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采用味觉感应系统研制掩味型双氯芬酸钠口服制剂。

Development of oral taste masked diclofenac formulations using a taste sensing system.

机构信息

Department of Biopharmaceutics and Pharmaceutical Technology, University of Greifswald, 17489 Greifswald, Germany.

出版信息

Int J Pharm. 2012 Nov 15;438(1-2):81-90. doi: 10.1016/j.ijpharm.2012.08.047. Epub 2012 Sep 7.

Abstract

To achieve patient compliance, organoleptic aspects of drug substances play a key role in the development of oral pharmaceutical preparations. In this study, the ability of an electronic tongue to help in selecting a drug candidate and rationalize the development of oral taste masked formulations was evaluated. As drug, diclofenac, in the form of acid, sodium salt and potassium salt, was used. The taste sensing system Insent TS-5000Z was capable of differentiating diclofenac acid from its salts; and also distinguishing sodium and potassium salts eliciting similar taste modalities. Differences between qualities and intensities of sensor responses were mainly attributed to the different cations. Fewer taste and aftertaste stimuli were recorded for diclofenac acid. Based on this screening, the acid form was selected to formulate different diclofenac oral taste masked preparations further evaluated using electronic tongue data by comparing formulation prototypes against corresponding placebos. Output information demonstrated the ability of the taste sensors to detect and discriminate different formulation concepts and taste masking strategies. Comparative dissolution studies showed insufficient discrimination of formulation prototypes. Supported by these results, the electronic tongue proved to be a valuable additional tool for assessing and predicting the taste of active pharmaceutical ingredients in the early development stage.

摘要

为了实现患者的依从性,药物的感官特性在口服药物制剂的开发中起着关键作用。在这项研究中,评估了电子舌在帮助选择候选药物和合理化口服掩味制剂开发方面的能力。以酸、钠盐和钾盐形式的双氯芬酸作为药物。味觉传感系统 Insent TS-5000Z 能够区分双氯芬酸酸与其盐;并且还可以区分引起相似味觉模式的钠盐和钾盐。传感器响应的质量和强度之间的差异主要归因于不同的阳离子。双氯芬酸酸的味觉和余味刺激较少。基于此筛选,选择酸形式来进一步配制不同的双氯芬酸口服掩味制剂,并使用电子舌数据通过比较制剂原型与相应的安慰剂来评估。输出信息表明,味觉传感器能够检测和区分不同的制剂概念和掩味策略。比较溶解研究表明,制剂原型的区分度不足。这些结果表明,电子舌在早期开发阶段评估和预测活性药物成分的味道方面是一种有价值的附加工具。

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