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用于灵敏测定加标人血浆中米拉贝隆的丝网印刷电位平台的设计;分子对接与传感器优化

Design of screen-printed potentiometric platform for sensitive determination of mirabegron in spiked human plasma; molecular docking and transducer optimization.

作者信息

Mouhamed Aya A, Eltanany Basma M, Mostafa Nadia M, Elwaie Tamer A, Nadim Ahmed H

机构信息

Department of Analytical Chemistry, Faculty of Pharmacy, Cairo University Kasr El-Aini St. Cairo 11562 Egypt

Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Cairo University Kasr El-Aini St. Cairo 11562 Egypt.

出版信息

RSC Adv. 2023 Aug 1;13(33):23138-23146. doi: 10.1039/d3ra02343e. eCollection 2023 Jul 26.

Abstract

The integration of molecular modelling simulation and electrochemical sensors is of high interest. Herein, for the first time, a portable solid-contact potentiometric electrode was designed for the sensitive determination of mirabegron (MIR) in human plasma and pharmaceutical formulation. A two-step optimization protocol was investigated for the fabrication of an ion on sensing polymeric membrane. First, molecular docking was used for optimum ionophore selection. Calix[6]arene showed the highest affinity towards MIR with a better docking score (-4.35) and potential energy (-65.23) compared to other calixarene derivatives. Second, carbon nanotubes and gold nanoparticles were investigated as ion-electron transducers using a drop-casting procedure. Gold nanoparticle-based sensors showed better slope, potential stability, and rapid response compared to carbon nanotubes. The proposed solid contact sensors (V-VII) showed comparable sensitivity and ease of handling compared to liquid contact sensors (I-IV). The optimized gold nanoparticles sensor VII produced a Nernstian response over the range of 9.77 × 10 to 1 × 10 M with LOD of 2.4 × 10 M. It has also been used to determine MIR in its pharmaceutical formulation in the presence of a co-formulated antioxidant butylated hydroxytoluene and spiked human plasma. This would offer a feasible and economic platform for monitoring MIR in pharmaceutical preparation and biological fluids.

摘要

分子建模模拟与电化学传感器的集成备受关注。在此,首次设计了一种便携式固体接触电位电极,用于灵敏测定人血浆和药物制剂中的米拉贝隆(MIR)。研究了一种两步优化方案来制备离子传感聚合物膜。首先,分子对接用于最佳离子载体的选择。与其他杯芳烃衍生物相比,杯[6]芳烃对MIR表现出最高的亲和力,具有更好的对接分数(-4.35)和势能(-65.23)。其次,采用滴铸法研究了碳纳米管和金纳米颗粒作为离子-电子换能器。与碳纳米管相比,基于金纳米颗粒的传感器表现出更好的斜率、电位稳定性和快速响应。与液体接触传感器(I-IV)相比,所提出的固体接触传感器(V-VII)表现出相当的灵敏度和易于操作的特点。优化后的金纳米颗粒传感器VII在9.77×10至1×10 M范围内产生能斯特响应,检测限为2.4×10 M。它还被用于在存在共配制抗氧化剂丁基羟基甲苯的情况下测定其药物制剂中的MIR以及加标的人血浆中的MIR。这将为监测药物制剂和生物流体中的MIR提供一个可行且经济的平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/385d/10391324/6a7ad42f45bf/d3ra02343e-f1.jpg

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