Key Laboratory of Biobased Polymer Materials, Shandong Provincial Education Department; School of Polymer Science and Engineering, Qingdao University of Science and Technology , Qingdao266042, China.
Advanced Light Source, Lawrence Berkeley National Laboratory , Berkeley, California 94720, United States.
Biomacromolecules. 2017 Oct 9;18(10):3367-3374. doi: 10.1021/acs.biomac.7b01014. Epub 2017 Sep 28.
Amphiphilic block copolymers containing polypeptides can self-assemble into a variety of nonspherical structures arising from strong interactions between peptide units. Here, we report the synthesis of a pH-responsive poly(ethyl glycol)-block-poly(l-glutamic acid)-block-poly(N-octylglycine) (PEG-b-PGA-b-PNOG) triblock copolymers by sequential ring-opening polymerization using amine-terminated poly(ethyl glycol) as the macroinitiator followed by selective deprotection of the benzyl protecting group. The obtained triblock copolymer can be directly dispersed in aqueous solution with hydrophilic PEG, pH-responsive PGA block, and hydrophobic PNOG. We present a systematic study of the influence of pH, molar fraction, and molecular weight on the self-assemblies. It was found that the PEG-b-PGA-b-PNOG triblock tends to form two-dimensional nanodisks and nanosheet-like assemblies. The nanodisk-to-nanosheet transition is highly dependent on the pH and molar fraction despite the different molecular weights. We demonstrate that the dominant driving force of the nanodisks and nanosheets is the hydrophobicity of the PNOG blocks. The obtained bioinspired 2D nanostructures are potential candidates for applications in nanoscience and biomedicine.
两亲性嵌段共聚物中含有多肽,可以通过肽单元之间的强相互作用自组装成各种非球型结构。在这里,我们报告了通过顺序开环聚合合成 pH 响应性聚(乙二醇)-嵌段-聚(L-谷氨酸)-嵌段-聚(N-辛基甘氨酸)(PEG-b-PGA-b-PNOG)三嵌段共聚物,使用末端为氨基的聚(乙二醇)作为大分子引发剂,然后选择性脱除苄基保护基。所得三嵌段共聚物可以直接分散在水溶液中,其中含有亲水性的 PEG、pH 响应性的 PGA 嵌段和疏水性的 PNOG。我们对 pH、摩尔分数和分子量对自组装的影响进行了系统研究。结果表明,PEG-b-PGA-b-PNOG 三嵌段共聚物倾向于形成二维纳米盘和纳米片状组装体。尽管分子量不同,但纳米盘到纳米片的转变高度依赖于 pH 和摩尔分数。我们证明,纳米盘和纳米片的主要驱动力是 PNOG 嵌段的疏水性。所得的仿生 2D 纳米结构是在纳米科学和生物医学中应用的潜在候选材料。