Dipartimento di Chimica e Chimica Industriale, Università di Genova, Genoa, Italy.
CNR, Istituto di Struttura Della Materia, nM2-Lab, Monterotondo Scalo (Roma), Italy.
Microb Biotechnol. 2024 Jun;17(6):e14481. doi: 10.1111/1751-7915.14481.
In this review article, a perspective on the immobilization of various hydrolytic enzymes onto magnetic nanoparticles for synthetic organic chemistry applications is presented. After a first part giving short overview on nanomagnetism and highlighting advantages and disadvantages of immobilizing enzymes on magnetic nanoparticles (MNPs), the most important hydrolytic enzymes and their applications were summarized. A section reviewing the immobilization techniques with a particular focus on supporting enzymes on MNPs introduces the reader to the final chapter describing synthetic organic chemistry applications of small molecules (flavour esters) and polymers (polyesters and polyamides). Finally, the conclusion and perspective section gives the author's personal view on further research discussing the new idea of a synergistic rational design of the magnetic and biocatalytic component to produce novel magnetic nano-architectures.
在这篇综述文章中,介绍了将各种水解酶固定在磁性纳米粒子上用于有机合成化学应用的观点。在第一部分简要概述了纳米磁性,并强调了将酶固定在磁性纳米粒子(MNPs)上的优缺点之后,总结了最重要的水解酶及其应用。在回顾固定化技术的部分中,特别关注了在 MNPs 上支持酶的方法,该部分向读者介绍了最后一章,描述了小分子(风味酯)和聚合物(聚酯和聚酰胺)的有机合成化学应用。最后,结论和展望部分给出了作者对进一步研究的个人看法,讨论了协同设计磁性和生物催化组件以产生新型磁性纳米结构的新想法。