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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Charged drug delivery by ultrafast exponentially grown weak polyelectrolyte multilayers: amphoteric properties, ultrahigh loading capacity and pH-responsiveness
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Charged drug delivery by ultrafast exponentially grown weak polyelectrolyte multilayers: amphoteric properties, ultrahigh loading capacity and pH-responsiveness

机译:通过超快指数增长的弱聚电解质多层带电药物传递:两性,超高载量和pH响应性

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摘要

Exponentially growing layer-by-layer hierarchical nanoporous films have been used as a promising system for controlled drug loading/release applications. However, its growth mechanism and factors affecting the drug loading/release are still unclear. In this study, high molecular weight branched poly(ethyleneimine) (PEI) and poly(acrylic acid) (PAA) were utilized as model weak polyelectrolytes to investigate the growth mechanism and the drug loading/release of the multilayers. The pH-dependent growth behavior, interdiffusion of PEI and morphological changes of the film indicate that a pH-dependent polyelectrolyte interdiffusion mechanism is involved in the ultrafast exponential growth process. It is discovered, for the first time, that the fabricated films possess a pH-triggered switchable polarity and tunable charge density associated to the outermost layer, which can enable the loading of anionic or cationic drugs while offering a broad range of pH-controUed release rates and ultralong release times. The multi-layered film has also achieved the highest pH-controlled drug loading/release capacity. This study not only provides a superior platform for the controlled delivery of charged drugs, but also proposes an exponential growth mechanism for weak polyelectrolyte multilayered films.
机译:指数增长的逐层分层纳米多孔膜已被用作可控药物加载/释放应用的有前途的系统。但是,其生长机理和影响药物加载/释放的因素仍不清楚。在这项研究中,高分子量支化的聚(亚乙基亚胺)(PEI)和聚(丙烯酸)(PAA)被用作模型弱聚电解质,以研究多层的生长机理和载药/释放。 pH依赖的生长行为,PEI相互扩散和薄膜的形态变化表明,pH依赖的聚电解质相互扩散机制参与了超快指数生长过程。首次发现,所制成的薄膜具有pH触发的可转换极性和与最外层相关的可调节电荷密度,这可以使阴离子或阳离子药物负载,同时提供宽范围的pH控制释放率和超长释放时间。多层膜还实现了最高的pH控制药物加载/释放能力。这项研究不仅为控制带电药物提供了一个优越的平台,而且为弱聚电解质多层膜提出了一种指数增长机制。

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