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致力于建立介孔二氧化硅在药物递送应用中的构效关系。

Towards establishing structure-activity relationships for mesoporous silica in drug delivery applications.

作者信息

Rosenholm Jessica M, Lindén Mika

机构信息

Center for Functional Materials, Department of Physical Chemistry, Abo Akademi University, Porthansgatan 3-5, FIN-20500 Turku, Finland.

出版信息

J Control Release. 2008 Jun 4;128(2):157-64. doi: 10.1016/j.jconrel.2008.02.013. Epub 2008 Mar 6.

Abstract

Mesoporous silicas are currently widely studied carrier matrices in drug delivery applications. Surface functionalization of the silica is often employed in order to enhance the interaction between the drug and the support. However, in many cases the effectiveness of the introduced surface functions is much lower than what could be expected, and the release rate from surface functionalized silica is often not very different from that of the bare silica support, suggesting that the drug-support interactions are weaker than assumed under physiologically relevant conditions. We have therefore studied the adsorption of a model acidic drug, salicylic acid, to amino-functionalized mesoporous silica both from organic solvents, and from water as a function of pH, in order to rationalize these findings. It is shown that the nature of the organic solvent has a great influence on the loading degree, which however is more pronounced for the pristine silica materials due to absence of strong drug-support interactions. More importantly, the net effective surface charge of the adsorbent was found to control the adsorption process in water, and remaining silanols on the silica surface after functionalization have a marked influence on the drug-support interactions. The results can explain the relatively minor influence of amino groups on the release of acidic drugs reported in the literature, and gives a rational basis for optimization of support-drug interactions. The results are also of interest for optimization of drug immobilization and purification, as many medicinal and biologically active compounds are organic acids.

摘要

介孔二氧化硅目前是药物递送应用中广泛研究的载体基质。二氧化硅的表面功能化常用于增强药物与载体之间的相互作用。然而,在许多情况下,引入的表面功能的有效性远低于预期,并且表面功能化二氧化硅的释放速率通常与裸二氧化硅载体的释放速率没有太大差异,这表明在生理相关条件下,药物与载体的相互作用比假设的要弱。因此,我们研究了模型酸性药物水杨酸从有机溶剂和水中作为pH函数对氨基功能化介孔二氧化硅的吸附,以便对这些发现进行合理的解释。结果表明,有机溶剂的性质对负载程度有很大影响,然而,由于缺乏强烈的药物与载体相互作用,这种影响在原始二氧化硅材料中更为明显。更重要的是,发现吸附剂的净有效表面电荷控制了在水中的吸附过程,功能化后二氧化硅表面残留的硅醇对药物与载体的相互作用有显著影响。这些结果可以解释文献中报道的氨基对酸性药物释放的相对较小的影响,并为优化载体与药物的相互作用提供了合理的基础。由于许多药用和生物活性化合物都是有机酸,这些结果对于优化药物固定化和纯化也具有重要意义。

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