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双氯芬酸钠和甲氯芬那酸钠与羟丙基甲基纤维素(HPMC)的溶液相互作用。

Solution interactions of diclofenac sodium and meclofenamic acid sodium with hydroxypropyl methylcellulose (HPMC).

机构信息

Formulation Insights, School of Pharmacy, University of Nottingham, University Park, Nottingham, NG7 2RD, UK.

出版信息

Int J Pharm. 2011 Feb 28;405(1-2):55-62. doi: 10.1016/j.ijpharm.2010.11.043. Epub 2010 Dec 1.

Abstract

Many pharmaceutical agents require formulation in order to facilitate their efficacious delivery. However, the interaction between the active species and the formulation additives has the potential to significantly influence the pharmocokinetics of the active. In this study, the solution interactions between hydroxypropyl methylcellulose (HPMC) with two non-steroidal anti-inflammatories - the sodium salts of diclofenac and meclofenamate - were investigated using tensiometric, rheological, NMR, neutron scattering and turbidimetric techniques. The two drugs behaved very differently-meclofenamate addition to HPMC solutions led to substantial increases in viscosity, a depression of the gel point and a marked reduction in the self-diffusion coefficient of the drug, whereas diclofenac did not induce these changes. Collectively, these observations are evidence of meclofenamate forming self-assembled aggregates on the HPMC, a phenomenon not observed with diclofenac Na. Any process that leads to aggregation on a nonionic polymer will not be strongly favoured when the aggregating species is charged. Thus, it is hypothesised that the distinction between the two drugs arises as a consequence of the tautomerism present in meclofenamate that builds electron density on the carbonyl group that is further stabilised by hydrogen bonding to the HPMC. This mechanism is absent in the diclofenac case and thus no interaction is observed. These studies propose for the first time a molecular basis for the observed often-unexpected, concentration-dependant changes in HPMC solution properties when co-formulated with different NSAIDs, and underline the importance of characterising such fundamental interactions that have the potential to influence drug release in solid HPMC-based dosage forms.

摘要

许多药物制剂需要进行配方设计以促进其有效传递。然而,活性物质与制剂添加剂之间的相互作用可能会显著影响活性物质的药代动力学。在这项研究中,使用张力计、流变仪、NMR、中子散射和浊度计技术研究了羟丙基甲基纤维素(HPMC)与两种非甾体抗炎药(双氯芬酸钠和甲氯芬那酸的钠盐)之间的溶液相互作用。这两种药物的行为非常不同 - 甲氯芬那酸的加入导致 HPMC 溶液的粘度显著增加,凝胶点降低,药物的自扩散系数明显降低,而双氯芬酸钠则没有引起这些变化。这些观察结果共同证明了甲氯芬那酸在 HPMC 上形成自组装聚集体,而双氯芬酸钠则没有观察到这种现象。当聚合物质带电荷时,任何导致非离子聚合物上聚合的过程都不会得到强烈的支持。因此,假设两种药物之间的区别是由于甲氯芬那酸中存在互变异构现象,这种现象在羰基上增加了电子密度,并进一步通过氢键与 HPMC 稳定。在双氯芬酸钠的情况下,这种机制不存在,因此没有观察到相互作用。这些研究首次提出了一种分子基础,用于解释当与不同的 NSAIDs 共同配方时,HPMC 溶液性质经常出现的、依赖浓度的变化,这突显了研究这种基本相互作用的重要性,因为这种相互作用有可能影响基于 HPMC 的固体制剂中的药物释放。

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