Suppr超能文献

药物吸附到硅石表面在介孔硅系统药物释放中的作用。

Role of Drug Adsorption onto the Silica Surface in Drug Release from Mesoporous Silica Systems.

机构信息

Synthesis and Solid State Pharmaceutical Centre (SSPC), School of Pharmacy, University College Cork , Cork, Ireland.

School of Pharmacy, University College Cork , Cork, Ireland.

出版信息

Mol Pharm. 2018 Jan 2;15(1):141-149. doi: 10.1021/acs.molpharmaceut.7b00778. Epub 2017 Dec 18.

Abstract

Factors contributing to incomplete drug release from a number of mesoporous silica formulations are not well understood. This study aims to address this gap in knowledge by exploring the role of drug adsorption onto silica substrates during the drug release process in dissolution media. Adsorption isotherms were generated to understand drug adsorption behavior onto the silica surface. Two silica materials were selected (SBA-15 (mesoporous) and Aerosil 200 (nonporous)) to investigate the influence of porous architecture on the adsorption/dissolution processes. The ability of the dissolution medium to wet the silica surface, particularly the porous network, was investigated by the addition of a surfactant to the dissolution medium. The results demonstrated that a larger amount of drug was bound/m to the nonporous surface than to the mesoporous material. Adsorption isotherms proved useful in understanding drug adsorption/release behavior for the nonporous silica formulation. However, the quantity of drug remaining on the mesoporous silica surface after dissolution was significantly higher than the amount predicted using adsorption isotherm data. These results suggest that a fraction of loaded drug molecules were tightly bound to the silica surface or attached to sites which are inaccessible for the dissolution media. The presence of surfactant, sodium dodecyl sulfate, in the media enhanced drug release from the silica surface. This behavior can be attributed to both the improved wetting characteristics of the media and adsorption of the surfactant to the silica surface. The findings of this study reinforce the significance of the role that silica porous architecture plays in the dissolution process and indicates that accessible surface area is an important parameter to consider for mesoporous systems in relation to drug release.

摘要

导致许多介孔硅制剂药物释放不完全的因素尚未得到很好的理解。本研究旨在通过探索药物在溶解介质中的释放过程中吸附到硅基底上的作用来填补这一知识空白。吸附等温线的生成用于理解药物在硅表面上的吸附行为。选择了两种硅材料(介孔 SBA-15 和无孔 Aerosil 200)来研究多孔结构对吸附/溶解过程的影响。通过在溶解介质中添加表面活性剂来研究溶解介质润湿硅表面(特别是多孔网络)的能力。结果表明,非多孔表面结合的药物量比介孔材料多。吸附等温线对于理解非多孔硅制剂的药物吸附/释放行为非常有用。然而,在溶解后留在介孔硅表面上的药物量明显高于使用吸附等温线数据预测的量。这些结果表明,一部分负载的药物分子被紧密结合到硅表面上,或者被附着在溶解介质无法到达的位置上。表面活性剂十二烷基硫酸钠的存在增强了药物从硅表面的释放。这种行为可归因于介质润湿性的改善和表面活性剂对硅表面的吸附。本研究的结果强调了硅多孔结构在溶解过程中所起的作用的重要性,并表明对于介孔系统,可及表面积是与药物释放相关的一个重要参数。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验