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An electrochemical sensing platform to determine tetrahydrozoline HCl in pure form, pharmaceutical formulation, and rabbit aqueous humor

机译:在纯形式,药物制剂和兔含水幽默中测定四氢唑啉HCl的电化学传感平台

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In the pharmaceutical industry, finding cost-effective and real-time analyzers that provide valid data is a good aim. The purpose of this work was to propose a link between the pharmaceutical industry and the recent innovations in solid-contact ion-selective electrodes (SC-ISEs) for the utilization of these electrodes as real-time analyzers to evaluate the concentration of tetrahydrozoline HCl in different matrices. The backbone of these new potentiometric sensors is the conjunction of calix[6]arene and (2-hydroxypropyl)-beta-cyclodextrin as molecular recognition elements and a network of multi-walled carbon nanotubes as a solid transducer material between an ionophore-doped PVC membrane and microfabricated Cu electrodes. The proposed sensors were optimized to determine tetrahydrozoline, and their performances were assessed according to the IUPAC recommendations. The proposed solid-contact sensors were compared with liquid contact sensors, and the former sensors were found to be better than the latter sensors in terms of durability, handling, and easier adaptation to industry with comparable sensitivity. The measurements were implemented using phosphate buffer (pH: 6). The best obtained linearity range was 1 x 10(-2)to 1 x 10(-7)M, and the best LOD was 1 x 10(-8)M. The sensors with the best performance were successfully applied to determine tetrahydrozoline in a pharmaceutical eye preparation and rabbit tears. The obtained results were statistically compared to those obtained by the official method of analysis, and no significant difference was obtained. The eco-score of the method was assessed using the eco-scale tool and also compared with that of the official method. The proposed approach was validated according to the International Council for Harmonisation (ICH) guidelines.
机译:在制药行业中,寻找提供有效数据的成本效益和实时分析仪是一个很好的目标。这项工作的目的是提出制药行业和最近的固体接触离子选择电极(SC-ISES)之间的联系,以利用这些电极作为实时分析仪,以评估四氢唑啉HCl的浓度不同的矩阵。这些新电位传感器的骨干是CALIX [6]芳烃和(2-羟丙基)-β-β-环糊精作为分子识别元件的结合,以及多壁碳纳米管的多壁碳纳米管,作为离子树孔掺杂PVC之间的固体换能器材料膜和微制造的Cu电极。所提出的传感器被优化以确定四羟基唑啉,并根据IUPAC建议进行评估。将所提出的固体接触式传感器与液体接触传感器进行比较,并且在耐用性,处理和更容易适应具有可比性灵敏度的情况下,该前传感器被发现比后者传感器更好。使用磷酸盐缓冲液(pH:6)来实现测量。所获得的线性度范围为1×10(-2)至1×10(-7)m,最佳床位为1×10(-8)m。具有最佳性能的传感器被成功地应用于药物眼药眼和兔泪液中的四羟基唑啉。将得到的结果与通过官方分析方法获得的结果进行了统计学,并且没有获得显着差异。使用Eco-Scale工具评估该方法的生态分数,并与官方方法的评估。根据国际协调理事会(ICH)指南,验证了拟议的方法。

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