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药物-海藻酸盐颗粒的交联。第2部分。颗粒制备和组成对颗粒性质的影响。

Crosslinking of drug-alginate granules. Part 2. Effect of granule preparation and composition on granule properties.

作者信息

Mukhopadhyay D, Saville D, Tucker I G

机构信息

School of Pharmacy, University of Otago, Dunedin, New Zealand.

出版信息

Int J Pharm. 2008 May 22;356(1-2):193-9. doi: 10.1016/j.ijpharm.2008.01.022. Epub 2008 Jan 19.

Abstract

Paracetamol-alginate (Keltone HVCR) (1:1) granules were prepared by a wet granulation process followed by crosslinking of dried granules in calcium chloride solution. The effect of shear (planetary (low), Brabender (high)), binder quantity (1:2, 1:1 water:powder) and drug particle size (PS 98, 275 microm) were studied using a factorial design. Supporting studies were carried out varying binder quantity and alginate grade (viscosity). In the pre-treated granules, drug entrapment was mainly influenced by drug PS, where the smaller particles showed better embedding. After crosslinking, drug particle size continued to be the most important factor influencing drug recovery. All factors influenced early stage release where high shear, high binder, small drug PS granules showed least release and the low shear, low binder and large drug PS granules showed greatest release. Some significant two-factor interactions were found. Granule consolidation (shown by SEM) and particle embedding increased with binder quantity and reduced as the alginate viscosity was increased. Crosslinking, as shown by Na and Ca contents was >90%. The impact of granule consolidation on drug entrapment and recovery was relatively small (<10%) when compared to its effect on early stage drug release (>60%) which may be important if these granule systems are to be used for taste improvement.

摘要

对乙酰氨基酚-海藻酸盐(Keltone HVCR)(1:1)颗粒通过湿法制粒工艺制备,随后将干燥颗粒在氯化钙溶液中进行交联。采用析因设计研究了剪切力(行星式(低)、布拉本德式(高))、粘合剂用量(1:2、1:1水:粉末)和药物粒径(PS 98、275微米)的影响。进行了支持性研究,改变粘合剂用量和海藻酸盐等级(粘度)。在预处理颗粒中,药物包封主要受药物粒径影响,较小的颗粒显示出更好的包埋效果。交联后,药物粒径仍然是影响药物回收率的最重要因素。所有因素都影响早期释放,其中高剪切、高粘合剂、小药物粒径的颗粒释放最少,低剪切、低粘合剂和大药物粒径的颗粒释放最多。发现了一些显著的双因素相互作用。颗粒固结(通过扫描电子显微镜显示)和颗粒包埋随粘合剂用量增加而增加,随海藻酸盐粘度增加而降低。如钠和钙含量所示,交联率>90%。与颗粒固结对早期药物释放的影响(>60%)相比,其对药物包封和回收率的影响相对较小(<10%),如果这些颗粒系统用于改善口感,这可能很重要。

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