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Cost-Effective Potentiometric Platforms Modified with Multi-Walled Carbon Nanotubes (MWCNTs) and Based on Imprinted Receptors for Fluvoxamine Assessment

机译:具有成本效益的电位计平台经修饰的多壁碳纳米管(MWCNT)并基于用于伏洛沙明评估的印迹受体

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摘要

A simple, efficient and reliable analytical method was developed and used for the determination of the fluvoxamine drug (FLV) in pharmaceutical preparations and biological fluids. The method is based on the cost-effective screen-printed platform for the potential transduction of the drug. Host-tailored molecular imprinting polymer (MIP) was integrated with the potentiometric platform as a recognition receptor, in which FLV, acrylamide (AAm), ethylene glycol dimethacrylate (EGDMA) and acetonitrile were used as a template, functional monomer, cross-linker, and solvent, respectively. MIP particles were dispersed in plasticized poly (vinyl chloride) (PVC) and the membrane was drop-casted on carbon screen-printed electrode. The MIP, in addition to non-imprinted polymers (NIP), was characterized and the binding experiment revealed high affinity and adsorption capacity of MIP towards FLV. The proposed sensor displayed near-Nernstian cationic slope of 55.0 ± 0.8 mV/decade ( = 0.999) with a low detection limit of 4.8 × 10 mol/L over a wide pH range (3.0–8.5). The electrochemical features of the proposed sensors including electrochemical impedance spectroscopy (EIS) and chronopotentiometry measurements (CP) in the presence of multi-walled carbon nanotubes (MWCNTs) as a solid contact transducer were also investigated. The applications of the proposed sensor for the determination of FLV in different dosage forms with recovery values (98.8%–101.9%) and (97.4%–101.1%), respectively compared with the reference HPLC method with acceptedFandt-student tests values at the 95% confidence level.
机译:开发了一种简单,有效和可靠的分析方法,并将其用于测定药物制剂和生物液中的氟伏沙明药物(FLV)。该方法基于具有成本效益的丝网印刷平台,可进行药物的潜在转导。主体定制的分子印迹聚合物(MIP)与电位平台集成为识别受体,其中FLV,丙烯酰胺(AAm),乙二醇二甲基丙烯酸酯(EGDMA)和乙腈作为模板,功能单体,交联剂,和溶剂。将MIP颗粒分散在增塑的聚氯乙烯(PVC)中,然后将膜滴铸在碳丝网印刷电极上。除非印迹聚合物(NIP)以外,还对MIP进行了表征,结合实验表明MIP对FLV具有高亲和力和吸附能力。拟议中的传感器在宽pH范围(3.0–8.5)范围内显示出55.0±0.8 mV /十倍的近能斯特阳离子斜率(= 0.999),低检测限4.8×10 mol / L。还研究了所提出的传感器的电化学特性,包括电化学阻抗谱(EIS)和计时电位测量(CP)在存在多壁碳纳米管(MWCNT)作为固体接触换能器的情况下。所建议的传感器在测定不同剂型中FLV的应用中,回收率分别为(98.8%–101.9%)和(97.4%–101.1%),与参考HPLC方法和95接受的范德学生试验值相比置信度百分比。

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