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聚乳酸密封聚电解质多层微腔用于盐和小亲水分子沉淀物的包埋。

Polylactic Acid Sealed Polyelectrolyte Multilayer Microchambers for Entrapment of Salts and Small Hydrophilic Molecules Precipitates.

机构信息

School of Engineering and Materials Science, Queen Mary University of London , Mile End, Eng, 215, London E1 4NS, United Kingdom.

State Key laboratory of Micro/Nano Technology Research Centre, Harbin Institute of Technology , Yikuang Street 2, Harbin 150080, China.

出版信息

ACS Appl Mater Interfaces. 2017 May 17;9(19):16536-16545. doi: 10.1021/acsami.7b03451. Epub 2017 May 5.

Abstract

Efficient depot systems for entrapment and storage of small water-soluble molecules are of high demand for wide variety of applications ranging from implant based drug delivery in medicine and catalysis in chemical processes to anticorrosive systems in industry where surface-mediated active component delivery is required on a time and site specific manner. This work reports the fabrication of individually sealed hollow-structured polyelectrolyte multilayer (PEM) microchamber arrays based on layer-by-layer self-assembly as scaffolds and microcontact printing. These PEM chambers are composed out of biocompatible polyelectrolytes and sealed by a monolayer of hydrophobic biocompatible and biodegradable polylactic acid (PLA). Coating the chambers with hydrophobic PLA allows for entrapment of a microair-bubble in each chamber that seals and hence drastically reduces the PEM permeability. PLA@PEM microchambers are proven to enable prolonged subaqueous storage of small hydrophilic salts and molecules such as crystalline NaCl, doxicycline, and fluorescent dye rhodamine B. The presented microchambers are able to entrap air bubbles and demonstrate a novel strategy for entrapment, storage, and protection of micropackaged water-soluble substances in precipitated form. These chambers allow triggered release as demonstrated by ultrasound responsiveness of the chambers. Low-frequency ultrasound exposure is utilized for microchamber opening and payload release.

摘要

高效的储库系统对于捕获和储存各种小的水溶性分子具有很高的需求,这些应用包括医学中的基于植入物的药物输送和化学过程中的催化,以及工业中的防腐系统,在这些系统中需要以时间和位置特异性的方式表面介导活性成分的输送。本工作报道了基于层层自组装作为支架和微接触印刷的单独密封的中空结构聚电解质多层(PEM)微腔阵列的制造。这些 PEM 腔由生物相容性的聚电解质组成,并由单层疏水性生物相容性和可生物降解的聚乳酸(PLA)密封。将腔涂覆疏水性 PLA 可以在每个腔中捕获一个微气泡,从而密封腔,从而大大降低 PEM 的渗透性。PLA@PEM 微腔被证明能够使小的亲水性盐和分子(如结晶 NaCl、多西环素和荧光染料罗丹明 B)在水下储存时间延长。所提出的微腔能够捕获气泡,并展示了一种用于以沉淀形式捕获、储存和保护微封装水溶性物质的新策略。这些腔允许触发释放,如腔对超声响应所证明的那样。低频超声暴露用于微腔的打开和有效载荷的释放。

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