了局域表面等离子体共振(LSPR)和压电效应的协同增强,构建了高效的体内相电场,用于构建高效的光电化学(PEC)生物传感器。简而言之,在便携式 UV 光激发下,研究了 Ag 纳米粒子与压电材料 NaNbO 之间的 LSPR 增强和压电增强效应在 PEC 生物传感器系统中的作用。值得注意的是,PEC 传感器的基本构建块的简化处理,包括手持 UV 手电筒代替物理激发光源和数字多用表代替电化学工作站。目标 PSA 的捕获和免疫孵育过程发生在分离的微量滴定板上,并且酶联免疫产生的过氧化氢在光的激发下诱导复合材料异质材料中电子和空穴的定向分离。与数字多用表的耦合允许实时监测光电流。此外,通过密度泛函理论(DFT)计算获得了 Ag 沉积对压电钙钛矿 NaNbO 的影响。令人印象深刻的是,在优化条件下,该系统对目标 PSA 表现出超宽的线性范围和超低的检测限。该系统在 95%置信水平上也可与市售 ELISA 试剂盒相媲美。这项工作为快速准确地检测与癌症相关的蛋白质提供了增强 PEC 生物传感器的新想法。

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