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使用新型熔融造粒技术 MALCORE 对颗粒进行药物包衣的聚合物特性。

Polymer Characteristics for Drug Layering on Particles Using a Novel Melt Granulation Technology, MALCORE.

机构信息

School of Pharmaceutical Sciences, University of Shizuoka, 52-1 Yada, Suruga-Ku, Shizuoka, 422-8526, Japan.

Pharmaceutical Development Department, Sawai Pharmaceutical Co., Ltd, 2-30, Miyahara 5-Chome, Yodogawa-Ku, Osaka, 532-0003, Japan.

出版信息

AAPS PharmSciTech. 2024 Apr 10;25(4):81. doi: 10.1208/s12249-024-02798-7.

Abstract

MALCORE, a novel manufacturing technology for drug-containing particles (DCPs), relies on the melt granulation method to produce spherical particles with high drug content. The crucial aspect of particle preparation through MALCORE involves utilizing polymers that dissolve in the melt component, thereby enhancing viscosity upon heating. However, only aminoalkyl methacrylate copolymer E (AMCE) has been previously utilized. Therefore, this study aims to discover other polymers and comprehend the essential properties these polymers need to possess. The results showed that polyvinylpyrrolidone (PVP) was soluble in the stearic acid (SA) melt component. FTIR examination revealed no interaction between SA and polymer. The phase diagram was used to analyze the state of the SA and polymer mixture during heating. It revealed the mixing ratio and temperature range where the mixture remained in a liquid state. The viscosity of the mixture depended on the quantity and molecular weight of the polymer dissolved in SA. Furthermore, the DCPs prepared using PVP via MALCORE exhibited similar pharmaceutical properties to those prepared with AMCE. In conclusion, understanding the properties required for polymers in the melt granulation process of MALCORE allows for the optimization of manufacturing conditions, such as temperature and mixing ratios, for efficient and consistent drug layering.

摘要

MALCORE 是一种新型的载药颗粒(DCPs)制造技术,它依赖于熔融造粒方法来生产高药物含量的球形颗粒。通过 MALCORE 进行颗粒制备的关键方面涉及到使用在熔融成分中溶解的聚合物,从而在加热时增加其粘度。然而,以前仅使用了氨烷基甲基丙烯酸酯共聚物 E(AMCE)。因此,本研究旨在发现其他聚合物,并了解这些聚合物需要具备的基本性质。结果表明,聚乙烯吡咯烷酮(PVP)可溶于硬脂酸(SA)熔融成分中。傅立叶变换红外(FTIR)检查显示 SA 和聚合物之间没有相互作用。相图用于分析加热过程中 SA 和聚合物混合物的状态。它揭示了混合物保持液态的混合比和温度范围。混合物的粘度取决于溶解在 SA 中的聚合物的数量和分子量。此外,通过 MALCORE 使用 PVP 制备的 DCPs 表现出与使用 AMCE 制备的 DCPs 相似的药物性质。总之,了解 MALCORE 熔融造粒过程中聚合物所需的性质可以优化制造条件,例如温度和混合比,以实现高效和一致的药物包衣。

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