Hussein Ola G, Ahmed Dina A, Abdelkawy Mohamed, Rezk Mamdouh R, Mahmoud Amr M, Rostom Yasmin
Pharmaceutical Chemistry Department, Faculty of Pharmacy, Future University in Egypt Cairo Egypt.
Analytical Chemistry Department, Faculty of Pharmacy, Cairo University Kasr El-Aini Street Cairo 11562 Egypt
RSC Adv. 2023 Mar 8;13(11):7645-7655. doi: 10.1039/d3ra00597f. eCollection 2023 Mar 1.
Fabrication of a novel ion selective electrode for determining alcaftadine was achieved. The glassy carbon electrode (GCE) was utilized as a substrate in fabrication of an electrochemical sensor containing polyaniline (PANI) as an ion-to-electron transducer layer. A PVC polymeric matrix and nitrophenyl-octyl-ether were employed in designing the ion-sensing membrane (ISM). Potential stability was improved and minimization of electrical signal drift was achieved for inhibition of water layer formation at the electrode interface. Potential stability was achieved by inclusion of PANI between the electronic substrate and the ion-sensing membrane. The sensor's performance was evaluated following IUPAC recommendations. The sensor dynamic linear range was from 1.0 × 10 to 1.0 × 10 mol L and it had a 6.3 × 10 mol L detection limit. The selectivity and capabilities of the formed alcaftadine sensor were tested in the presence of its pharmaceutical formulation excipients as well as its degradation products. Additionally, the sensor was capable of quantifying the studied drug in a rabbit aqueous humor. Method's greenness profile was evaluated by the means of Analytical Greenness (AGREE) metric assessment tool.
成功制备了一种用于测定阿伐斯汀的新型离子选择性电极。玻碳电极(GCE)被用作制备电化学传感器的基底,该传感器包含聚苯胺(PANI)作为离子-电子转换层。在设计离子传感膜(ISM)时采用了聚氯乙烯聚合物基质和硝基苯基辛基醚。通过抑制电极界面水层的形成,提高了电位稳定性并实现了电信号漂移的最小化。通过在电子基底和离子传感膜之间加入聚苯胺来实现电位稳定性。按照国际纯粹与应用化学联合会(IUPAC)的建议对传感器的性能进行了评估。该传感器的动态线性范围为1.0×10至1.0×10 mol/L,检测限为6.3×10 mol/L。在其药物制剂辅料及其降解产物存在的情况下,测试了所形成的阿伐斯汀传感器的选择性和性能。此外,该传感器能够定量测定兔房水中的研究药物。通过分析绿色度(AGREE)指标评估工具评估了该方法的绿色度概况。