ICGM, University of Montpellier, CNRS, ENSCM, Montpellier, France.
Laboratory of Organic and Macromolecular Chemistry (IOMC), Friedrich Schiller University Jena, 07743 Jena, Germany.
Molecules. 2022 Jun 30;27(13):4233. doi: 10.3390/molecules27134233.
Thermo-responsive hydrophilic polymers, including those showing tuneable lower critical solution temperature (LCST), represent a continuous subject of exploration for a variety of applications, but particularly in nanomedicine. Since biological pH changes can inform the organism about the presence of disequilibrium or diseases, the development of dual LCST/pH-responsive hydrophilic polymers with biological potential is an attractive subject in polymer science. Here, we present a novel polymer featuring LCST/pH double responsiveness. The monomer ethylthiomorpholine oxide methacrylate () can be polymerised via the RAFT process to obtain well-defined polymers. Copolymers with hydroxyethyl methacrylate () were prepared, which allowed the tuning of the LCST behaviour of the polymers. Both, the LCST behaviour and pH responsiveness of hydrophilic were tested by following the evolution of particle size by dynamic light scattering (DLS). In weak and strong alkaline conditions, cloud points ranged between 40-60 °C, while in acidic medium no LCST was found due to the protonation of the amine of the moieties. Additional cytotoxicity assays confirmed a high biocompatibility of and haemolysis and aggregation assays proved that the thiomorpholine oxide-derived polymers did not cause aggregation or lysis of red blood cells. These preliminary results bode well for the use of as smart material in biological applications.
温敏性亲水聚合物,包括那些具有可调下临界溶液温度 (LCST) 的聚合物,是各种应用的持续探索主题,特别是在纳米医学中。由于生物 pH 值的变化可以向生物体发出关于失衡或疾病存在的信息,因此开发具有生物潜力的双重 LCST/pH 响应性亲水聚合物是聚合物科学中的一个有吸引力的课题。在这里,我们提出了一种具有 LCST/pH 双重响应性的新型聚合物。单体乙基硫代吗啉氧化物甲基丙烯酸酯 () 可以通过 RAFT 聚合得到具有明确结构的聚合物。制备了与羟乙基甲基丙烯酸酯 () 的共聚物,这允许对聚合物的 LCST 行为进行调谐。通过动态光散射 (DLS) 跟踪粒径的演变,测试了亲水聚合物的 LCST 行为和 pH 响应性。在弱碱性和强碱性条件下,浊点范围在 40-60°C 之间,而在酸性介质中由于胺基的质子化,没有发现 LCST。额外的细胞毒性测定证实了 的高生物相容性,溶血和聚集测定证明硫代吗啉氧化物衍生的聚合物不会引起红细胞聚集或裂解。这些初步结果为将 用作生物应用中的智能材料提供了良好的前景。