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聚乙二醇微凝胶胶囊的微流控制备及其特性可定制,用于生物分子的传递。

Microfluidic fabrication of polyethylene glycol microgel capsules with tailored properties for the delivery of biomolecules.

机构信息

DWI Leibniz Institute for Interactive Materials, Forckenbeckstrasse 50, Aachen, Germany.

出版信息

Biomater Sci. 2017 Jul 25;5(8):1549-1557. doi: 10.1039/c7bm00322f.

Abstract

Microfluidic encapsulation platforms have great potential not only in pharmaceutical applications but also in the consumer products industry. Droplet-based microfluidics is increasingly used for the production of monodisperse polymer microcapsules for biomedical applications. In this work, a microfluidic technique is developed for the fabrication of monodisperse double emulsion droplets, where the shell is crosslinked into microgel capsules. A six-armed acrylated star-shaped poly(ethylene oxide-stat-propylene oxide) pre-polymer is used to form the microgel shell after a photo-initiated crosslinking reaction. The synthesized microgel capsules are hollow, enabling direct encapsulation of large amounts of multiple biomolecules with the inner aqueous phase completely engulfed inside the double emulsion droplets. The shell thickness and overall microgel sizes can be controlled via the flow rates. The morphology and size of the shells are characterized by cryo-SEM. The encapsulation and retention of 10 kDa FITC-dextran and its microgel degradation mediated release are monitored by fluorescence microscopy.

摘要

微流控封装平台不仅在制药应用中具有巨大的潜力,而且在消费产品行业也具有巨大的潜力。基于液滴的微流控技术越来越多地用于生产用于生物医学应用的单分散聚合物微胶囊。在这项工作中,开发了一种用于制备单分散双乳液液滴的微流控技术,其中壳交联成微凝胶胶囊。使用六臂丙烯酰化星形聚(氧化乙烯-嵌段-氧化丙烯)预聚物,在光引发交联反应后形成微凝胶壳。合成的微凝胶胶囊为中空结构,可直接封装大量多种生物分子,内部水相完全被双乳液液滴包裹。通过流速可以控制壳层厚度和整体微凝胶尺寸。通过冷冻扫描电子显微镜对壳层的形态和尺寸进行了表征。通过荧光显微镜监测了 10 kDa FITC-葡聚糖的包封和保留及其微凝胶降解介导的释放。

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