Department of Polymer Science & Engineering, School of Chemistry and Chemical Engineering, Shanghai Jiao Tong University, Shanghai 200240, PR China.
J Phys Chem B. 2010 Jun 10;114(22):7461-8. doi: 10.1021/jp100399d.
A versatile strategy is provided for the fabrication of pH-sensitive polypeptide-based normal micelles and reverse micelles from the same polypeptide-based copolymers via hydrogen-bonding interactions or host-guest chemistry. The pH-sensitive self-assembly of both linear and dendron-like/linear poly(L-glutamic acid)-b-poly(ethylene oxide) (Dm-PLG-b-PEO) block copolymers was investigated in detail by means of UV-vis, dynamic light scattering, NMR, fluorescence spectroscopy, and transmission electron microscopy. It was demonstrated that both the copolymer topology and the composition controlled the morphology of the polypeptide-cored normal micelles. Importantly, a novel class of polypeptide-shelled reverse micelles was for the first time generated by host-guest-chemistry-mediated self-assembly of these copolymers and alpha-cyclodextrin (alpha-CD) in alkaline solution. The supramolecular inclusion complexation between PEO and alpha-CD was confirmed by wide-angle X-ray diffraction, differential scanning calorimetry, and NMR. Moreover, the zeta potential of the reverse micelles ranged from -20.2 to -24.2 mV, convincingly demonstrating that the reverse micelles had an anionic PLG shell. Furthermore, the anticancer doxorubicin (DOX)-loaded micelles fabricated from the dendron-like/linear copolymer showed a higher DOX loading efficiency (38%) and capacity (24%) and sustained a longer drug-release period (approximately 70 days) than the linear counterpart. Consequently, this will provide a platform for the fabrication of supramolecular polypeptide-cored and polypeptide-shelled micelles for the anticancer drug delivery systems.
提供了一种通用策略,通过氢键相互作用或主客体化学,从同一种基于多肽的共聚物制备 pH 敏感的多肽基正常胶束和反胶束。通过紫外-可见光谱、动态光散射、NMR、荧光光谱和透射电子显微镜详细研究了线性和树枝状/线性聚(L-谷氨酸)-b-聚(环氧乙烷)(Dm-PLG-b-PEO)嵌段共聚物的 pH 敏感自组装。结果表明,共聚物拓扑结构和组成控制了多肽核正常胶束的形态。重要的是,通过这些共聚物和α-环糊精(α-CD)在碱性溶液中基于主客体化学的自组装,首次产生了一类新型的多肽壳反胶束。通过广角 X 射线衍射、差示扫描量热法和 NMR 证实了 PEO 和 α-CD 之间的超分子包络络合。此外,反胶束的 zeta 电位范围为-20.2 至-24.2 mV,有力地证明了反胶束具有阴离子 PLG 壳。此外,由树枝状/线性共聚物制备的载有抗癌药物阿霉素(DOX)的胶束显示出更高的 DOX 负载效率(38%)和载量(24%),并延长了药物释放时间(约 70 天)与线性对应物相比。因此,这将为用于抗癌药物输送系统的超分子多肽核和多肽壳胶束的制备提供一个平台。