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通过核磁共振显微成像同时探测溶胀、侵蚀和溶解——添加剂的溶解性对羟丙基甲基纤维素基质片剂的影响

Simultaneous probing of swelling, erosion and dissolution by NMR-microimaging--effect of solubility of additives on HPMC matrix tablets.

作者信息

Tajarobi Farhad, Abrahmsén-Alami Susanna, Carlsson Anders S, Larsson Anette

机构信息

AstraZeneca R&D, SE-431 83 Mölndal, Sweden.

出版信息

Eur J Pharm Sci. 2009 May 12;37(2):89-97. doi: 10.1016/j.ejps.2009.01.008. Epub 2009 Jan 31.

Abstract

Extensive studies of extended release tablets based on hydrophilic polymers have illuminated several aspects linked to their functionality. However, in some respects key factors affecting the mechanisms of release are yet unexplored. In the present study, a novel NMR-microimaging method has been used to study the influence of the solubility of additives in extended release hydroxypropyl methylcellulose (HPMC) matrix tablets. During the course of the tablet dissolution the movement of the swelling and erosion fronts were studied simultaneously to the release of both polymer and additives. Moreover, the focused beam reflectance measurement (FBRM) technology was for the first time assessed for both release and dissolution rate studies of poorly soluble particles. The studied formulations comprised solely HPMC, 40% HPMC and 60% mannitol (Cs=240 mg/ml) and 40% HPMC and 60% dicalcium phosphate (DCP) (Cs=0.05 mg/ml). The dissolution rate of the tablets was highest for the HPMC/mannitol formulation, followed by HPMC/DCP and plain HPMC tablet. A contrasting order was found regarding the degree and kinetics of swelling. The results were interpreted in light of how the mass transport in the gel layer is influenced by the solubility of additives. A mechanistic model, considering osmotic pressure gradient and the effective diffusion of the dissolution medium in the gel is proposed.

摘要

对基于亲水性聚合物的缓释片进行的广泛研究揭示了与其功能相关的几个方面。然而,在某些方面,影响释放机制的关键因素尚未得到探索。在本研究中,一种新型的核磁共振显微成像方法被用于研究添加剂在羟丙基甲基纤维素(HPMC)基质缓释片中的溶解度的影响。在片剂溶解过程中,同时研究了溶胀和侵蚀前沿的移动以及聚合物和添加剂的释放。此外,首次评估了聚焦光束反射测量(FBRM)技术在难溶性颗粒的释放和溶解速率研究中的应用。所研究的制剂仅包括纯HPMC、40% HPMC和60%甘露醇(Cs = 240 mg/ml)以及40% HPMC和60%磷酸氢钙(DCP)(Cs = 0.05 mg/ml)。HPMC/甘露醇制剂的片剂溶解速率最高,其次是HPMC/DCP和纯HPMC片剂。在溶胀程度和动力学方面发现了相反的顺序。根据添加剂的溶解度如何影响凝胶层中的传质对结果进行了解释。提出了一个考虑渗透压梯度和溶解介质在凝胶中的有效扩散的机理模型。

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