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分子相互作用对不同聚合物无定形固体分散体中布洛芬相容性和迁移性的影响。

Effects of Molecular Interactions on Miscibility and Mobility of Ibuprofen in Amorphous Solid Dispersions With Various Polymers.

机构信息

Department of Pharmaceutical Sciences, College of Pharmacy, University of Kentucky, Lexington, Kentucky 40536.

Department of Pharmaceutical Sciences, College of Pharmacy, University of Kentucky, Lexington, Kentucky 40536.

出版信息

J Pharm Sci. 2019 Jan;108(1):178-186. doi: 10.1016/j.xphs.2018.10.052. Epub 2018 Nov 3.

Abstract

Hydrogen bonds (HBs) in amorphous solid dispersions may influence physical stability through effects on both drug miscibility and mobility. Amorphous solid dispersions containing the HB-donor ibuprofen (IBP) alone or with one of four model polymers (poly(vinyl pyrrolidone) [PVP], poly(vinyl pyrrolidone/vinyl acetate) [PVP/VA], poly(vinyl acetate) [PVA], or polystyrene [PST]) were monitored by molecular dynamics simulation. HB distributions and contributions of electrostatic, van der Waals, and internal interactions to miscibility and mobility were analyzed versus drug concentration. The probability of IBP-IBP HBs decreases markedly (0.6→0.0) with dilution (100→10% drug) in PVP due to IBP-PVP HBs while dilution in the nonpolar PST has a more modest effect on IBP-IBP HB probability (0.6→0.3). Concentration-dependent Flory-Huggins interaction parameters (χ) were determined to assess drug-polymer miscibility. χ values were -0.9 to -1.8 with a plateau near 50% w/w PVP, whereas χ fluctuated near zero (-0.1 to 0.3), suggesting that IBP is more soluble in PVP than in PST. χ values in polymers varying in pyrrolidone/acetate composition were in the order PVP (most favorable) > PVP/VA > PVA (least favorable). Decreased local mobility of IBP measured by the atomic fluctuation correlates with more IBP-PVP HBs with increasing PVP content. The opposite trend in IBP-PST may arise from IBP-IBP HB disruption on dilution.

摘要

无定形固体分散体中的氢键 (HBs) 可能通过对药物混溶性和迁移性的影响来影响物理稳定性。通过分子动力学模拟监测了单独含有 HB 供体布洛芬 (IBP) 的无定形固体分散体以及四种模型聚合物(聚乙烯吡咯烷酮 [PVP]、聚乙烯吡咯烷酮/乙酸乙烯酯 [PVP/VA]、聚乙酸乙烯酯 [PVA] 或聚苯乙烯 [PST])的无定形固体分散体。分析了氢键分布以及静电、范德华和内部分子相互作用对混溶性和迁移性的贡献,根据药物浓度进行了分析。由于 IBP-PVP HBs,IBP 在 PVP 中的稀释(从 100%到 10%药物)会显著降低 IBP-IBP HBs 的概率(从 0.6 到 0.0),而在非极性 PST 中的稀释对 IBP-IBP HB 概率的影响则更为温和(从 0.6 到 0.3)。确定了浓度依赖性 Flory-Huggins 相互作用参数 (χ) 以评估药物-聚合物的混溶性。χ 值在-0.9 到-1.8 之间,在接近 50% w/w PVP 时出现平台,而 χ 值在接近零(-0.1 到 0.3)附近波动,表明 IBP 在 PVP 中的溶解度高于 PST。吡咯烷酮/乙酸酯组成不同的聚合物中的 χ 值顺序为 PVP(最有利)>PVP/VA>PVA(最不利)。通过原子波动测量的 IBP 局部迁移率降低与 PVP 含量增加时更多的 IBP-PVP HBs 相关。在 IBP-PST 中出现相反的趋势可能是由于稀释时 IBP-IBP HB 的破坏。

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