Fiber and Polymer Technology, School of Chemical Science and Engineering, KTH, Royal Institute of Technology , SE-100 44 Stockholm, Sweden.
Biomacromolecules. 2013 Nov 11;14(11):4150-6. doi: 10.1021/bm401312j. Epub 2013 Oct 8.
We have designed a pathway for controlling the critical micelle concentration and micelle size of polyester-based systems. This was achieved by creating an array of different copolymers with semicrystalline or amorphous hydrophobic blocks. The hydrophobic block was constructed through ring-opening polymerization of ε-caprolactone, L-lactide, and ε-decalactone, either as homopolymers or random copolymers, using PEG as both the initiator and the hydrophilic block. Micelles formed with amorphous cores exhibited considerably higher critical micelle concentrations than those with semicrystalline cores. Micelles with amorphous cores also became larger in size with an increased molecular weight of the hydrophobic bock, in contrast to micelles with semicrystalline cores, which displayed the opposite behavior. Hence, core crystallinity was found to be a potent tool for tailoring micelle properties and thereby facilitating the optimization of drug delivery systems. The introduction of PEG-PεDL also proved to be a valuable asset in the tuning of micelle properties.
我们设计了一种控制聚酯基体系临界胶束浓度和胶束尺寸的途径。这是通过创建一系列具有半结晶或无定形疏水性嵌段的不同共聚物来实现的。疏水性嵌段是通过ε-己内酯、L-丙交酯和ε-癸内酯的开环聚合来构建的,既可以作为均聚物,也可以作为无规共聚物,PEG 既作为引发剂,也作为亲水性嵌段。具有无定形核的胶束表现出比具有半结晶核的胶束更高的临界胶束浓度。与具有半结晶核的胶束相反,具有无定形核的胶束的粒径随着疏水性嵌段分子量的增加而增大,而具有半结晶核的胶束则表现出相反的行为。因此,核结晶度被发现是一种有效的工具,可以调整胶束的性质,从而有助于优化药物传递系统。PEG-PεDL 的引入也被证明是调整胶束性质的一种有价值的方法。