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改善原料药流动性能的实用方法。

Practical methods for improving flow properties of active pharmaceutical ingredients.

机构信息

Department of Chemical and Biochemical Engineering, Rutgers University, Piscataway, NJ 09954, USA.

出版信息

Drug Dev Ind Pharm. 2009 Dec;35(12):1460-9. doi: 10.3109/03639040903025830.

Abstract

OBJECTIVE

The essential aim of this article is to develop effective methods for improving the flow properties of active pharmaceutical ingredients (APIs) without requiring particle size or shape modification.

METHODS

The 'formulation' approach used here focuses on enhancing flow properties of three chemically different drug powders (micronized acetaminophen, levalbuterol tartrate, and didesmethylsibutramine tartrate) by using small amounts of lubricants, glidants, and other additives, both individually and in combination. Additives are intimately mixed using a laboratory-scale V-blender with an intensifier bar. Flow index, dilation, and electrical impedance were measured for a total of 24 blends.

RESULTS

The flow behavior of all three APIs improved with the addition of these additives. Relative effectiveness of different additive combinations displayed remarkable consistency for all three APIs. Simultaneous presence of SiO2, MgSt, and talc led to substantial decreases in cohesiveness, causing major improvements in flowability of powder. All three properties showed a very tight correlation.

CONCLUSIONS

Drug powders with improved flow were found to exhibit low dilation and low impedance values. A common linear correlation between flow index and impedance and also between dilation and impedance was observed for all three APIs, indicating that electric properties play a substantial role in the cohesivity of all three APIs, and suggesting the presence of a common mechanism for the emergence (and mitigation) of cohesive phenomena.

摘要

目的

本文的基本目的是开发出有效的方法,在不改变药物颗粒大小和形状的前提下,改善原料药的流动性。

方法

此处使用的“配方”方法侧重于通过使用少量的润滑剂、助流剂和其他添加剂(单独使用或组合使用)来改善三种化学性质不同的药物粉末(微米化对乙酰氨基酚、酒石酸左沙丁胺醇和盐酸西布曲明)的流动性。添加剂通过带有强化棒的实验室规模 V 型混合机进行混合。总共测量了 24 种混合物的流动指数、膨胀率和电阻抗。

结果

所有三种 API 的流动性能都随着这些添加剂的加入而得到改善。不同添加剂组合的相对有效性对于所有三种 API 都显示出显著的一致性。SiO2、MgSt 和滑石粉同时存在会显著降低粉末的内聚性,从而显著改善其流动性。所有三种性质都表现出非常紧密的相关性。

结论

发现具有改善流动性的药物粉末表现出低膨胀率和低阻抗值。对于所有三种 API,流动指数与阻抗之间以及膨胀率与阻抗之间都存在着共同的线性相关性,这表明电性能在所有三种 API 的内聚性中起着重要作用,并表明存在一种共同的机制来解释(和缓解)内聚现象的出现。

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