Zhang Xiaofang, Lin Wenjing, Wen Liyang, Yao Na, Nie Shuyu, Zhang Lijuan
School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou 510640, P. R. China.
Phys Chem Chem Phys. 2016 Sep 29;18(38):26519-26529. doi: 10.1039/c6cp05039e.
Unimolecular polymeric micelles have several features, such as thermodynamic stability, small particle size, biocompatibility, and the ability to internalize hydrophobic molecules. These micelles have recently attracted significant attention in various applications, such as nano-reactors, catalysis, and drug delivery. However, few attempts have explored the formation mechanisms and conditions of unimolecular micelles due to limited experimental techniques. In this study, a unimolecular micelle system formed from β-cyclodextrin-graft-{poly(lactide)-block-poly(2-(dimethylamino) ethyl multimethacrylate)-block-poly[oligo (2-ethyl-2-oxazoline) methacrylate]} β-CD-g-(PLA-b-PDMAEMA-b-PEtOxMA) star-like block copolymers in aqueous media was investigated by dissipative particle dynamics (DPD) to explore the formation process of unimolecular micelles. The simulation results showed that using longer hydrophobic or pH-sensitive chains, shorter hydrophilic backbones, smaller hydrophilic side chain grafting density, and fewer polymer arms resulted in micellar aggregation. Furthermore, this unimolecular polymeric micelle could be used for encapsulating gold nanoparticles, whose mesoscopic structure was also explored. The gold nanoparticles tended to distribute in the middle layer formed by PDMAEMA, and the unimolecular micelles were capable of impeding gold nanoparticle aggregation. This study could help understand the formation mechanism of unimolecular micelles formed from star-like block copolymers in dilute solutions and offer a theoretical guide to the design and preparation of promising unimolecular polymeric micelles with targeting properties.
单分子聚合物胶束具有多种特性,如热力学稳定性、粒径小、生物相容性以及内化疏水分子的能力。这些胶束最近在各种应用中引起了广泛关注,如纳米反应器、催化和药物递送。然而,由于实验技术有限,很少有人尝试探索单分子胶束的形成机制和条件。在本研究中,通过耗散粒子动力学(DPD)研究了由β-环糊精接枝-{聚(丙交酯)-嵌段-聚(2-(二甲基氨基)乙基多甲基丙烯酸酯)-嵌段-聚[寡聚(2-乙基-2-恶唑啉)甲基丙烯酸酯]}β-CD-g-(PLA-b-PDMAEMA-b-PEtOxMA)星状嵌段共聚物在水介质中形成的单分子胶束体系,以探索单分子胶束的形成过程。模拟结果表明,使用较长的疏水或pH敏感链、较短的亲水主链、较小的亲水侧链接枝密度和较少的聚合物臂会导致胶束聚集。此外,这种单分子聚合物胶束可用于包封金纳米颗粒,还对其介观结构进行了探索。金纳米颗粒倾向于分布在由PDMAEMA形成的中间层中,并且单分子胶束能够阻止金纳米颗粒聚集。本研究有助于理解稀溶液中由星状嵌段共聚物形成的单分子胶束的形成机制,并为设计和制备具有靶向性能的有前景的单分子聚合物胶束提供理论指导。