首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Development of a multicommuted flow-through optosensor for the determination of a ternary pharmaceutical mixture.
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Development of a multicommuted flow-through optosensor for the determination of a ternary pharmaceutical mixture.

机译:用于确定三元药物混合物的多换向流通型光电传感器的开发。

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摘要

The combination of multicommutation and flow-through multioptosensing is presented in this work as a powerful strategy for the routine analysis of active principles in pharmaceuticals. By coupling methodologies, the selectivity and sensitivity of optosensors is maintained, while the use of the multicommutation approach provides additional advantages, such as low reagent consumption, low waste generation and reduced human supervision. The potential of this integration is enhanced when implemented with multiwavelength detection mode. An UV sensor is here developed for the simultaneous determination of three widely used active principles: salicylamide, caffeine and propyphenazone. The measuring wavelengths were 276 nm for caffeine and propyphenazone, and 302 nm for salicylamide. The five three-way solenoid valves used in the system are controlled by Java-written home-made software. The sensor is based on the on-line selective retention of two of the three analytes on a precolumn placed just before the sensing zone and filled with the same solid support than the flow-through cell (C(18) silica gel). This approach allows the sequential arrival of the analytes to the sensing zone, so allowing their determination with only one sample injection. So, the use of C(18) placed, in both the precolumn and the flow-cell combines the advantages of the increase of sensitivity and selectivity in the detection solid zone with the additional increase of the selectivity in the precolumn. The sensor was applied to the determination of the analytes in several pharmaceutical preparation of the Spanish Pharmacopoeia, obtaining satisfactory results.
机译:在这项工作中,将多重换向和流通式多重光敏技术相结合,是对药物中活性成分进行常规分析的有力策略。通过耦合方法,可以保持光传感器的选择性和灵敏度,同时使用多换向方法还可以提供其他优势,例如试剂消耗低,废物产生少和人工监督减少。当采用多波长检测模式实施时,这种集成的潜力得以增强。在此开发了一种紫外传感器,用于同时测定三种广泛使用的活性成分:水杨酰胺,咖啡因和丙氮平。咖啡因和丙苯zone的测量波长为276 nm,水杨酰胺的测量波长为302 nm。系统中使用的五个三通电磁阀由Java编写的自制软件控制。该传感器基于在线选择性保留三种分析物中的两种在预色谱柱上的位置,预色谱柱位于传感区之前,并用与流通池相同的固体支持物填充(C(18)硅胶)。这种方法可以使分析物顺序到达传感区域,因此只需一次进样即可确定它们。因此,在前柱和流通池中使用C(18)结合了检测固体区灵敏度和选择性增加的优势以及前柱选择性的额外增加。该传感器用于西班牙药典几种药物制剂中的分析物测定,获得满意的结果。

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