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首页> 外文期刊>International Journal of Quantum Chemistry >A study of carboxylic-modified i-nesoporous silica in controlled delivery for drug famotidine
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A study of carboxylic-modified i-nesoporous silica in controlled delivery for drug famotidine

机译:羧基修饰的异硅氧硅酸盐在法莫替丁药物控制递送中的研究

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A series of pure silica MSU and carboxylic-modified MSU materials were prepared. The formation of mesoporous silica materials with terminal carboxylic groups on pore surface was performed by the acid-catalyzed hydrolysis of cyano to carboxy he. Then their potential applications in controlled drug delivery carriers were investigated. Drug famotidine was selected as model molecule out of the consideration or the terminal amino groups in its molecule. The adsorption experiments show significant adsorption of famotidine oil the carboxylic-modified MSU materials. And, the functionalization level of carboxylic groups has been found to be tire key factor affecting tire adsorption capacities of the modified MSU materials for famotidine. Subsequently, three kinds of release fluids, including simulated gastric medium, simulated intestinal medium and simulated body fluid, were Used to test the famotidine release rate from the carboxylic-modified MSU material. Obvious delayed effect has been observed for the famotidine release from the carboxylic-modified mesoporous silica material under the in vitro assays. (C) 2006 Elsevier Inc. All rights reserved.
机译:制备了一系列的纯二氧化硅MSU和羧酸改性的MSU材料。通过酸催化氰基水解为羧基he,在孔表面形成具有末端羧基的介孔二氧化硅材料。然后研究了它们在受控药物输送载体中的潜在应用。考虑到药物法莫替丁或其分子中的末端氨基,选择法莫替丁作为模型分子。吸附实验表明法莫替丁油对羧基改性的MSU材料有明显的吸附作用。并且,已发现羧基的官能化水平是影响改性MSU材料对法莫替丁的轮胎吸附能力的轮胎关键因素。随后,使用三种释放液,包括模拟胃介质,模拟肠介质和模拟体液,以测试法莫替丁从羧酸改性的MSU材料中的释放速率。在体外测定中,观察到法莫替丁从羧酸改性的介孔二氧化硅材料中释放的明显延迟作用。 (C)2006 Elsevier Inc.保留所有权利。

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