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Effect of silica precursor transformation on diclofenac sodium release

机译:二氧化硅前体转化对双氯芬酸钠钠的影响

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摘要

The present paper describes the preparation of a new type of ternary composite where pure silica gel or polysilsesquioxane was deposited on a polymer carrier loaded with a high dose of diclofenac sodium. The silica species were prepared by in situ gelation of the precursors, tetraethoxysilane (TEOS) or ethyltriethoxysilane (ETEOS), in the presence of an acidic catalyst in the vapour phase. The conducted studies (low temperature nitrogen sorption, XRD, SEM, EDX) reveal that the introduction of drug molecules, as well as silica species, significantly changes the internal structure of the host material. The total porosity of the ternary composites strongly depends on the type of applied silica precursor. Additionally, it is shown that the exposure of the TEOS-saturated or ETEOS-saturated solid dispersion of drug within the polymer to acid vapors is sufficient to cause the irreversible transformation of diclofenac sodium into sodium chloride and a derivative of phenylacetic acid. Furthermore, TEOS prevents the transformation of the drug into its acidic form more effectively than the ETEOS precursor. Finally, the in vitro release of the drug is demonstrated, which clearly indicates that after the embedding both of the silica species, the rate of drug release is modified and the degree of initial drug delivery is successfully diminished. The obtained data are analyzed using different kinetics models to give insight into the possibility of prolonged release of a drug and the probable mechanism of drug release from the investigated samples.
机译:本文介绍了一种制备新型三元复合材料,其中纯硅胶或多晶硅辛硅氧烷沉积在装载高剂量的双氯芬酸钠的聚合物载体上。通过原位凝胶化在气相酸性催化剂存在下原位凝胶化制备二氧化硅物种。在酸性催化剂存在下,通过原位凝胶化,四乙氧基硅烷或乙基三氧基硅烷(etheos)。进行的研究(低温氮素吸附,XRD,SEM,EDX)表明,药物分子的引入以及二氧化硅物种显着改变了主体材料的内部结构。三元复合材料的总孔隙率强烈取决于应用的二氧化硅前体的类型。另外,表明,在聚合物中,药物在聚合物中的TEOS饱和或饱和饱和固体分散体的暴露足以使双氯氟乙烯钠转化为氯化钠的不可逆变化和苯基乙酸的衍生物。此外,TEOS比etheos前体更有效地防止药物转化为其酸性形式。最后,证明了药物的体外释放,这清楚地表明在嵌入两种二氧化硅物种后,修饰药物释放速率,初始药物递送程度成功减少。使用不同的动力学模型分析所获得的数据,以了解从研究样品中长期释放药物和可能的药物释放机制的可能性。

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  • 来源
    《RSC Advances》 |2015年第114期|共10页
  • 作者单位

    Maria Curie-Sklodowska University Faculty of Chemistry Department of Adsorption 3 M. Curie-Sklodowska Sq. Lublin 20-031 Poland.;

    Medical University of Lublin Faculty of Pharmacy Department of Applied Pharmacy 1 Chodzki Str Lublin 20-093 Poland;

    Maria Curie-Sklodowska University Faculty of Chemistry Department of Adsorption 3 M. Curie-Sklodowska Sq. Lublin 20-031 Poland.;

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  • 正文语种 eng
  • 中图分类 化学;
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