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功能核酸修饰的光寻址电位传感器的研究:X 射线光电子能谱、生化分析及模拟。

Studies of Functional Nucleic Acids Modified Light Addressable Potentiometric Sensors: X-ray Photoelectron Spectroscopy, Biochemical Assay, and Simulation.

机构信息

College of Electronic Information and Optic Engineering , Nankai University , Weijin Road , Tianjin , Nankai District , 300071 , China.

出版信息

Anal Chem. 2018 Apr 17;90(8):5153-5161. doi: 10.1021/acs.analchem.7b05261. Epub 2018 Mar 27.

Abstract

Functional nucleic acids (FNAs) are promising sensing elements, and extensive interests are excited to integrate FNAs with transducers for biochemical assays. However, efforts for FNAs modified light-addressable-potentiometric-sensor (FNA-LAPS) are rarely reported. LAPS is a versatile transducer with electrolyte-insulator-semiconductor (EIS) structure and can respond almost to any surface electronic deviation. Herein, organized studies for FNA-LAPS including experiments, theoretical derivations, and MEDICI (Synopsys) simulations are presented using Pb-DNAzyme GR-5 and Ag-aptamer as proof-of-concepts, which are typical FNAs with distinctive sensing strategies. First, the on-LAPS occurrences of FNAs and their particular sensing actions are evidenced by tracking their X-ray photoelectron spectroscopy (XPS) core spectra of N 1s, P 2p, C 1s, Ag, etc. Then, applications of FNA-LAPS are executed by a homemade and mobile-phone controlled system, the limit-of-detection is 0.01 ppb, sensitivities are 2.86 (Pb) and 1.53 (Ag) mV/log(ppb) ( R = 0.98), respectively. Furthermore, a charge and resistor mechanism (C&R) is proposed to illustrate the measured LAPS responding for FNAs and their sensing behaviors (Pb-mediated cleavage and Ag-mediated folding), based on carefully analyzing basic LAPS' experimental data and MEDICI calculated distributions of build-in potentials, energy-bands, carriers, etc., at the EIS microinterface (semiconductor side). Finally, demonstrations for C&R based FNA-LAPS principle are provided by the use of MEDICI, as a means to bridge experiments and theoretical deductions. In general, a cross-study for FNA-LAPS is proposed including XPS characterization, biochemistry detection, theoretical analysis, and MEDICI simulation, it is believed their powerful combination would provide an ideal workstation for analytical chemistry applications, not only the traditional determinations but also facilitations for investigating FNAs' configurational transformations.

摘要

功能核酸(FNAs)是一种很有前途的传感元件,人们对将 FNAs 与换能器集成用于生化分析产生了浓厚的兴趣。然而,将 FNAs 修饰到光寻址电位传感器(FNA-LAPS)上的研究却很少有报道。LAPS 是一种具有电解质-绝缘体-半导体(EIS)结构的多功能换能器,可以响应几乎任何表面电子偏离。本文使用 Pb-DNAzyme GR-5 和 Ag-aptamer 作为概念验证,对 FNA-LAPS 进行了包括实验、理论推导和 MEDICI(Synopsys)模拟的综合研究,它们是具有独特传感策略的典型 FNAs。首先,通过跟踪 FNAs 的 X 射线光电子能谱(XPS)N 1s、P 2p、C 1s、Ag 等核心谱线,证明了 FNAs 在 LAPS 上的存在及其特定的传感作用。然后,通过自制的、可由手机控制的系统来应用 FNA-LAPS,检测限为 0.01 ppb,灵敏度分别为 2.86(Pb)和 1.53(Ag)mV/log(ppb)(R = 0.98)。此外,提出了一种电荷和电阻机制(C&R)来解释测量的 LAPS 对 FNAs 的响应及其传感行为(Pb 介导的切割和 Ag 介导的折叠),该机制是基于仔细分析基本 LAPS 的实验数据和 MEDICI 计算的内置电势、能带、载流子等分布在 EIS 微界面(半导体侧)上。最后,通过使用 MEDICI 为基于 C&R 的 FNA-LAPS 原理提供了演示,作为连接实验和理论推导的一种手段。总的来说,提出了一种对 FNA-LAPS 的交叉研究,包括 XPS 表征、生化检测、理论分析和 MEDICI 模拟,相信它们的强大结合将为分析化学应用提供一个理想的工作站,不仅可以进行传统的测定,还可以促进对 FNAs 构象转变的研究。

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