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Effect of pH on the structure and drug release profiles of layer-by-layer assembled films containing polyelectrolyte micelles and graphene oxide

机译:pH值对包含聚电解质胶束和氧化石墨烯的逐层组装膜的结构和药物释放曲线的影响

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摘要

Layer by layer (lbl) assembled multilayer thin films are used in drug delivery systems with attractive advantages such as unlimited selection of building blocks and free modification of the film structure. In this paper, we report the fundamental properties of lbl films constructed from different substances such as PS-b-PAA amphiphilic block copolymer micelles (BCM) as nano-sized drug vehicles, 2D-shaped graphene oxide (GO), and branched polyethylenimine (bPEI). These films were fabricated by successive lbl assembly as a result of electrostatic interactions between the carboxyl group of BCM and amine group of functionalized GO or bPEI under various pH conditions. We also compared the thickness, roughness, morphology and degree of adsorption of the (bPEI/BCM) films to those in the (GO/BCM) films. The results showed significant difference because of the distinct pH dependence of each material. In addition, drug release rates of the GO/BCM film were more rapid those of the (bPEI/BCM) film in pH 7.4 and pH 2 PBS buffer solutions. In (bPEI/BCM/GO/BCM) film, the inserted GO layers into bPEI/BCM multilayer induced rapid drug release. We believe that these materials & pH dependent film properties allow developments in the control of coating techniques for biological and biomedical applications.
机译:逐层组装的多层薄膜用于药物输送系统,具有吸引人的优势,例如无限制地选择结构单元和自由改变膜结构。在本文中,我们报告了由不同物质(如PS-b-PAA两亲嵌段共聚物胶束(BCM)作为纳米级药物载体,2D形氧化石墨烯(GO)和支化聚乙烯亚胺( bPEI)。这些膜是通过在不同的pH条件下BCM的羧基与官能化的GO或bPEI的胺基之间的静电相互作用而通过连续的lbl组装制成的。我们还比较了(bPEI / BCM)膜与(GO / BCM)膜中膜的厚度,粗糙度,形态和吸附程度。由于每种材料对pH值的依赖性不同,结果显示出显着差异。另外,在pH 7.4和pH 2 PBS缓冲溶液中,GO / BCM膜的药物释放速率比(bPEI / BCM)膜的药物释放速率更快。在(bPEI / BCM / GO / BCM)膜中,将插入的GO层插入bPEI / BCM多层膜可诱导药物快速释放。我们相信,这些材料和pH依赖的薄膜特性可以控制生物和生物医学应用的涂层技术。

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