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Preparation and Characterization of Highly Porous Direct Compression Carrier Particles with Improved Drug Loading During an Interactive Mixing Process

机译:在交互式混合过程中改善药物载量的高度多孔直接压缩载体颗粒的制备和表征

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摘要

The aim of this study was to prepare highly porous carrier particles by emulsion solvent evaporation and compare the loading capacity of these beads with two traditional carriers, sugar beads, and microcrystalline cellulose granules during an interactive mixing process. The porous carrier particles were prepared by an emulsion solvent evaporation process using cellulose propionate as a binder, anhydrous dibasic calcium phosphate, and ion exchange resins as a fillers, and polyethylene glycol as a pore inducer. Micronized furosemide or griseofulvin powder was mixed with the same volume of each carrier in an interactive mixing process. The tableting properties, drug loading per unit volume of carrier, content uniformity of the mixtures, and dissolution of the drugs from the mixtures were measured. The results showed that highly porous microcapsules with desirable hardness equivalent to that of sugar beads and MCC granules were successfully prepared. On average the loading capacity of the new carrier was 310% that of sugar beads and 320% that of MCC granules during an interactive mixing process with very good content uniformity. The tableting properties of the microcapsules were equivalent to that of microcrystalline cellulose granules, and the dissolution of the drugs from interactive mixtures prepared with the new carrier was equivalent to that of drug suspensions. This showed that the prepared microcapsule carrier could be used to improve the loading capacity during an interactive mixing and to prepare tablets by direct compression.
机译:这项研究的目的是通过乳液溶剂蒸发来制备高度多孔的载体颗粒,并在交互式混合过程中将这些珠子与两种传统载体,糖珠子和微晶纤维素颗粒的负载能力进行比较。多孔载体颗粒通过乳液溶剂蒸发法制备,使用丙酸纤维素作为粘合剂,无水磷酸氢二钙和离子交换树脂作为填充剂,聚乙二醇作为孔隙诱导剂。在交互混合过程中,将微粉化的速尿或灰黄霉素粉末与相同体积的每种载体混合。测量压片特性,每单位体积载体的药物载量,混合物的含量均匀性以及药物从混合物中的溶解。结果表明,成功制备了具有与糖珠和MCC颗粒相等的所需硬度的高度多孔的微胶囊。在互动混合过程中,新载体的平均装载量平均为糖珠的装载量的310%,MCC颗粒的装载量的320%,具有非常好的含量均匀性。微胶囊的压片性质与微晶纤维素颗粒的压片性质相同,并且药物从用新载体制备的相互作用混合物中的溶解与药物悬浮液相同。这表明,所制备的微胶囊载体可用于改善相互作用混合过程中的载药量并通过直接压制制备片剂。

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