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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Application of the unified compaction curve to link wet granulation and tablet compaction behaviour
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Application of the unified compaction curve to link wet granulation and tablet compaction behaviour

机译:统一压实曲线在湿法制粒与片剂压实行为之间的联系

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摘要

Tablets make up approximately one third of all drug dosage forms which makes tablet manufacture a common process in the pharmaceutical industry. The unified compaction curve [1 ] is an model developed initially to look at the impact of the roller compaction conditions on the tablet strength. The tensile strength of the tablets made from formulations containing at least 50% microcrystalline cellulose produced at roller compaction pressures were measured and the profiles were collapsed into a single master "unified compaction curve". This allowed for the tablet strength to be predicted from the roller compaction condition and formulations, and target the required tablet strength criterion set by standards or specifications [ 1 ]. In this paper, the unified compaction curve was applied to investigate the effects of the wet granulation conditions on the tablet tensile strength. The study was based on a placebo formulation comprising of 50 wt.% microcrystalline cellulose, 50 wt.% lactose and a 5 w/v% PVP (K90) binder solution. The effects of the liquid level (20-50 wt%), wet massing time (0-10 min), binder flow rate (130 g/min and 280 g/min) and impeller speed (150,285 and 600 rpm) on the tablet strength were explored. A compaction profile was created to represent the relationship between the tablet tensile strength, compaction pressure and the granulation condition. By fitting the unified compaction curve model to the data, the profiles exploring each granulation condition collapsed onto a single master curve which predicts the tablet strength as a function of the liquid level, wet massing time or the binder flow rate. Increasing the liquid level and/or wet massing time caused a reduction in the tablet hardness when compressed at the same compaction force, and the reduction is postulated to be proportional to the compaction forces experienced during granulation. The data further collapses onto a single master curve which is solely a function of the total number of impeller revolutions. The unified compaction curve is expected to have important implications for the pharmaceutical industry by enabling the tablet strength to be optimised in advance by adjusting the granulation and compaction conditions.
机译:片剂约占所有药物剂型的三分之一,这使片剂制造成为制药行业的常见过程。统一的压实曲线[1]是最初为研究压辊条件对片剂强度的影响而开发的模型。测量由包含至少50%的微晶纤维素的制剂在辊压下产生的片剂的拉伸强度,并且将其轮廓折叠成单个主“统一压实曲线”。这样可以根据压辊条件和配方预测片剂强度,并以标准或规格[1]为目标设置所需的片剂强度标准。本文采用统一的压实曲线研究湿法制粒条件对片剂拉伸强度的影响。该研究基于安慰剂制剂,该安慰剂制剂包含50重量%的微晶纤维素,50重量%的乳糖和5w / v%的PVP(K90)粘合剂溶液。片剂上的液位(20-50 wt%),湿质量时间(0-10分钟),粘合剂流速(130 g / min和280 g / min)和叶轮速度(150,285和600 rpm)的影响探索力量。创建压实曲线以代表片剂抗张强度,压实压力和制粒条件之间的关系。通过将统一的压实曲线模型拟合到数据,探索每种制粒条件的轮廓将折叠到一条主曲线上,该主曲线预测了片剂强度随液位,湿质量时间或粘合剂流速的变化。当以相同的压紧力压制时,增加液位和/或湿法制粒时间会导致片剂硬度降低,并且假定该降低与制粒过程中经受的压紧力成比例。数据进一步崩溃在一条主曲线上,该曲线仅是叶轮转数的函数。通过调整制粒和压实条件,使片剂强度预先得到优化,统一的压实曲线有望对制药行业产生重要影响。

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