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Synthesis of hierarchically nanoporous silica films for controlled drug loading and release

机译:分层次的合成纳米多孔二氧化硅电影控制药物负载和释放

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Films with well-controlled porous structures provide many exciting application opportunities in chemistry and biology. Here we report the synthesis of a highly uniform, hierarchically nanoporous silica film structure, and its application in drug loading and release for antibacterial surface coating. Templated by both sub-micron poly-styrene (PS) particles and a triblock copolymer (F127), this hierarchically nanoporous film has two distinct pore sizes of 200 nm and 7 nm. The 7-nm mesopores provide high surface area and thus high adsorption capacity for drug molecules, and the 200-nm macropores facilitate the adsorption rate of drug molecules, especially for molecules with comparable sizes to mesopores. Fluorescence measurement of rhodamine release demonstrates that this hierarchically porous film has a higher adsorption capacity, efficiency and much longer molecule releasing time window than both the inverse opal film and the mesoporous film. When loaded with Ampicillin, this hierarchically porous film shows over 8 times longer of inhibition of E. coli growth than both the inverse opal film and the mesoporous film. This simple and versatile process allows for fabrication of a variety of surface-coated, hierarchically nanoporous films with different chemical compositions and applications.
机译:电影与控制多孔结构提供了许多令人兴奋的应用程序的机会在化学和生物学。合成的高度统一,层级纳米多孔硅膜的结构,和它的应用在药物负载和释放抗菌表面涂层。亚微米聚苯乙烯(PS)和一个粒子triblock共聚物(F127),这个等级纳米多孔膜有两个不同的孔隙大小200 nm和7海里。表面积,因此高吸附容量药物分子,200 nm大孔隙促进药物分子的吸附率,尤其是对分子大小类似中孔。释放表明这个等级多孔膜有较高的吸附容量,分子释放效率和更长的时间比逆蛋白石电影和时间窗口介孔薄膜。这个层级结构多孔膜显示/ 8倍的时间比大肠杆菌的抑制增长逆蛋白石电影和介孔电影。制造各种surface-coated,等级制度和不同的纳米多孔膜化学成分和应用程序。

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