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Roller Compaction, Granulation and Capsule Product Dissolution of Drug Formulations Containing a Lactose or Mannitol Filler, Starch, and Talc

机译:含有乳糖或甘露醇填充剂,淀粉和滑石粉的药物制剂的辊压,制粒和胶囊产品溶解

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摘要

This study investigated the influence of excipient composition to the roller compaction and granulation characteristics of pharmaceutical formulations that were comprised of a spray-dried filler (lactose monohydrate or mannitol), pregelatinized starch, talc, magnesium stearate (1% w/w) and a ductile active pharmaceutical ingredient (25% w/w) using a mixed-level factorial design. The main and interaction effects of formulation variables (i.e., filler type, starch content, and talc content) to the response factors (i.e., solid fraction and tensile strength of ribbons, particle size, compressibility and flow of granules) were analyzed using multi-linear stepwise regression analysis. Experimental results indicated that roller compacted ribbons of both lactose and mannitol formulations had similar tensile strength. However, resulting lactose-based granules were finer than the mannitol-based granules because of the brittleness of lactose compared to mannitol. Due to the poor compressiblility of starch, increasing starch content in the formulation from 0% to 20% w/w led to reduction in ribbon solid fraction by 10%, ribbon tensile strength by 60%, and granule size by 30%. Granules containing lactose or more starch showed less cohesive flow than granules containing mannitol and less starch. Increasing talc content from 0% to 5% w/w had little effect to most physical properties of ribbons and granules while the flow of mannitol-based granules was found improved. Finally, it was observed that stored at 40 °C/75% RH over 12 weeks, gelatin capsules containing lactose-based granules had reduced dissolution rates due to pellicle formation inside capsule shells, while capsules containing mannitol-based granules remained immediate dissolution without noticeable pellicle formation.
机译:这项研究调查了赋形剂成分对药物制剂的辊压和制粒特性的影响,该药物制剂包括喷雾干燥的填充剂(一水合乳糖或甘露醇),预胶化淀粉,滑石粉,硬脂酸镁(1%w / w)和延展性活性药物成分(25%w / w)采用混合级因子设计。使用多重分析法分析了配方变量(即填料类型,淀粉含量和滑石含量)对响应因子(即带的固体分数和拉伸强度,粒径,可压缩性和颗粒流动性)的主要影响和相互作用。线性逐步回归分析。实验结果表明,乳糖和甘露醇制剂的辊压压实条带具有相似的拉伸强度。然而,由于乳糖与甘露醇相比的脆性,所得的基于乳糖的颗粒比基于甘露醇的颗粒更细。由于淀粉的可压缩性差,制剂中的淀粉含量从0%增加到20%w / w导致带状固体分数降低10%,带状拉伸强度降低60%,颗粒尺寸降低30%。含有乳糖或更多淀粉的颗粒比含有甘露醇和较少淀粉的颗粒表现出更少的内聚流动。将滑石粉含量从0%增加到5%w / w对条带和颗粒的大多数物理性能影响不大,而甘露醇基颗粒的流动性得到改善。最后,观察到在12周内于40°C / 75%RH下储存的含乳糖基颗粒的明胶胶囊由于壳内形成了防护膜而降低了溶出率,而含甘露醇基颗粒的明胶胶囊仍可立即溶出而无明显变化薄膜形成。

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