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通过原位合成的π共轭分子印迹纳米图案对 T-2 毒素进行超灵敏检测。表面等离子体共振与电化学的原位联合研究。

Supersensitive detection of T-2 toxin by the in situ synthesized π-conjugated molecularly imprinted nanopatterns. An in situ investigation by surface plasmon resonance combined with electrochemistry.

机构信息

Defence Research and Development Establishment, Jhansi Road, Gwalior 474002, Madhya Pradesh, India.

出版信息

Biosens Bioelectron. 2011 Jan 15;26(5):2534-40. doi: 10.1016/j.bios.2010.10.050. Epub 2010 Nov 4.

Abstract

A π-conjugated molecularly imprinted polymer (MIP) with nanopatterns for T-2 toxin (T-2) was prepared on SPR chip by in situ electropolymerization of 3-aminophenylboronicacid (3-APBA) with T-2. The complete removal of T-2 from polymer was confirmed in situ by SPR and EIS and also ex situ by SEM, EDAX, fluorescence microscopy and Raman spectroscopy. SEM image of T-2 MIP exhibited nanopatterns due to imprinting of T-2. The MIP of T-2 showed a linear response for T-2 from 2.1 fM to 33.6 fM with a detection limit of 0.1 fM (0.05 pg/mL). In this study, thermodynamic parameters such as change in Gibb's free energy (ΔG), change in enthalpy (ΔH) and change in entropy (ΔS) were determined and the values revealed that the interaction between T-2 and T-2 MIP as spontaneous, endothermic and entropy driven one. Moreover, interactions of very high concentration of interferents with T-2 MIP showed very less response due to the presence of nanopatterns of T-2 in the T-2 MIP. Equilibrium constant (12.7 fM) obtained in this study indicates the super binding affinity of T-2 with T-2 MIP. Moreover, the present methodology provides an outline to develop field-detection equipment capable of detecting T-2 toxin at or well below the guideline concentrations recommended by American subcommittee on military field drinking water.

摘要

一种具有纳米图案的π-共轭分子印迹聚合物(MIP)通过原位电化学聚合 3-氨苯基硼酸(3-APBA)与 T-2 毒素(T-2)在 SPR 芯片上制备。通过 SPR 和 EIS 的原位以及 SEM、EDAX、荧光显微镜和拉曼光谱的非原位证实了 T-2 从聚合物中的完全去除。T-2 MIP 的 SEM 图像由于 T-2 的印迹而呈现纳米图案。T-2 的 MIP 对 T-2 表现出线性响应,范围从 2.1 fM 到 33.6 fM,检测限为 0.1 fM(0.05 pg/mL)。在这项研究中,确定了热力学参数,如吉布斯自由能变化(ΔG)、焓变化(ΔH)和熵变化(ΔS),这些值表明 T-2 与 T-2 MIP 之间的相互作用是自发的、吸热的和熵驱动的。此外,由于 T-2 在 T-2 MIP 中的纳米图案的存在,非常高浓度的干扰物与 T-2 MIP 的相互作用表现出非常小的响应。本研究中获得的平衡常数(12.7 fM)表明 T-2 与 T-2 MIP 具有超强的结合亲和力。此外,本方法为开发能够在推荐的美国军事野战饮用水指导浓度以下或以下检测 T-2 毒素的现场检测设备提供了一个概述。

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