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通过使用带有内部固体接触的修饰膜传感器提高抗痉挛药物电极的检测限。

Improving the detection limits of antispasmodic drugs electrodes by using modified membrane sensors with inner solid contact.

作者信息

Ibrahim Hosny, Issa Y M, Abu-Shawish Hazem M

机构信息

Department of Chemistry, Faculty of Science, Cairo University, Cairo 111214, Egypt.

出版信息

J Pharm Biomed Anal. 2007 May 9;44(1):8-15. doi: 10.1016/j.jpba.2007.01.018. Epub 2007 Jan 19.

Abstract

Three coated wire electrodes (CWEs) for the antispasmodic drugs; dicyclomine (Dc), mebeverine (Mv) and drotaverine (Dv) hydrochlorides were developed. Each electrode based on ion-associate of a heteropoly anion with the drug cation incorporated in membrane sensor modified with graphite and deposited on silver internal solid contact. The influence of addition of graphite to the membranes and the type of the internal solid contact on the potentiometric responses of the electrodes was investigated. The characteristics of the new electrodes were compared to the characteristics of previously reported traditional liquid inner contact electrodes of the same drugs. The lower detection limits of the proposed electrodes were somewhat better than those observed with the corresponding liquid contact ISEs and reached (1.2-2.0)x10(-7)M. The potentiometric selectivity of the CWEs revealed a significant improvement and much faster response times compared to the liquid contact ISEs. The practical utility of each electrode has been demonstrated by using it successfully in potentiometric determination of its respective drug in pharmaceutical preparations both in batch and flow injection conditions. Each electrode was also used as an indicator electrode in the potentiometric titration of the drug against standard silicotungstic acid and in potentiometric determination of the drug concentration in urine samples.

摘要

开发了用于抗痉挛药物双环维林(Dc)、美贝维林(Mv)和屈他维林(Dv)盐酸盐的三种涂丝电极(CWE)。每个电极基于杂多阴离子与药物阳离子的离子缔合物,该缔合物掺入用石墨修饰并沉积在银内固体接触上的膜传感器中。研究了向膜中添加石墨以及内固体接触类型对电极电位响应的影响。将新电极的特性与先前报道的相同药物的传统液体内部接触电极的特性进行了比较。所提出电极的较低检测限比相应的液体接触离子选择性电极(ISE)观察到的检测限略好,达到(1.2 - 2.0)×10⁻⁷M。与液体接触ISE相比,CWE的电位选择性有显著提高,响应时间快得多。通过在分批和流动注射条件下成功地将每个电极用于药物制剂中其各自药物的电位测定,证明了每个电极的实际实用性。每个电极还用作药物与标准硅钨酸电位滴定中的指示电极以及尿液样品中药物浓度的电位测定。

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