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使用添加的细乳糖增强吲哚美辛在交互式混合物中的溶出度。

Enhancement of the dissolution of indomethacin in interactive mixtures using added fine lactose.

作者信息

Allahham Ayman, Stewart Peter J

机构信息

Victorian College of Pharmacy, Monash University, Parkville, Australia.

出版信息

Eur J Pharm Biopharm. 2007 Nov;67(3):732-42. doi: 10.1016/j.ejpb.2007.04.013. Epub 2007 May 4.

Abstract

The objective of the study was to investigate the effect of fine lactose on the in vitro dissolution of indomethacin in interactive mixtures containing spray-dried lactose and lactose monohydrate (106-250 microm). Dissolution of the indomethacin was measured using an automated dissolution apparatus following the USP paddle method at 100 rpm. The particle size distributions of indomethacin mixtures were measured using a Mastersizer S under non-sink conditions. Data fitted bi-exponential or tri-exponential dissolution models, representing dissolution from dispersed and agglomerated particle distributions. The addition of fine lactose (VMD 3.8+/-0.4 microm) to 20% indomethacin-coarse lactose mixtures resulted in significantly increased rates of dissolution caused by increases in the estimated dissolution rate constants for dispersed particles (Kd) and by de-agglomeration. Agglomerates in the mixture showed little tendency to comminute under shear pressure. De-agglomeration in the dissolution medium was attributed to increased porosity of agglomerates, caused by dissolution of water soluble fine lactose in the agglomerate structure. The median particle size (D50) of the dispersed particle distribution decreased with increasing concentrations of added fine lactose, indicating increasing extents of de-agglomeration, and a good correlation between Kd and (D50)2 resulted for the coarse lactose-based mixtures (R2>0.984).

摘要

本研究的目的是调查在含有喷雾干燥乳糖和一水乳糖(106 - 250微米)的交互式混合物中,精细乳糖对吲哚美辛体外溶出度的影响。使用自动溶出装置按照美国药典桨法在100转/分钟的条件下测量吲哚美辛的溶出度。在非下沉条件下,使用马尔文激光粒度分析仪测量吲哚美辛混合物的粒度分布。数据拟合双指数或三指数溶出模型,分别代表分散颗粒分布和团聚颗粒分布的溶出情况。向20%吲哚美辛 - 粗乳糖混合物中添加精细乳糖(体积平均直径3.8±0.4微米),由于分散颗粒估计溶出速率常数(Kd)的增加以及解聚作用,导致溶出速率显著提高。混合物中的团聚物在剪切压力下几乎没有粉碎的趋势。溶出介质中的解聚归因于团聚物孔隙率的增加,这是由团聚物结构中水溶性精细乳糖的溶解引起的。随着添加精细乳糖浓度的增加,分散颗粒分布的中位粒径(D50)减小,表明解聚程度增加,并且对于基于粗乳糖的混合物,Kd与(D50)²之间存在良好的相关性(R²>0.984)。

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