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基于普鲁士蓝-金纳米复合材料修饰电极上吡咯-1-丙酰基-丙氨酰壳寡糖和吡咯作为双功能单体对利巴韦林的分子印迹电化学传感器的测定。

Determination of ribavirin by molecularly imprinted electrochemical sensors using pyrro-1-propionyl-alaninoyl-chitooligosaccharide and pyrrole as bifunctional monomers on Prussian blue-gold nanocomposite films.

机构信息

Yangzhou Polytechnic institue, Yangzhou, Jiangsu 225127, PR China.

Yangzhou Polytechnic institue, Yangzhou, Jiangsu 225127, PR China.

出版信息

J Pharm Biomed Anal. 2023 Jun 15;230:115378. doi: 10.1016/j.jpba.2023.115378. Epub 2023 Mar 30.

DOI:10.1016/j.jpba.2023.115378
PMID:37044006
Abstract

Herein, we developed a highly sensitive imprinted electrochemical sensor for the trace detection of ribavirin (RBV) using pyrrole (PYR) and pyrro-1-propionyl-alaninoyl-chitooligosaccharides (PPACO) as bifunctional monomers on Prussian blue-gold nanocomposite films. PPACO had strong molecular effect on RBV molecule and was selected by quantitative calculations. After the deposition of the Prussian blue-gold nanocomposite on a glassy carbon electrode (GCE) surface, a 4-aminothiophenol layer successfully self-assembled on the surface. Subsequently, the molecularly imprinted membrane (MIM) was subjected to electrochemical polymerization on the electrode surface using RBV as the template and PPACO and PYR as the two monomers. After eluting the RBV molecules from the MIM, the fabricated RBV-MIM/Fn-Au-PB/GCE exhibited the specific adsorption of RBV. Under optimal conditions, differential pulse voltammetry (DPV) was used to measure the performance of the synthesized sensor, which exhibited a linear relationship between the decreasing peak current and RBV concentration from 0.015 to 3.5 μM with a low detection limit of 3 nM (S/N = 3). As a proof of concept, RBV-MIM/Fn-Au-PB/GCE was also applied to monitor the RBV content in RBV granules. It showed a satisfactory recovery (96.5-99.2%) with a relative standard deviation of less than 3.5% (n = 5), and thus, we believe it has potential for practical applications.

摘要

在此,我们使用吡咯(PYR)和吡咯-1-丙酰基-壳寡糖(PPACO)作为双功能单体,在普鲁士蓝-金纳米复合材料薄膜上开发了一种用于痕量检测利巴韦林(RBV)的高灵敏度印迹电化学传感器。PPACO 对 RBV 分子具有很强的分子作用,并通过定量计算进行了选择。在普鲁士蓝-金纳米复合材料沉积在玻璃碳电极(GCE)表面之后,4-巯基苯胺层成功地自组装在表面上。随后,使用 RBV 作为模板,PPACO 和 PYR 作为两个单体,在电极表面上进行分子印迹膜(MIM)的电化学聚合。从 MIM 洗脱 RBV 分子后,制备的 RBV-MIM/Fn-Au-PB/GCE 表现出 RBV 的特异性吸附。在最佳条件下,使用差分脉冲伏安法(DPV)测量合成传感器的性能,其在 0.015 至 3.5 μM 的 RBV 浓度范围内表现出与降低的峰电流呈线性关系,检测限低至 3 nM(S/N = 3)。作为概念验证,RBV-MIM/Fn-Au-PB/GCE 还用于监测 RBV 颗粒中的 RBV 含量。它显示出令人满意的回收率(96.5-99.2%),相对标准偏差小于 3.5%(n = 5),因此,我们相信它具有实际应用的潜力。

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