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首页> 外文期刊>Drug development and industrial pharmacy >Investigation of the potential for direct compaction of a fine ibuprofen powder dry-coated with magnesium stearate
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Investigation of the potential for direct compaction of a fine ibuprofen powder dry-coated with magnesium stearate

机译:用镁硬脂酸镁干式涂层精细布洛芬粉直接压实潜力的研究

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Intensive dry powder coating (mechanofusion) with tablet lubricants has previously been shown to give substantial powder flow improvement. This study explores whether the mechanofusion of magnesium stearate (MgSt), on a fine drug powder can substantially improve flow, without preventing the powder from being directly compacted into tablets. A fine ibuprofen powder, which is both cohesive and possesses a low-melting point, was dry coated via mechanofusion with between 0.1% and 5% (w/w) MgSt. Traditional low-shear blending was also employed as a comparison. No significant difference in particle size or shape was measured following mechanofusion. For the low-shear blended powders, only marginal improvement in flowability was obtained. However, after mechanofusion, substantial improvements in the flow properties were demonstrated. Both XPS and ToF-SIMS demonstrated high degrees of a nano-scale coating coverage of MgSt on the particle surfaces from optimized mechanofusion. The study showed that robust tablets were produced from the selected mechanofused powders, at high-dose concentration and tablet tensile strength was further optimized via addition of a Polyvinylpyrrolidone (PVP) binder (10% w/w). The tablets with the mechanofused powder (with or without PVP) also exhibited significantly lower ejection stress than those made of the raw powder, demonstrating good lubrication. Surprisingly, the release rate of drug from the tablets made with the mechanofused powder was not retarded. This is the first study to demonstrate such a single-step dry coating of model drug with MgSt, with promising flow improvement, flow-aid and lubrication effects, tabletability and also non-inhibited dissolution rate.
机译:先前已经显示了具有片剂润滑剂的密集干粉涂料(机械化铸造),以产生大量粉末流动改善。本研究探讨了硬脂酸镁(MGST)的机械化,在精细药物粉末上可以显着改善流动,而不防止粉末直接压实成片剂。一部是细粘性并具有低熔点的精细布洛芬粉末,通过机电铸造涂覆干燥,其在0.1%和5%(w / w)mgst之间。传统的低剪切混合也可用作比较。在机械化后测量粒度或形状的显着差异。对于低剪切混纺粉末,仅获得流动性的边际改善。然而,在机械铸造之后,证明了流动性质的显着改善。 XPS和TOF-SIM卡均在优化的机械铸造件上展示了MGST的MGST的高度纳米尺度涂覆覆盖度。该研究表明,通过加入聚乙烯吡咯烷酮(PVP)粘合剂(10%w / w),从选定的机械化粉末制备鲁棒片。通过加入聚乙烯吡咯烷酮(PVP)粘合剂(10%w / w)进一步优化片剂拉伸强度。具有机械用粉末的片剂(有或没有PVP)也表现出比原始粉末制成的射血应力显着降低,展示了良好的润滑。令人惊讶的是,没有延迟使用用机械用粉末制成的片剂的药物的释放速率。这是第一项研究,用于用MGST展示模型药物的单步干涂层,具有有前途的流动提高,伴随和润滑效应,润滑性和润滑性和不抑制溶解速率。

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