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Functional Magnetic Mesoporous Silica Microparticles Capped with an Azo-Derivative: A Promising Colon Drug Delivery Device

机译:偶氮衍生物覆盖的功能性磁介孔二氧化硅微粒:一种有希望的结肠药物输送装置。

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Magnetic micro-sized mesoporous silica particles were used for the preparation of a gated material able to release an entrapped cargo in the presence of an azo-reducing agent and, to some extent, at acidic pH. The magnetic mesoporous microparticles were loaded with safranin O and the external surface was functionalized with an azo derivative 1 (bearing a carbamate linkage) yielding solid S1. Aqueous suspensions of S1 at pH 7.4 showed negligible safranin O release due to the presence of the bulky azo derivative attached onto the external surface of the inorganic scaffold. However, in the presence of sodium dithionite (azoreductive agent), a remarkable safranin O delivery was observed. At acidic pH, a certain safranin O release from S1 was also found. The pH-triggered safranin O delivery was ascribed to the acid-induced hydrolysis of the carbamate moiety that linked the bulky azo derivatives onto the mesoporous inorganic magnetic support. The controlled release behavior of S1 was also tested using a model that simulated the gastro intestinal tract.
机译:磁性微米尺寸的介孔二氧化硅颗粒用于制备能够在存在偶氮还原剂的情况下并在一定程度上在酸性pH下释放包裹物的门控材料。磁性介孔微粒中装有番红蛋白O,外表面用偶氮衍生物1(带有氨基甲酸酯键)官能化,得到固体S1。 S1的水悬浮液在pH 7.4下显示出的藏红素O释放量可忽略不计,这是由于存在附着在无机支架外表面的庞大的偶氮衍生物所致。但是,在连二亚硫酸钠(偶氮还原剂)的存在下,观察到了番红花O的显着释放。在酸性pH值下,还发现从S1释放出一定的番红素O。 pH触发的藏红素O传递归因于氨基甲酸部分的酸诱导水解,该氨基甲酸酯部分将庞大的偶氮衍生物连接到中孔无机磁性载体上。还使用模拟胃肠道的模型测试了S1的控释行为。

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