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基于分子印迹电化学传感器的FeO@MWCNTs用于药物制剂、血清和尿液样本中伊伐布雷定的测定

Molecularly Imprinted Electrochemical Sensor-Based FeO@MWCNTs for Ivabradine Drug Determination in Pharmaceutical Formulation, Serum, and Urine Samples.

作者信息

Abdel-Haleem Fatehy M, Gamal Eman, Rizk Mahmoud S, Madbouly Adel, El Nashar Rasha M, Anis Badawi, Elnabawy Hussam M, Khalil Ahmed S G, Barhoum Ahmed

机构信息

Chemistry Department, Faculty of Science, Cairo University, Giza, Egypt.

Cairo University Centre for Environmental Hazards Mitigation, Environmental Studies and Research, CHMESR, Cairo University, Giza, Egypt.

出版信息

Front Bioeng Biotechnol. 2021 Apr 8;9:648704. doi: 10.3389/fbioe.2021.648704. eCollection 2021.

Abstract

Ivabradine hydrochloride (IVR) is a medically important drug because of its ability to lower the heart rate. Techniques reported for IVR determination were expensive, laborious, besides being of poor selectivity. In this study, iron oxide @ carbon nanotube (FeO@MWCNTs) nanocomposite and molecularly imprinted polymer (MIP) were synthesized and used in the fabrication of carbon paste electrodes (CPEs) for the potentiometric detection of IVR in biological and pharmaceutical samples. CPEs of the best sensor were formulated from graphite (41 wt%) as a carbon source, MIP (3 wt.%) as an ionophore, FeO@MWCNTs (5 wt%) as a modifier, and nitrophenyl octyl ether (NPOE, 51 wt.%) as a conductive oil so-called plasticizer. The best sensor exhibits a Nernstian slope (response) of 56 mV decade within the IVR concentration range from 1.0 × 10 M to 9.8 × 10 M with high selectivity against interfering species (ascorbic, maltose, glucose, lactose, dopamine, glycine) over those reported earlier. The use of FeO@MWCNTs together with MIP in the electrode formulation was found to improve the limit of detection (LOD) from 630 to 98 nM along with high reversibility, a short response time of 30 s, and a good lifetime of more than 2 weeks. The sandwich membrane (SMM) method was used to quantify the H-bonding complexing strength of the MIP binding sites for IVR with Log β = 11.33. The constructed sensors were successfully applied for the IVR determination in blood serum, urine, and commercial formulations (Savapran) with high sensitivity.

摘要

盐酸伊伐布雷定(IVR)是一种具有重要医学意义的药物,因为它能够降低心率。已报道的用于测定IVR的技术不仅昂贵、费力,而且选择性差。在本研究中,合成了氧化铁@碳纳米管(FeO@MWCNTs)纳米复合材料和分子印迹聚合物(MIP),并将其用于制备碳糊电极(CPE),用于电位法检测生物和药物样品中的IVR。最佳传感器的CPE由作为碳源的石墨(41 wt%)、作为离子载体的MIP(3 wt.%)、作为改性剂的FeO@MWCNTs(5 wt%)和作为导电油即所谓增塑剂的硝基苯基辛醚(NPOE,51 wt%)配制而成。最佳传感器在IVR浓度范围为1.0×10⁻⁶ M至9.8×10⁻⁴ M内表现出56 mV/十倍的能斯特斜率(响应),对干扰物质(抗坏血酸、麦芽糖、葡萄糖、乳糖、多巴胺、甘氨酸)的选择性高于先前报道的情况。发现在电极配方中使用FeO@MWCNTs与MIP一起可将检测限(LOD)从630 nM提高到98 nM,同时具有高可逆性、30 s 的短响应时间和超过2周的良好使用寿命。采用夹心膜(SMM)方法定量MIP结合位点与IVR的氢键络合强度,Log β = 11.33。所构建的传感器已成功应用于血清、尿液和市售制剂(Savapran)中IVR的高灵敏度测定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef72/8060449/dbe9f76e0e10/fbioe-09-648704-g001.jpg

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