Functional and Interactive Polymers, Institute of Technical and Macromolecular Chemistry , RWTH Aachen University , Aachen , Germany.
DWI Leibniz Institute for Interactive Materials e.V. , Aachen , Germany.
Biomacromolecules. 2019 Feb 11;20(2):992-1006. doi: 10.1021/acs.biomac.8b01608. Epub 2019 Jan 16.
Herein we report the synthesis of new reactive stimuli-responsive polymers by RAFT copolymerization of glycidyl methacrylate and three cyclic N-vinyllactam derivatives. The copolymerization process was thoroughly investigated and the influence of the steric hindrance originating from the monomer structure of cyclic N-vinyllactams on the polymerization process and the properties of obtained copolymers were studied. A series of water-soluble copolymers with variable chemical composition, controlled molecular weight and narrow dispersity ( Đ) were synthesized and their properties are systematically investigated. Experimentally determined cloud points for different copolymers in aqueous solutions indicate shift of lower critical solution temperature (LCST) to lower values with the increase of GMA content in copolymers and increase of the lactam ring size. The obtained reactive stimuli-responsive copolymers can be efficiently used for encapsulation of cellulase in water-in-oil emulsions forming biohybrid nanogels. The enzymes entrapped in nanogels demonstrated significantly improved resistance against harsh store conditions, chaotropic agents, and organic solvents.
本文通过 RAFT 共聚反应合成了新型的反应性刺激响应聚合物,其中包括甲基丙烯酸缩水甘油酯和三种环状 N-乙烯基内酰胺衍生物。深入研究了共聚反应过程,并研究了单体结构中环状 N-乙烯基内酰胺的空间位阻对聚合过程和所得共聚物性能的影响。合成了一系列具有可变化学组成、可控分子量和较窄分散性(Đ)的水溶性共聚物,并对其性能进行了系统研究。不同共聚物在水溶液中的实验确定的浊点表明,随着共聚物中 GMA 含量的增加和内酰胺环尺寸的增加,低临界溶液温度(LCST)向较低值移动。所得的反应性刺激响应共聚物可有效地用于在油包水乳液中包封纤维素酶,形成生物杂化纳米凝胶。纳米凝胶中包封的酶表现出对苛刻的储存条件、变性剂和有机溶剂的显著增强的抗性。