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评价羟丙甲纤维素醋酸琥珀酸酯无定形固体分散体的性能时,媒体选择是否重要?

Does Media Choice Matter When Evaluating the Performance of Hydroxypropyl Methylcellulose Acetate Succinate-Based Amorphous Solid Dispersions?

机构信息

Department of Industrial and Physical Pharmacy, College of Pharmacy, Purdue University, West Lafayette, Indiana 47907, United States.

Material and Analytical Sciences, Research and Development, Boehringer Ingelheim Pharmaceuticals, Inc., Ridgefield, Connecticut 06877, United States.

出版信息

Mol Pharm. 2023 Nov 6;20(11):5714-5727. doi: 10.1021/acs.molpharmaceut.3c00586. Epub 2023 Sep 26.

Abstract

Hydroxypropyl methylcellulose acetate succinate (HPMCAS) is a weakly acidic polymer that is widely used in the formulation of amorphous solid dispersions (ASDs). While the pH-dependent solubility of HPMCAS is widely recognized, the role of other solution properties, including buffer capacity, is less well understood in the context of ASD dissolution. The goal of this study was to elucidate the rate-limiting steps for drug and HPMCAS release from ASDs formulated with two poorly water soluble model drugs, indomethacin and indomethacin methyl ester. The surface area normalized release rate of the drug and/or polymer in a variety of media was determined. The HPMCAS gel layer apparent pH was determined by incorporating pH sensitive dyes into the polymer matrix. Water uptake extent and rate into the ASDs were measured gravimetrically. For neat HPMCAS, the rate-limiting step for polymer dissolution was observed to be the polymer solubility at the polymer-solution interface. This, in turn, was impacted by the gel layer pH which was found to be substantially lower than the bulk solution pH, varying with medium buffer capacity. For the ASDs, the HPMCAS release rate was found to control the drug release rate. However, both drugs reduced the polymer release rate with indomethacin methyl ester having a larger impact. In low buffer capacity media, the presence of the drug had less impact on release rates when compared to observations in higher strength buffers, suggesting changes in the rate-limiting steps for HPMCAS dissolution. The observations made in this study can contribute to the fundamental understanding of acidic polymer dissolution in the presence and absence of a molecularly dispersed lipophilic drug and will help aid in the design of more relevant release testing experiments.

摘要

羟丙甲纤维素乙酸琥珀酸酯(HPMCAS)是一种弱酸性聚合物,广泛用于无定形固体分散体(ASD)的配方中。虽然 HPMCAS 的 pH 依赖性溶解度已得到广泛认可,但在 ASD 溶解的情况下,其他溶液性质(包括缓冲能力)的作用了解较少。本研究的目的是阐明用两种疏水性差的模型药物(吲哚美辛和吲哚美辛甲酯)配制的 ASD 中药物和 HPMCAS 释放的限速步骤。确定了各种介质中药物和/或聚合物的表面积归一化释放速率。通过将 pH 敏感染料掺入聚合物基质中来确定 HPMCAS 凝胶层的表观 pH 值。通过重量法测量 ASD 中的水分吸收程度和速率。对于纯 HPMCAS,观察到聚合物溶解的限速步骤是聚合物在聚合物-溶液界面处的溶解度。这反过来又受到凝胶层 pH 的影响,发现凝胶层 pH 远低于本体溶液 pH,随介质缓冲能力而变化。对于 ASD,HPMCAS 的释放速率控制药物的释放速率。然而,两种药物都降低了聚合物的释放速率,其中吲哚美辛甲酯的影响更大。在低缓冲能力的介质中,与在高强度缓冲液中的观察结果相比,药物的存在对释放速率的影响较小,这表明 HPMCAS 溶解的限速步骤发生了变化。本研究中的观察结果有助于深入了解在存在和不存在分子分散的亲脂性药物的情况下酸性聚合物的溶解,有助于设计更相关的释放测试实验。

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