Abd-Rabboh Hisham S M, Amr Abd El-Galil E, Almehizia Abdulrahman A, Kamel Ayman H
Chemistry Department, Faculty of Science, King Khalid University, Abha 61413, Saudi Arabia.
Department of Chemistry, Faculty of Science, Ain Shams University, Cairo 11566, Egypt.
ACS Omega. 2021 Oct 14;6(42):27755-27762. doi: 10.1021/acsomega.1c03135. eCollection 2021 Oct 26.
Novel paper-based potentiometric platforms for rapid, cost-effective, and simple determination of the salicylhydroxamic acid (SHAM) drug are presented. Both the SHAM sensor and the reference Ag/AgCl electrode were integrated together on the miniaturized paper platforms. The ion-sensing membrane for the presented sensor is based on the use of Sn-tetraphenylporphyrin (SnTPP) as a charged carrier within a plasticized poly(vinyl chloride) (PVC) matrix. Multiwalled carbon nanotubes (MWCNTs) were used as an ion-to-electron transducer. The resulting sensor revealed a rapid and stable response with a Nernstian slope of -59.3 ± 0.7 mV/decade over the linear range of 1.0 × 10 to 1.0 × 10 M and a detection limit of 0.7 μM. All measurements were carried out in 30 mM phosphate-buffered solution (PBS) at pH 7.2. Intra- and interday precision were measured and found to be 1.7%. The relative standard deviation (RSD%) ( = 5) was calculated as 2.43% after utilizing five different electrodes ( = 5). The selectivity behavior of the prepared electrodes in the absence and presence of ionic additives was evaluated. The selectivity pattern showed a non-Hofmeister selectivity pattern in the existence of anionic additives with enhanced potentiometric selectivity for SHAM over different lipophilic anions (e.g., ClO , SCN, and I). The presented device was successfully applied for SHAM determination in pharmaceutical preparations. This paper-based analytical device can be potentially manufactured at large scales and provides a portable, rapid, disposable, and cost-effective analytical tool for measuring the SHAM drug.
本文介绍了用于快速、经济高效且简便地测定水杨羟肟酸(SHAM)药物的新型纸质电位平台。SHAM传感器和参比Ag/AgCl电极都集成在小型化的纸质平台上。所提出的传感器的离子传感膜基于使用锡-四苯基卟啉(SnTPP)作为增塑聚氯乙烯(PVC)基质中的带电载体。多壁碳纳米管(MWCNTs)用作离子-电子换能器。所得传感器在1.0×10至1.0×10 M的线性范围内呈现出快速且稳定的响应,能斯特斜率为-59.3±0.7 mV/ decade,检测限为0.7 μM。所有测量均在pH 7.2的30 mM磷酸盐缓冲溶液(PBS)中进行。测量了日内和日间精密度,发现为1.7%。使用五个不同电极(n = 5)后计算出的相对标准偏差(RSD%)(n = 5)为2.43%。评估了所制备电极在不存在和存在离子添加剂时的选择性行为。选择性模式表明,在存在阴离子添加剂的情况下,呈现出非霍夫迈斯特选择性模式,对SHAM的电位选择性高于不同的亲脂性阴离子(如ClO、SCN和I)。所提出的装置成功应用于药物制剂中SHAM的测定。这种基于纸质的分析装置具有大规模生产的潜力,并为测量SHAM药物提供了一种便携式、快速、一次性且经济高效的分析工具。