Kamat Neha P, Robbins Gregory P, Rawson Jeffrey S, Therien Michael J, Dmochowski Ivan J, Hammer Daniel A
Departments of Bioengineering and Department of Chemical and Biomolecular Engineering, University of Pennsylvania, Philadelphia, PA 19103 (USA).
Adv Funct Mater. 2010 Aug 23;20(16):2588-2596. doi: 10.1002/adfm.201000659.
Polymersomes are vesicles whose membranes are comprised of self-assembled block co-polymers. We recently showed that co-encapsulating conjugated multi-porphyrin dyes in a polymersome membrane with ferritin protein in the aqueous lumen confers photo-lability to the polymersome. In the present study, we illustrate that the photo-lability can be extended to vesicles containing dextran, an inert and inexpensive polysaccharide, as the luminal solute. Here we explore how structural features of the polymersome/porphyrin/dextran composite affect its photo-response. Increasing dextran molecular weight, decreasing block copolymer molecular weight, and altering fluorophore-membrane interactions results in increasing the photo-responsiveness of the polymersomes. Amphiphilic interactions of the luminal encapsulant with the membrane coupled with localized heat production in the hydrophobic bilayer likely cause differential thermal expansion in the membrane and the subsequent membrane rupture. This study suggests a general approach to impart photo-responsiveness to any biomimetic vesicle system without chemical modification, as well as a simple, bio-inert method for constructing photo-sensitive carriers for controlled release of encapsulants.
聚合物囊泡是一种囊泡,其膜由自组装嵌段共聚物构成。我们最近发现,将共轭多卟啉染料与铁蛋白在聚合物囊泡膜中共包封,同时将铁蛋白置于水相内腔中,可赋予聚合物囊泡光敏感性。在本研究中,我们证明这种光敏感性可扩展至含有葡聚糖(一种惰性且廉价的多糖)作为内腔溶质的囊泡。在此,我们探究聚合物囊泡/卟啉/葡聚糖复合物的结构特征如何影响其光响应。增加葡聚糖分子量、降低嵌段共聚物分子量以及改变荧光团与膜的相互作用,都会导致聚合物囊泡的光响应性增强。内腔封装剂与膜的两亲性相互作用以及疏水双层中局部产热,可能会导致膜的差异热膨胀以及随后的膜破裂。本研究提出了一种在不进行化学修饰的情况下赋予任何仿生囊泡系统光响应性的通用方法,以及一种构建用于控制封装剂释放的光敏载体的简单、生物惰性方法。