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pH-responsive drug delivery system based on hollow silicon dioxide micropillars coated with polyelectrolyte multilayers

机译:基于中空二氧化硅微柱的聚电解质多层涂层的pH响应药物输送系统

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摘要

We report on the fabrication of polyelectrolyte multilayer-coated hollow silicon dioxide micropillars as pH-responsive drug delivery systems. Silicon dioxide micropillars are based on macroporous silicon formed by electrochemical etching. Due to their hollow core capable of being loaded with chemically active agents, silicon dioxide micropillars provide additional function such as drug delivery system. The polyelectrolyte multilayer was assembled by the layer-by-layer technique based on the alternative deposition of cationic and anionic polyelectrolytes. The polyelectrolyte pair poly(allylamine hydrochloride) and sodium poly(styrene sulfonate) exhibited pH-responsive properties for the loading and release of a positively charged drug doxorubicin. The drug release rate was observed to be higher at pH 5.2 compared to that at pH 7.4. Furthermore, we assessed the effect of the number of polyelectrolyte bilayers on the drug release loading and release rate. Thus, this hybrid composite could be potentially applicable as a pH-controlled system for localized drug release.
机译:我们报告制造聚电解质多层涂层空心二氧化硅微柱作为pH响应药物传递系统。二氧化硅微柱基于通过电化学蚀刻形成的大孔硅。由于它们的中空核心能够装载化学活性剂,因此二氧化硅微柱提供了其他功能,例如药物输送系统。基于阳离子和阴离子聚电解质的交替沉积,通过逐层技术组装聚电解质多层。聚电解质对聚(烯丙胺盐酸盐)和聚(苯乙烯磺酸钠)对装载和释放带正电荷的药物阿霉素表现出pH响应特性。在pH值为5.2时观察到的药物释放速率高于pH值为7.4时的释放速率。此外,我们评估了聚电解质双层的数量对药物释放负荷和释放速率的影响。因此,该杂化复合物可能潜在地可作为用于局部药物释放的pH控制系统。

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