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电控制双乳液滴中包封活性剂的快速释放。

Electrically controlled rapid release of actives encapsulated in double-emulsion droplets.

机构信息

School of Mechatronics Engineering, Harbin Institute of Technology, West Dazhi Street, Harbin, Heilongjiang, 150001 PR China.

出版信息

Lab Chip. 2018 Mar 27;18(7):1121-1129. doi: 10.1039/c7lc01387f.

Abstract

Controlled release of multiple actives after encapsulation in a microenvironment is significant for various biological and chemical applications such as controlled drug delivery and transplantation of encapsulated cells. However, traditional systems often lack efficient encapsulation and release of multiple actives, especially when incorporated substances must be released at a targeted location. Here, we present a straightforward approach to release multiple actives at a prescribed position in microfluidic systems; one or two actives are encapsulated in water-in-oil-in-water emulsion droplets, followed by controlled release of the actives via an alternating current electric field. An electric field-induced compression due to Maxwell-Wagner interfacial polarization overcomes the disjoining pressure at the thin shell and leads to the thinning and rupture of the oil layer of the droplets, resulting in the release of the encapsulated actives to the suspending medium. This technique is feasible for encapsulation and release of various reagents in terms of ion species and ion concentrations. Moreover, polymer nanoparticles and yeast cells can also be included in the droplets and then be released at targeted locations. This versatile method should be well-suited for targeted delivery of various active ingredients such as functional chemical reagents and biological cells.

摘要

在微环境中封装后,多种活性物质的控制释放对于各种生物和化学应用非常重要,例如控制药物输送和封装细胞的移植。然而,传统系统通常缺乏对多种活性物质的有效封装和释放,特别是当必须在靶向位置释放掺入物质时。在这里,我们提出了一种在微流控系统中在预定位置释放多种活性物质的简单方法;将一种或两种活性物质封装在油包水乳液液滴中,然后通过交流电电场控制活性物质的释放。由于麦克斯韦-沃纳界面极化引起的电场诱导压缩克服了薄壳的离隙压力,导致液滴的油层变薄和破裂,从而将封装的活性物质释放到悬浮介质中。就离子种类和离子浓度而言,该技术适用于各种试剂的封装和释放。此外,聚合物纳米颗粒和酵母细胞也可以包含在液滴中,然后在靶向位置释放。这种多功能方法应该非常适合于各种活性成分的靶向输送,例如功能化学试剂和生物细胞。

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