1)吉林大学生命科学学院分子酶学工程教育部重点实验室,长春 130012;2)吉林大学化学学院超分子结构与材料国家重点实验室,长春 130012
国家自然科学基金(32271319,32071267),吉林省自然科学基 金(YDZJ202301ZYTS537) 和吉林省发展和改革委员会自主创新 能力建设项目(2023C015) 资助。
1)Key Laboratory for Molecular Enzymology and Engineering of Ministry of Education, School of Life Sciences, Jilin University, Changchun 130012, China;2)State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun 130012, China
This work was supported by grants from The National Natural Science Foundation of China (32271319, 32071267), Science and Technology Department of Jilin Province (YDZJ202301ZYTS537), and Development and Reform Commission of Jilin Province (2023C015).
以酶促聚合为代表的绿色高分子合成途径,以其反应条件温和、产物多分散性低、无金属催化剂残留、高度立体和区位选择性等优势,成为医用高分子材料合成领域中的研究热点。目前,氧化还原酶、水解酶、转移酶均成功应用于聚合反应,其中脂肪酶催化的缩聚反应及开环聚合反应研究最为广泛,同时,以可逆加成-断裂链转移聚合和原子转移自由基聚合为代表的酶促可逆失活自由基聚合得到了快速发展。针对酶促聚合中单体及合成产物结构与性能单一、应用范围有限等缺陷,基于酶促聚合与原子转移自由基聚合、开环易位聚合等反应的偶联,制备了多种不同结构与性能的聚合物材料,推动了上述材料在药物与基因递送领域中的应用。本文综述了脂肪酶催化聚合、酶促可逆失活自由基聚合、酶促化学偶联催化等方面的研究进展,并探讨了目前研究的局限性和未来研究方向。
Green polymer synthesis routes especially for enzymatic polymerization, have become a hot spot in the preparation of biomedical polymers owing to its characteristics of mild reaction conditions, low dispersity index, no residue of metal catalysts, and high enantio- and regio-selectivity. Oxidoreductases, hydrolases and transferases have been successfully applied in the polymer synthesis. Among them, lipase-catalyzed polycondensation and ring-opening polymerization were most widely studied, which dramatically facilitated the preparation of polymeric materials with high molecular mass and narrow distribution. Meanwhile, enzymatic reversible deactivation radical polymerization including reversible addition-fragmentation chain transfer polymerization and atom transfer radical polymerization has been rapidly developed because of its unique advantages of mild reaction, high efficiency and oxygen resistance. In addition, to solve the limitations of structure, property and application of polymers, enzymatic polymerization has been combined with chemical routes including atom transfer radical polymerization and ring-opening metathesis polymerization, and the polymers have been applied in the field of drug/gene delivery. Based on the existing literatures, this paper reviewed the progress of lipase-catalyzed polymerization, enzyme-catalyzed reversible radical polymerization and chemoenzymatic polymerization, and the limitations of current research and the future directions were also discussed.
李若雨,陈英翾,韩浩博,温凯,安泽胜,李全顺.酶促聚合:绿色的高分子材料合成技术[J].生物化学与生物物理进展,2023,50(5):1017-1029
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