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具有聚合物复合基质调节稳定释放平台的无定形固体分散体缓释制剂的开发。

Development of Amorphous Solid Dispersion Sustained-Release Formulations with Polymer Composite Matrix-Regulated Stable Release Plateaus.

机构信息

School of Traditional Chinese Pharmacy, China Pharmaceutical University, Nanjing, 211198, People's Republic of China.

Jiuhua & Huayuan Pharmaceutical Co., Ltd, Chuzhou, 239000, People's Republic of China.

出版信息

Pharm Res. 2024 Jun;41(6):1233-1245. doi: 10.1007/s11095-024-03709-y. Epub 2024 May 14.

Abstract

PURPOSE

This study was designed to develop ibuprofen (IBU) sustained-release amorphous solid dispersion (ASD) using polymer composites matrix with drug release plateaus for stable release and to further reveal intrinsic links between polymer' matrix ratios and drug release behaviors.

METHODS

Hydrophilic polymers and hydrophobic polymers were combined to form different composite matrices in developing IBU ASD formulations by hot melt extrusion technique. The intrinsic links between the mixed polymer matrix ratio and drug dissolution behaviors was deeply clarified from the dissolution curves of hydrophilic polymers and swelling curves of composite matrices, and intermolecular forces among the components in ASDs.

RESULTS

IBU + ammonio methacrylate copolymer type B (RSPO) + poly(1-vinylpyrrolidone-co-vinyl acetate) (PVP VA64) physical mixtures presented unstable release behaviors with large error bars due to inhomogeneities at the micrometer level. However, IBU-RSPO-PVP VA64 ASDs showed a "dissolution plateau phenomenon", i.e., release behaviors of IBU in ASDs were unaffected by polymer ratios when PVP VA64 content was 35% ~ 50%, which could reduce risks of variations in release behaviors due to fluctuations in prescriptions/processes. The release of IBU in ASDs was simultaneously regulated by the PVP VA64-mediated "dissolution" and RSPO-PVP VA64 assembly-mediated "swelling". Radial distribution function suggested that similar intermolecular forces between RSPO and PVP VA64 were key mechanisms for the "dissolution plateau phenomenon" in ASDs at 35% ~ 50% of PVP VA64.

CONCLUSIONS

This study provided ideas for developing ASD sustained-release formulations with stable release plateau modulated by polymer combinations, taking full advantages of simple process/prescription, ease of scale-up and favorable release behavior of ASD formulations.

摘要

目的

本研究旨在开发布洛芬(IBU)的无定形固体分散体(ASD),使用具有药物释放平台的聚合物复合材料基质,以实现稳定释放,并进一步揭示聚合物基质比例与药物释放行为之间的内在联系。

方法

通过热熔挤出技术,将亲水性聚合物和疏水性聚合物组合成不同的复合基质,以开发 IBU ASD 配方。从亲水性聚合物的溶解曲线和复合基质的溶胀曲线以及 ASD 中各成分之间的分子间力,深入阐明混合聚合物基质比例与药物溶解行为之间的内在联系。

结果

IBU+氨甲丙烯酸酯共聚物 B(RSPO)+聚(1-乙烯基吡咯烷酮-共-醋酸乙烯酯)(PVPVA64)物理混合物由于微米级的不均匀性,呈现出不稳定的释放行为,误差较大。然而,IBU-RSPO-PVPVA64 ASD 表现出“溶解平台现象”,即当 PVPVA64 含量为 35%50%时,IBU 在 ASD 中的释放行为不受聚合物比例的影响,这可以降低由于处方/工艺波动而导致释放行为变化的风险。IBU 在 ASD 中的释放同时受到 PVPVA64 介导的“溶解”和 RSPO-PVPVA64 组装介导的“溶胀”的调节。径向分布函数表明,RSPO 和 PVPVA64 之间相似的分子间力是 ASD 中 35%50%的 PVPVA64 产生“溶解平台现象”的关键机制。

结论

本研究为开发具有稳定释放平台的 ASD 缓释制剂提供了思路,充分利用了 ASD 制剂工艺/处方简单、易于放大和良好的释放行为的优点。

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