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解释利托那韦/聚乙烯吡咯烷酮醋酸乙烯酯无定形固体分散体的释放机制。

Explaining the Release Mechanism of Ritonavir/PVPVA Amorphous Solid Dispersions.

作者信息

Krummnow Adrian, Danzer Andreas, Voges Kristin, Dohrn Stefanie, Kyeremateng Samuel O, Degenhardt Matthias, Sadowski Gabriele

机构信息

Laboratory of Thermodynamics, Department of Biochemical and Chemical Engineering, TU Dortmund University, Emil-Figge-Str. 70, D-44227 Dortmund, Germany.

AbbVie Deutschland GmbH & Co. KG, Global Pharmaceutical R&D, Knollstraße, D-67061 Ludwigshafen am Rhein, Germany.

出版信息

Pharmaceutics. 2022 Sep 8;14(9):1904. doi: 10.3390/pharmaceutics14091904.

Abstract

In amorphous solid dispersions (ASDs), an active pharmaceutical ingredient (API) is dissolved on a molecular level in a polymeric matrix. The API is expected to be released from the ASD upon dissolution in aqueous media. However, a series of earlier works observed a drastic collapse of the API release for ASDs with high drug loads (DLs) compared to those with low DLs. This work provides a thermodynamic analysis of the release mechanism of ASDs composed of ritonavir (RIT) and poly(vinylpyrrolidone-co-vinyl acetate) (PVPVA). The observed release behavior is, for the first time, explained based on the quantitative thermodynamic phase diagram predicted by PC-SAFT. Both liquid-liquid phase separation in the dissolution medium, as well as amorphous phase separation in the ASD, could be linked back to the same thermodynamic origin, whereas they had been understood as different phenomena so far in the literature. Furthermore, it is illustrated that upon release, independent of DL, both phenomena occur simultaneously for the investigated system. It could be shown that the non-congruent release of the drug and polymer is observed when amorphous phase separation within the ASD has taken place to some degree prior to dissolution. Nanodroplet formation in the dissolution medium could be explained as the liquid-liquid phase separation, as predicted by PC-SAFT.

摘要

在无定形固体分散体(ASD)中,活性药物成分(API)在分子水平上溶解于聚合物基质中。预计API在水性介质中溶解时会从ASD中释放出来。然而,一系列早期研究发现,与低药物负载量(DL)的ASD相比,高药物负载量的ASD的API释放会急剧下降。这项工作对由利托那韦(RIT)和聚乙烯吡咯烷酮-醋酸乙烯酯共聚物(PVPVA)组成的ASD的释放机制进行了热力学分析。首次基于PC-SAFT预测的定量热力学相图对观察到的释放行为进行了解释。溶解介质中的液-液相分离以及ASD中的无定形相分离都可以追溯到相同的热力学起源,而在文献中它们迄今为止一直被视为不同的现象。此外,研究表明,对于所研究的体系,在释放时,无论DL如何,这两种现象会同时发生。结果表明,当ASD中的无定形相分离在溶解前已发生一定程度时,会观察到药物和聚合物的非一致释放。溶解介质中的纳米液滴形成可以解释为PC-SAFT预测的液-液相分离。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ff1/9505701/be1391254b3e/pharmaceutics-14-01904-g001.jpg

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