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基于液滴微流控技术定制的功能微凝胶。

Functional microgels tailored by droplet-based microfluidics.

机构信息

Helmholtz Zentrum Berlin, F-I2 Soft Matter and Functional Materials, Hahn-Meitner-Platz 1, D-14109 Berlin, Germany.

出版信息

Macromol Rapid Commun. 2011 Oct 18;32(20):1600-9. doi: 10.1002/marc.201100342. Epub 2011 Jul 26.

Abstract

Monodisperse polymer gel particles with micrometer-scale dimensions serve for a variety of applications, including those as microcapsules for actives or as micrometer-sized matrixes for mesoscopic additives. These particles can be produced with exquisite control through the use of droplet-based microfluidic templating followed by subsequent droplet solidification. This can be achieved by two ways: One way is to use pre-microgel solutions of low molecular weight monomers and to form microgels by polymerizing these monomers. Another way is to use pre-polymerized, high molecular weight precursors and to gel them by polymer-analogous crosslinking. Both approaches have their specific advantages, allowing microgels to be tailored and optimized for specific needs such as those as delivery systems or scaffolds for living cells. This article highlights some recent achievements in the development and use of these microfluidic techniques to fabricate functional microgel particles.

摘要

单分散聚合物凝胶颗粒具有微米级尺寸,可用于各种应用,包括作为活性物质的微胶囊或作为中观添加剂的微米级基质。通过使用基于液滴的微流控模板化,然后进行后续的液滴固化,可以非常精确地制备这些颗粒。这可以通过两种方法来实现:一种方法是使用低分子量单体的预微凝胶溶液,并通过聚合这些单体来形成微凝胶。另一种方法是使用预聚合的高分子量前体,并通过类似聚合物的交联来凝胶化。这两种方法都有其特定的优势,可以根据特定的需求来定制和优化微凝胶,例如作为药物输送系统或活细胞的支架。本文重点介绍了这些微流控技术在制备功能性微凝胶颗粒方面的一些最新进展。

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