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Investigation of a 2-step agglomeration process performed in a rotary processor using polyethylene glycol solutions as the primary binder liquid

机译:在使用聚乙二醇溶液作为主要粘合剂液体的旋转处理器中进行的两步附聚过程的研究

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摘要

The purpose of this research was to investigate the use of polyethylene glycol (PEG) solutions as the primary binder liquid in a 2-step agglomeration process performed in a rotary processor and characterize the resulting granules and their tableting characteristics. This was done by granulation of binary mixtures of microcrystalline cellulose (MCC) and either lactose, calcium phosphate, acetaminophen, or theophylline, in a 1∶3 ratio, using a 50% (wt/wt) aqueous solution of PEG and water as the binder liquid. Formulations containing lactose were agglomerated using 5 different amounts of the PEG binder solution, giving rise to a PEG content in the range of 6% to 43% (wt/wt). The process outcome was characterized according to adhesion, yield, and water requirement, and the prepared granules were characterized according to size, size distribution, and flow properties as well as tableting properties. The agglomeration of all mixtures resulted in high yields of free-flowing agglomerates and gave rise to good reproducibility of the investigated agglomerate characteristics. The process allowed for the incorporation of 42.5% (wt/wt) PEG, which is higher than the percentage of PEG reported for other equipment. Tables of sufficient strength could be prepared with all investigated excipients using 20% wt/wt PEG; higher PEG contents gave rise to adhesion and prolonged disintegration. In conclusion, agglomeration in a torque-controlled rotary processor using solutions of PEG as the primary binder liquid was found to be a robust process, suitable for the incorporation of high contents of PEG and/or drug compounds.
机译:这项研究的目的是研究在旋转处理器中进行的两步附聚过程中,聚乙二醇(PEG)溶液作为主要粘合剂液体的用途,并表征所得颗粒及其压片特性。这是通过将微晶纤维素(MCC)与乳糖,磷酸钙,对乙酰氨基酚或茶碱的二元混合物以1∶3的比例制粒来完成的,使用50%(wt / wt)的PEG和水为水溶液。粘合剂液体。使用5种不同量的PEG粘合剂溶液将含乳糖的制剂凝聚,使PEG含量在6%至43%(wt / wt)的范围内。根据粘附力,产量和水需求量对工艺结果进行表征,并根据粒度,粒度分布,流动性以及压片特性对制得的颗粒进行表征。所有混合物的附聚导致高产率的自由流动的附聚物,并产生了所研究附聚物特性的良好可再现性。该工艺允许掺入42.5%(wt / wt)的PEG,高于其他设备报道的PEG百分比。可以使用20%wt / wt PEG用所有研究的赋形剂制备足够强度的表;较高的PEG含量会导致粘附和长时间崩解。总之,发现在使用PEG溶液作为主要粘合剂液体的扭矩控制型旋转处理器中的团聚是一个健壮的过程,适合掺入高含量的PEG和/或药物化合物。

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