创新性分子印迹电化学传感器用于选择性纳摩尔检测抗 COVID-19 药物 Molnupiravir

R. Sayed, Manal S. Elmasry, Asmaa M Taha, Wafaa S. Hassan, R. E. El Nashar
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引用次数: 0

摘要

该研究首次采用了一种绿色生态友好的方法,开发了一种用于检测口服抗病毒药物莫仑匹拉韦(MLN)的分子印迹聚合物(MIP)电化学传感器,该方法在分析生态尺度、绿色分析程序指数(GAPI)、Raynie 和 Driver、分析绿色度量(AGREE)和国家环境指数(NEMI)方面均得到了证实。将 MIP 电聚合在由金纳米粒子修饰的玻璃碳电极 (GCE) 上(MIP/AuNPs/GCE),以创建一种选择性和高效的电化学纳米传感器。MLN 的检测限为 0.00098 ng/mL (3×10-12M),线性范围为 0.033 ng/mL 至 164 ng/mL (1×10-10-5×10-7 M)。利用 MIP 传感器测定了其药品、加标人体血浆和尿液样品中的 MLN,平均回收率分别为(99.82% ± 0.53)、(99.88% ± 0.62)和(97.90% ± 0.70)。所研究的传感器具有良好的重现性、可重复性和耐用性。当 MLN 与结构相似的化合物混合时,平均回收率为(97.10% ± 0.03)±平均 RSD,证明了其具有可接受的选择性。此外,当莫仑匹拉韦在氧化、水解和热应力条件下暴露时,稳定性指示研究的良好结果可作为传感器选择性的指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Innovative Molecularly Imprinted Electrochemical Sensor for Selective Nanomolar Detection of the Anti-COVID-19 Medication Molnupiravir
For the first time, a green ecofriendly approach is applied, to develop a molecularly imprinted polymer (MIP) electrochemical for the assay of the oral anti-viral molnupiravir (MLN) as confirmed on referring to: analytical eco-scale, green analytical procedure index (GAPI), Raynie and Driver, analytical greenness metric (AGREE), and national environmental index (NEMI). MIP was electropolymerized on a glassy carbon electrode (GCE) modified with gold nanoparticles (MIP/AuNPs/GCE) to create a selective and efficient electrochemical nanosensor. The detection limit was set at 0.00098 ng/mL (3×10-12M) and the linearity range of MLN was between 0.033 ng/mL and 164 ng/mL (1×10-10–5×10-7 M). The MIP sensor was employed for MLN determination in its pharmaceutical product , spiked human plasma, and urine samples with mean recovery % (99.82% ± 0.53), (99.88% ± 0.62), and (97.90% ± 0.70), respectively. The investigated sensor provided good reproducibility, repeatability, and durability. Acceptable selectivity regarding MLN when mixed with structurally comparable compounds was proved with mean recovery % ± mean RSD (97.10% ± 0.03). Additionally, when molnupiravir was exposed to oxidative, hydrolytic, and thermal stress conditions, good results in stability-indicating studies served as an indicator of sensor selectivity.The developed electrode is coupled with a portable potentiostat, making it a promising point-of-care diagnostic.
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