Queen Mary, University of London, School of Engineering and Materials Science, London E1 4NS, UK.
Adv Colloid Interface Sci. 2010 Jul 12;158(1-2):2-14. doi: 10.1016/j.cis.2009.07.007. Epub 2009 Aug 3.
This review is dedicated to recent developments on the topic of light sensitive polymer-based microcapsules. The microcapsules discussed are constructed using the layer-by-layer self-assembly method, which consists in absorbing oppositely charged polyelectrolytes onto charged sacrificial particles. Microcapsules display a broad spectrum of qualities over other existing microdelivery systems such as high stability, longevity, versatile construction and a variety of methods to encapsulate and release substances. Release and encapsulation of materials by light is a particularly interesting topic. Microcapsules can be made sensitive to light by incorporation of light sensitive polymers, functional dyes and metal nanoparticles. Optically active substances can be inserted into the shell during their assembly as a polymer complex or following the shell preparation. Ultraviolet-addressable microcapsules were shown to allow for remote encapsulation and release of materials. Visible- and infrared- addressable microcapsules offer a large array of release strategies for capsules, from destructive to highly sensitive reversible approaches. Besides the Introduction and Conclusions, this review contains in four sections reviewing the effects of light 1) on polymer-based microcapsules, 2) microcapsules containing metal nanoparticles and 3) functional dyes, as well as a fourth section that revisits the implications of light addressable polymeric microcapsules as a microdelivery system for biological applications.
本文综述了近年来光敏感聚合物基微胶囊的研究进展。所讨论的微胶囊采用层层自组装方法构建,该方法包括将带相反电荷的聚电解质吸收到带电荷的牺牲颗粒上。与其他现有的微输送系统相比,微胶囊具有广泛的特性,如高稳定性、长寿命、多功能构建以及多种封装和释放物质的方法。通过光进行释放和封装材料是一个特别有趣的课题。通过掺入光敏感聚合物、功能染料和金属纳米粒子,可以使微胶囊对光敏感。在组装过程中或在壳层制备后,可以将光活性物质作为聚合物复合物插入壳层中。已证明紫外光可寻址微胶囊允许远程封装和释放材料。可见光和近红外光可寻址微胶囊为微胶囊提供了多种释放策略,从破坏性到高度灵敏的可逆方法。除引言和结论外,本文还分四个部分综述了光对聚合物基微胶囊、含金属纳米粒子和功能染料的微胶囊的影响,以及第四部分重新审视了光可寻址聚合物微胶囊作为生物应用微输送系统的意义。