Graduate School of Pharmaceutical Sciences, Chiba University, 1-8-1 Inohana, Chuo-ku, Chiba 260-8675, Japan.
Graduate School of Pharmaceutical Sciences, Chiba University, 1-8-1 Inohana, Chuo-ku, Chiba 260-8675, Japan.
Int J Pharm. 2020 May 15;581:119300. doi: 10.1016/j.ijpharm.2020.119300. Epub 2020 Apr 5.
The potential for inhibiting recrystallization with Eudragit® L (EUD-L), hypromellose acetate succinate (HPMC-AS), and polyvinylpyrrolidone-co-vinylacetate (PVP-VA) on amorphous felodipine (FLD) at low polymer loading was investigated in this study. The physical stabilities of the FLD/polymer amorphous solid dispersions (ASDs) were investigated through storage at 40 °C. The HPMC-AS and PVP-VA strongly inhibited FLD recrystallization, although EUD-L did not effectively inhibit the FLD recrystallization. The rotating frame H spin-lattice relaxation time (H-T) measurement clarified that EUD-L was not well mixed with FLD in the ASD, which resulted in weak inhibition of recrystallization by EUD-L. In contrast, the HPMC-AS and PVP-VA were well mixed with the FLD in the ASDs. Solid-state C spin-lattice relaxation time (C-T) measurements at 40 °C showed that the molecular mobility of the FLD was strongly suppressed when mixed with polymer. The reduction in the molecular mobility of FLD was in the following order, starting with the least impact: FLD/EUD-L ASD, FLD/HPMC-AS ASD, and FLD/PVP-VA ASD. FLD mobility at the storage temperature, evaluated by C-T, showed a good correlation with the physical stability of the amorphous FLD. The direct investigation of the molecular mobility of amorphous drugs at the storage temperature by solid-state NMR relaxation time measurement can be a useful tool in selecting the most effective crystallization inhibitor at low polymer loading.
本研究考察了低聚合物用量下尤特奇 L(EUD-L)、醋酸羟丙甲纤维素琥珀酸酯(HPMC-AS)和聚乙烯吡咯烷酮-共聚醋酸乙烯酯(PVP-VA)对无定形非洛地平(FLD)的再结晶抑制潜力。通过在 40°C 下储存来研究 FLD/聚合物无定形固体分散体(ASD)的物理稳定性。旋转框架 H 自旋晶格弛豫时间(H-T)测量表明,EUD-L 与 ASD 中的 FLD 混合不均匀,导致 EUD-L 对再结晶的抑制作用较弱。相比之下,HPMC-AS 和 PVP-VA 与 ASDs 中的 FLD 混合良好。40°C 时的固态 C 自旋晶格弛豫时间(C-T)测量表明,当与聚合物混合时,FLD 的分子迁移率受到强烈抑制。FLD 的分子迁移率的降低顺序为:FLD/EUD-L ASD、FLD/HPMC-AS ASD 和 FLD/PVP-VA ASD。通过 C-T 评估的在储存温度下的 FLD 迁移率与无定形 FLD 的物理稳定性具有良好的相关性。通过固态 NMR 弛豫时间测量直接研究储存温度下无定形药物的分子迁移率,可以成为在低聚合物用量下选择最有效结晶抑制剂的有用工具。