Bai Haotian, Yu Dan, Du Xiaowei
College of Pharmacy, Heilongjiang University of Chinese Medicine, Harbin, China.
College of Pharmacy, Heilongjiang University of Chinese Medicine, Harbin, China.
Int J Biol Macromol. 2025 Mar;295:139627. doi: 10.1016/j.ijbiomac.2025.139627. Epub 2025 Jan 8.
Enzymes are natural biocatalysts with the advantages such as high catalytic efficiency, and strong substrate selectivity. However, the features of structure instability and low reusability rates have limited the industrial applications of enzyme. Fortunately, advancements in technology have made enzyme immobilization possible. Porous microspheres possess desirable characteristics, for example a large specific surface area, high porosity, stable mechanical and chemical properties, and cost-effectiveness, making them excellent carriers for immobilized enzymes. This review covered the latest developments in the field and the utilization of porous microsphere nanomaterials for enzyme immobilization. It emphasized the various methods used for carrier immobilization of enzymes and summarized the diverse applications of porous microsphere nanomaterials in enzyme immobilization.
酶是天然生物催化剂,具有催化效率高、底物选择性强等优点。然而,结构不稳定和重复利用率低等特性限制了酶的工业应用。幸运的是,技术进步使酶固定化成为可能。多孔微球具有理想的特性,例如比表面积大、孔隙率高、机械和化学性质稳定以及成本效益高,使其成为固定化酶的优良载体。本文综述了该领域的最新进展以及多孔微球纳米材料在酶固定化中的应用。它强调了用于酶载体固定化的各种方法,并总结了多孔微球纳米材料在酶固定化中的多样应用。