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利用原位近红外成像和拉曼映射研究药物盐酸盐在溶解过程中的歧化反应。

The use of in situ near infrared imaging and Raman mapping to study the disproportionation of a drug HCl salt during dissolution.

作者信息

Wray Patrick S, Sinclair Wayne E, Jones John W, Clarke Graham S, Both Douglas

机构信息

Analytical and Bioanalytical Development, Bristol-Myers Squibb, Reeds Lane, Moreton, Wirral CH46 1QW, UK.

Drug Product Science & Technology, Bristol-Myers Squibb, Reeds Lane, Moreton, Wirral CH46 1QW, UK.

出版信息

Int J Pharm. 2015 Sep 30;493(1-2):198-207. doi: 10.1016/j.ijpharm.2015.07.045. Epub 2015 Jul 19.

Abstract

NIR imaging and Raman mapping of the dissolution of model pharmaceutical formulations containing the HCl salt of a developmental compound, were carried out using a custom designed flow through cell. The results of this work have shown that NIR imaging and Raman mapping are capable of monitoring the distribution of the components in a formulation during dissolution while also revealing any form changes which may occur in real time. The NIR and Raman data revealed that the drug underwent conversion to the free base when water was used as the dissolution medium. However, in 0.1M HCl this conversion was no longer seen as the medium was below the pHmax (the pH of saturation of both unionised and ionised species and above which the free base can form) of the drug. The data from both approaches broadly agreed demonstrating the applicability of these methods to studying and enhancing our understanding of the complex physical and chemical processes which occur during dissolution in real time.

摘要

使用定制设计的流通池对含有一种研发化合物盐酸盐的模型药物制剂的溶解过程进行了近红外成像和拉曼映射。这项工作的结果表明,近红外成像和拉曼映射能够在溶解过程中监测制剂中各成分的分布,同时还能实时揭示可能发生的任何形态变化。近红外和拉曼数据显示,当使用水作为溶解介质时,药物会转化为游离碱。然而,在0.1M盐酸中,由于介质低于药物的pHmax( unionised和ionised物种的饱和pH值,高于该值游离碱可以形成),这种转化不再出现。两种方法的数据大致一致,证明了这些方法在实时研究和增进我们对溶解过程中发生的复杂物理和化学过程的理解方面的适用性。

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