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Microparticle surface layering through dry coating:impact of moisture content and process parameters on the properties of orally disintegrating tablets

机译:通过干法涂层形成微粒表面分层:水分含量和工艺参数对口腔崩解片性能的影响

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摘要

OBJECTIVES: The aim of this study was to investigate the influence of process parameters during dry coating on particle and dosage form properties upon varying the surface adsorbed moisture of microcrystalline cellulose (MCC), a model filler/binder for orally disintegrating tablets (ODTs). METHODS: The moisture content of MCC was optimised using the spray water method and analysed using thermogravimetric analysis. Microproperty/macroproperty assessment was investigated using atomic force microscopy, nano-indentation, scanning electron microscopy, tablet hardness and disintegration testing. KEY FINDINGS: The results showed that MCC demonstrated its best flowability at a moisture content of 11.2% w/w when compared to control, comprising of 3.9% w/w moisture. The use of the composite powder coating process (without air) resulted in up to 80% increase in tablet hardness, when compared to the control. The study also demonstrated that surface adsorbed moisture can be displaced upon addition of excipients during dry processing circumventing the need for particle drying before tabletting. CONCLUSIONS: It was concluded that MCC with a moisture content of 11% w/w provides a good balance between powder flowability and favourable ODT characteristics.
机译:目的:本研究的目的是研究干包衣过程中工艺参数对微晶纤维素(MCC)(一种口腔崩解片(ODT)的模型填充剂/粘合剂)的表面吸附水分的改变对颗粒和剂型性质的影响。方法:采用喷水法优化MCC的水分含量,并采用热重分析法进行分析。使用原子力显微镜,纳米压痕,扫描电子显微镜,片剂硬度和崩解测试研究了微观/宏观评估。主要发现:结果显示,与含3.9%w / w的对照相比,MCC在水分含量为11.2%w / w时表现出最佳的流动性。与对照组相比,使用复合粉末包衣工艺(无空气)可使片剂硬度提高多达80%。该研究还表明,在干燥过程中添加赋形剂后,表面吸附的水分可以被置换,从而避免了压片前需要进行颗粒干燥。结论:得出的结论是,水分含量为11%w / w的MCC在粉末流动性和良好的ODT特性之间取得了良好的平衡。

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