Ďorďovič Vladimír, Verbraeken Bart, Hogenboom Richard, Kereïche Sami, Matějíček Pavel, Uchman Mariusz
Department of Physical and Macromolecular Chemistry, Faculty of Science, Charles University, Hlavova 2030, 128 40, Prague 2, Czech Republic.
Supramolecular Chemistry Group, Department of Organic and Macromolecular chemistry, Faculty of Sciences, Ghent University, Krijgslaan 281-S4, B-9000, Gent, Belgium.
Chem Asian J. 2018 Apr 4;13(7):838-845. doi: 10.1002/asia.201701720. Epub 2018 Feb 28.
Thermoresponsive nanoparticles based on the interaction of metallacarboranes, bulky chaotropic and surface-active anions, and poly(2-alkyl-2-oxazoline) block copolymers were prepared. Recently, the great potential of metallacarboranes have been recognized in biomedicine and many delivery nanosystems have been proposed. However, none of them are thermoresponsive. Therefore, a thermoresponsive block copolymer, poly(2-methyl-2-oxazoline)-block-poly(2-n-propyl-2-oxazoline) (PMeOx-PPrOx), was synthesized to encapsulate metallacarboranes. Light scattering, NMR spectroscopy, isothermal titration calorimetry, and cryogenic TEM were used to characterize all solutions of the formed nanoparticles. The cloud-point temperature (T ) of the block copolymer was observed at 30 °C and polymeric micelles formed above this temperature. Cobalt bis(dicarbollide) anion (COSAN) interacts with both polymeric segments. Depending on the COSAN concentration, this affinity influenced the phase transition of the thermoresponsive PPrOx block. The T shifted to lower values at a lower COSAN content. At higher COSAN concentrations, the hybrid nanoparticles are fragmented into relatively small pieces. This system is also thermoresponsive, whereby an increase in temperature leads to higher polymer mobility and COSAN release.
基于金属碳硼烷、体积庞大的离液剂和表面活性阴离子以及聚(2-烷基-2-恶唑啉)嵌段共聚物之间的相互作用制备了热响应性纳米颗粒。最近,金属碳硼烷在生物医学中的巨大潜力已得到认可,并且已经提出了许多递送纳米系统。然而,它们都不是热响应性的。因此,合成了一种热响应性嵌段共聚物聚(2-甲基-2-恶唑啉)-嵌段-聚(2-正丙基-2-恶唑啉)(PMeOx-PPrOx)来封装金属碳硼烷。使用光散射、核磁共振光谱、等温滴定量热法和低温透射电子显微镜对形成的纳米颗粒的所有溶液进行表征。观察到嵌段共聚物的浊点温度(T)为30°C,在此温度以上形成聚合物胶束。双(二碳硼烷基)钴阴离子(COSAN)与两个聚合物链段相互作用。根据COSAN浓度,这种亲和力影响热响应性PPrOx链段的相变。在较低的COSAN含量下,T移至较低值。在较高的COSAN浓度下,杂化纳米颗粒破碎成相对较小的碎片。该系统也是热响应性的,温度升高会导致聚合物流动性增加和COSAN释放。