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The effect of roller compaction and tableting stresses on pharmaceutical tablet performance

机译:辊压缩和压片胁迫对药片性能的影响

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摘要

In this research the effect of two fundamental stresses, i.e. the tableting load and roller compaction pressure, on tablet disintegration were investigated. Excipient materials were roller compacted using a range of pressures, and tablets were produced by compressing the consequent granules at varying tableting loads. For this study mannitol, a brittle and soluble material, and microcrystalline cellulose, a deformable and insoluble material, were investigated at varying binary ratios. The tablets were characterised by analysis of the compactibility and a flow cell imaging method was utilised to investigate tablet disintegration in real-time. It was found that the effect of roller compaction (RC) pressure on tablet tensile strength and porosity was dependent on the tableting load used. At low tableting load, the tablet porosity varied depending on the RC pressure used, whereas the tensile strength was largely unaffected. The use of a high tableting load leads to the opposite effect being observed. The tensile strength was highly dependent on the RC pressure used. In terms of the tablet disintegration the RC pressure did not influence the disintegration behaviour when low tableting loads were used as the process was rapid. When higher tableting loads were used, tablets containing granules roller compacted using lower pressure expanded in size larger than when a low RC pressure was used. A low RC pressure also lead to a faster particle release rate was observed. (C) 2018 Published by Elsevier B.V.
机译:在这项研究中,研究了两个基本应力的影响,即压片载荷和辊压缩压力在片剂崩解中。赋形剂材料使用一系列压力压实,通过压缩随后的压片载荷以改变的颗粒来制备片剂。对于该研究,甘露醇,脆性和可溶性材料和微晶纤维素,可变形和不溶性材料以不同的二元比例研究。通过分析可致密性的分析表征平板电脑,流动细胞成像方法实时地研究片剂崩解。发现辊压缩(Rc)压力对片剂拉伸强度和孔隙率的影响取决于所用的压片载荷。在较低的压片负荷下,压片孔隙率根据所使用的RC压力而变化,而拉伸强度大大不受影响。使用高压片负荷导致相反的效果。拉伸强度高度依赖于所用的RC压力。就片剂崩解而言,当使用随着该过程快速时使用低压片载荷时,RC压力不会影响崩解行为。当使用更高的压片载荷时,含有颗粒辊压实的片剂,使用较低的压力膨胀大于使用低RC压力时的尺寸。低RC压力也导致了更快的颗粒释放速率。 (c)2018由elsevier b.v发布。

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