漆酶
固定化酶
金属有机骨架
化学
共价键
催化作用
吸附
纳米技术
酶
生物催化
组合化学
材料科学
有机化学
反应机理
作者
Lynette Alvarado-Ramírez,Gerson Machorro-García,Andrea López-Legarrea,Dulce Trejo-Ayala,Magdalena de Jesús Rostro‐Alanís,Manuel Sánchez‐Sánchez,Rosa M. Blanco,José Rodríguez‐Rodríguez,Roberto Parra‐Saldívar
标识
DOI:10.1016/j.biotechadv.2023.108299
摘要
Laccases are natural catalysts with remarkable catalytic activity. However, their application is limited by their lack of stability. Metal-organic frameworks (MOFs) have emerged as a promising alternative for enzyme immobilization. Enzymes can be immobilized in MOFs via two approaches: postsynthetic immobilization and in situ immobilization. In postsynthetic immobilization, an enzyme is embedded after MOF formation by covalent interactions or adsorption. In contrast, in in situ immobilization, a MOF is formed in the presence of an enzyme. Additionally, MOFs have exhibited intrinsic enzyme-like activity. These materials, known as nanozymes when they have the ability to replace enzymes in certain catalytic processes, have multiple key advantages, such as low cost, easy preparation, and large surface areas. This review presents a general overview of the most recent advances in both enzyme@MOF biocatalysts and MOF-based nanozymes in different applications, with a focus on laccase, which is one of the most widely investigated enzymes with excellent industrial potential.
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