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用于预测包衣片外观的无量纲机理包衣模型的开发与评估。

Development and evaluation of a dimensionless mechanistic pan coating model for the prediction of coated tablet appearance.

作者信息

Niblett Daniel, Porter Stuart, Reynolds Gavin, Morgan Tomos, Greenamoyer Jennifer, Hach Ronald, Sido Stephanie, Karan Kapish, Gabbott Ian

机构信息

AstraZeneca Plc, Charter Way, Macclesfield, SK10 2NA, UK.

Ashland Inc., Hercules Rd, Wilmington, DE, USA.

出版信息

Int J Pharm. 2017 Aug 7;528(1-2):180-201. doi: 10.1016/j.ijpharm.2017.05.060. Epub 2017 Jun 1.

Abstract

A mathematical, mechanistic tablet film-coating model has been developed for pharmaceutical pan coating systems based on the mechanisms of atomisation, tablet bed movement and droplet drying with the main purpose of predicting tablet appearance quality. Two dimensionless quantities were used to characterise the product properties and operating parameters: the dimensionless Spray Flux (relating to area coverage of the spray droplets) and the Niblett Number (relating to the time available for drying of coating droplets). The Niblett Number is the ratio between the time a droplet needs to dry under given thermodynamic conditions and the time available for the droplet while on the surface of the tablet bed. The time available for drying on the tablet bed surface is critical for appearance quality. These two dimensionless quantities were used to select process parameters for a set of 22 coating experiments, performed over a wide range of multivariate process parameters. The dimensionless Regime Map created can be used to visualise the effect of interacting process parameters on overall tablet appearance quality and defects such as picking and logo bridging.

摘要

基于雾化、片剂床移动和液滴干燥机制,已为制药锅包衣系统开发了一种数学化、机械性的片剂薄膜包衣模型,其主要目的是预测片剂外观质量。使用两个无量纲量来表征产品特性和操作参数:无量纲喷雾通量(与喷雾液滴的面积覆盖率相关)和尼布利特数(与包衣液滴的干燥可用时间相关)。尼布利特数是液滴在给定热力学条件下干燥所需时间与液滴在片剂床表面时的可用时间之比。片剂床表面的干燥可用时间对外观质量至关重要。这两个无量纲量用于为一组22次包衣实验选择工艺参数,这些实验在广泛的多变量工艺参数范围内进行。创建的无量纲工况图可用于直观显示相互作用的工艺参数对整体片剂外观质量以及诸如粘片和标志桥接等缺陷的影响。

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