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原位流化热熔制粒过程中制剂变量和工艺参数对颗粒特性的影响研究。

An investigation into the effect of formulation variables and process parameters on characteristics of granules obtained by in situ fluidized hot melt granulation.

机构信息

Department of Pharmaceutical Technology and Cosmetology, Faculty of Pharmacy, University of Belgrade, Vojvode Stepe 450, 11221 Belgrade, Serbia.

出版信息

Int J Pharm. 2012 Feb 28;423(2):202-12. doi: 10.1016/j.ijpharm.2011.12.013. Epub 2011 Dec 17.

Abstract

The aim of this study was to investigate the influence of binder content, binder particle size, granulation time and inlet air flow rate on granule size and size distribution, granule shape and flowability, as well as on drug release rate. Hydrophilic (polyethyleneglycol 2000) and hydrophobic meltable binder (glyceryl palmitostearate) were used for in situ fluidized hot melt granulation. Granule size was mainly influenced by binder particle size. Binder content was shown to be important for narrow size distribution and good flow properties. The results obtained indicate that conventional fluid bed granulator may be suitable for production of highly spherical agglomerates, particularly when immersion and layering is dominant agglomeration mechanism. Granule shape was affected by interplay of binder content, binder particle size and granulation time. Solid state analysis confirmed unaltered physical state of the granulate components and the absence of interactions between the active and excipients. Besides the nature and amount of binder, the mechanism of agglomerate formation seems to have an impact on drug dissolution rate. The results of the present study indicate that fluidized hot melt granulation is a promising powder agglomeration technique for spherical granules production.

摘要

本研究旨在探讨粘结剂含量、粘结剂粒径、造粒时间和进气流量对颗粒大小和分布、颗粒形状和流动性以及药物释放速率的影响。亲水(聚乙二醇 2000)和疏水可熔融粘结剂(甘油棕榈硬脂酸酯)用于原位流化热熔制粒。颗粒大小主要受粘结剂粒径的影响。粘结剂含量对窄粒径分布和良好的流动性很重要。研究结果表明,传统流化床制粒机可能适用于生产高球形团聚体,特别是当浸附和分层是主要的团聚机制时。颗粒形状受粘结剂含量、粘结剂粒径和造粒时间的相互作用影响。固态分析证实了颗粒成分的物理状态没有改变,活性成分和赋形剂之间没有相互作用。除了粘结剂的性质和数量外,团聚体形成的机制似乎对药物溶出速率有影响。本研究结果表明,流化热熔制粒是一种有前途的粉末团聚技术,可用于生产球形颗粒。

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