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不含微晶纤维素的挤出滚圆微丸:处方和工艺变量的影响

Extruded and spheronized beads containing no microcrystalline cellulose: influence of formulation and process variables.

作者信息

Agrawal Anjali M, Howard Matthew A, Neau Steven H

机构信息

Division of Pharmaceutical Sciences, School of Pharmacy, University of Missouri-Kansas City, Kansas City, Missouri 64110-2499, USA.

出版信息

Pharm Dev Technol. 2004;9(2):197-217. doi: 10.1081/pdt-120030250.

Abstract

The purposes of this study were to investigate the use of chitosan in the manufacture of beads by extrusion-spheronization without inclusion of microcrystalline cellulose, and to study the effect of formulation and process variables on the characteristics of the beads. Beads containing chitosan, fine particle ethylcellulose, hydroxypropyl methylcellulose (HPMC), and caffeine as the model drug were manufactured. Bead size, yield, shape, friability, density, porosity, and release studies were determined. Spherical beads with good mechanical properties could be manufactured without microcrystalline cellulose. Release studies showed that there was immediate release of drug from the beads. A five factor, half fraction screening design was employed to study the effect of formulation variables and process variables on the properties of the beads. Statistical analysis indicated that formulation variables such as the chitosan content, HPMC content, and water content, and process variables such as the spheronizer speed and extruder speed significantly affected the physical properties of the beads. The bead size decreased with an increase in chitosan content. Significant two-factor interactions exist between the variables for several of the measured responses. Beads with high percentage yield and high sphericity can be obtained at high chitosan content, and low HPMC content, water content, spheronizer speed, and extruder speed. Less friable beads can be obtained at high levels of studied formulation variables and low levels of studied process variables. Beads of high density and low porosity can be manufactured at high levels of the studied formulation and process variables. Regression equations were generated using Statgraphics Plus software that can be used to develop formulations with desired bead properties. Chitosan was useful to provide beads of acceptable physical properties using water as a granulating fluid in the extrusion-spheronization process.

摘要

本研究的目的是研究壳聚糖在不包含微晶纤维素的情况下通过挤出滚圆法制备微丸中的应用,并研究配方和工艺变量对微丸特性的影响。制备了含有壳聚糖、细颗粒乙基纤维素、羟丙基甲基纤维素(HPMC)和作为模型药物的咖啡因的微丸。测定了微丸的尺寸、收率、形状、脆碎度、密度、孔隙率和释放情况。在不使用微晶纤维素的情况下可以制备出具有良好机械性能的球形微丸。释放研究表明,药物从微丸中立即释放。采用五因素、二分之一分数析因设计来研究配方变量和工艺变量对微丸性质的影响。统计分析表明,壳聚糖含量、HPMC含量和含水量等配方变量,以及滚圆机速度和挤出机速度等工艺变量显著影响微丸的物理性质。微丸尺寸随壳聚糖含量的增加而减小。对于几个测量响应,变量之间存在显著的双因素相互作用。在高壳聚糖含量、低HPMC含量、低含水量、低滚圆机速度和低挤出机速度下可以获得高收率和高球形度的微丸。在高配方变量水平和低工艺变量水平下可以获得脆碎度较低的微丸。在高配方和工艺变量水平下可以制备出高密度和低孔隙率的微丸。使用Statgraphics Plus软件生成了回归方程,可用于开发具有所需微丸性质的配方。在挤出滚圆过程中,壳聚糖有助于使用水作为制粒流体来提供具有可接受物理性质的微丸。

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