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三元无定形固体分散体的相均匀性及其对溶解度、溶出度和过饱和度的影响——加工工艺和羟丙基纤维素等级的影响

Phase homogeneity in ternary amorphous solid dispersions and its impact on solubility, dissolution and supersaturation - Influence of processing and hydroxypropyl cellulose grade.

作者信息

Pöstges Florian, Lenhart Jonas, Stoyanov Edmont, Lunter Dominique J, Wagner Karl G

机构信息

Department of Pharmaceutical Technology and Biopharmaceutics, University of Bonn, Gerhard-Domagk-Str. 3, 53121 Bonn, Germany.

Department of Pharmaceutical Technology, Faculty of Sciences, University of Tübingen, Auf d. Morgenstelle 8, 72076 Tübingen, Germany.

出版信息

Int J Pharm X. 2023 Dec 2;6:100222. doi: 10.1016/j.ijpx.2023.100222. eCollection 2023 Dec 15.

Abstract

As performance of ternary amorphous solid dispersions (ASDs) depends on the solid-state characteristics and polymer mixing, a comprehensive understanding of synergistic interactions between the polymers in regard of dissolution enhancement of poorly soluble drugs and subsequent supersaturation stabilization is necessary. By choosing hot-melt extrusion (HME) and vacuum compression molding (VCM) as preparation techniques, we manipulated the phase behavior of ternary efavirenz (EFV) ASDs, comprising of either hydroxypropyl cellulose (HPC)-SSL or HPC-UL in combination with Eudragit® L 100-55 (EL 100-55) (50:50 polymer ratio), leading to single-phased (HME) and heterogeneous ASDs (VCM). Due to higher kinetic solid-state solubility of EFV in HPC polymers compared to EL 100-55, we visualized higher drug distribution into HPC-rich phases of the phase-separated ternary VCM ASDs via confocal Raman microscopy. Additionally, we observed differences in the extent of phase-separation in dependence on the selected HPC grade. As HPC-UL exhibited decisive lower melt viscosity than HPC-SSL, formation of partially miscible phases between HPC-UL and EL 100-55 was facilitated. Consequently, as homogeneously mixed polymer phases were required for optimal extent of solubility improvement, the manufacturing-dependent differences in dissolution performances were smaller using HPC-UL, instead of HPC-SSL, i.e. using HPC-UL was less demanding on shear stress provided by the process.

摘要

由于三元无定形固体分散体(ASD)的性能取决于固态特性和聚合物混合情况,因此有必要全面了解聚合物之间在提高难溶性药物溶出度及随后的过饱和稳定方面的协同相互作用。通过选择热熔挤出(HME)和真空压缩成型(VCM)作为制备技术,我们操控了由羟丙基纤维素(HPC)-SSL或HPC-UL与尤特奇®L 100-55(EL 100-55)(聚合物比例为50:50)组成的三元依非韦伦(EFV)ASD的相行为,从而得到单相(HME)和多相ASD(VCM)。由于与EL 100-55相比,EFV在HPC聚合物中的动力学固态溶解度更高,我们通过共聚焦拉曼显微镜观察到在相分离的三元VCM ASD中,药物在富含HPC的相中分布更多。此外,我们观察到相分离程度因所选HPC等级而异。由于HPC-UL的熔体粘度明显低于HPC-SSL,因此促进了HPC-UL与EL 100-55之间形成部分互溶相。因此,由于需要均匀混合的聚合物相来实现最佳的溶解度提高程度,使用HPC-UL而非HPC-SSL时,制造过程中溶出性能的差异较小,即使用HPC-UL对工艺提供的剪切应力要求较低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cec3/10755049/a0587ebc2d0a/ga1.jpg

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