Department of Chemistry , University of Navarra , 31080 Pamplona , Spain.
Institute of Pharmaceutical Science, School of Cancer & Pharmaceutical Sciences , King's College London , Franklin-Wilkins Building, 150 Stamford Street , SE1 9NH London , U.K.
Langmuir. 2018 Sep 11;34(36):10591-10602. doi: 10.1021/acs.langmuir.8b01744. Epub 2018 Aug 27.
Polypseudorotaxanes are polymer chains threaded by molecular rings that are free to unthread; these "pearl-necklace" can self-assemble further, leading to higher-order supramolecular structures with interesting functionalities. In this work, the complexation between α-cyclodextrin (α-CD), a cyclic oligosaccharide of glucopyranose units, and poly(ethylene glycol) (PEG) grafted to silica nanoparticles was studied. The threading of α-CD onto the polymeric chains leads to their aggregation into bundles, followed by either the precipitation of the inclusion complex or the formation of a gel phase, in which silica nanoparticles are incorporated. The kinetics of threading, followed by turbidimetry, revealed a dependence of the rate of complexation on the following parameters: the concentration of α-CD, temperature, PEG length (750, 4000, and 5000 g mol), whether the polymer is grafted or free in solution, and the density of grafting. Complexation is slower, and temperature has a higher impact on PEG grafted on silica nanoparticles compared to PEG free in solution. Thermodynamic parameters extracted from the transition-state theory showed that inclusion complex formation is favored with grafted PEG compared to free PEG and establishes a ratio of complexation of five to six ethylene oxide units per cyclodextrin. The complexation yields, determined by gravimetry, revealed that much higher yields are obtained with longer chains and higher grafting density. Thermogravimetric analysis and Fourier transform infrared spectroscopy on the inclusion complex corroborate the number of macrocycles threaded on the chains. A sol-gel transition was observed with the longer PEG chain (5k) at specific mixing ratios; oscillatory shear rheology measurements confirmed a highly solid-like behavior, with an elastic modulus G' of up to 25 kPa, higher than that in the absence of silica. These results thus provide the key parameters dictating inclusion complex formation between cyclodextrin and PEG covalently attached to colloidal silica and demonstrate a facile route toward soft nanoparticle gels based on host-guest interactions.
聚轮烷是由分子环贯穿的聚合物链,这些分子环可以自由脱开;这些“珍珠项链”可以进一步自组装,形成具有有趣功能的更高阶超分子结构。在这项工作中,研究了α-环糊精(α-CD)与接枝到硅胶纳米粒子上的聚乙二醇(PEG)之间的络合作用。α-CD 串在聚合物链上导致它们聚集成长束,随后包括复合物沉淀或形成凝胶相,其中包含硅胶纳米粒子。通过浊度法跟踪串接过程的动力学,发现络合速率取决于以下参数:α-CD 的浓度、温度、PEG 长度(750、4000 和 5000gmol)、聚合物在溶液中是接枝还是自由以及接枝密度。与自由的 PEG 相比,络合较慢,且温度对接枝在硅胶纳米粒子上的 PEG 影响更大。从过渡态理论中提取的热力学参数表明,与自由的 PEG 相比,接枝的 PEG 更有利于形成包合物,并建立了每环糊精五至六个环氧乙烷单元的络合比。通过重量法确定的络合产率表明,更长的链和更高的接枝密度会产生更高的产率。对包合物的热重分析和傅里叶变换红外光谱证实了链上串接的大环数量。在特定的混合比下,观察到较长的 PEG 链(5k)的溶胶-凝胶转变;动态剪切流变学测量证实了具有高固态行为,弹性模量 G'高达 25kPa,高于没有硅胶的情况。这些结果提供了控制环糊精与共价接枝到胶体硅胶上的 PEG 之间形成包合物的关键参数,并展示了基于主客体相互作用的软纳米颗粒凝胶的简便途径。