Boukoufi Célia, Boudier Ariane, Clarot Igor
Université de Lorraine, CITHEFOR, F-54000 Nancy, France.
Pharmacy Department, University Hospital, F-54511 Vandoeuvre-Lès-Nancy, France.
Molecules. 2023 Nov 13;28(22):7558. doi: 10.3390/molecules28227558.
Gold nanoparticles (AuNPs) can be described as nanozymes, species that are able to mimic the catalytic activities of several enzymes, such as oxidase/peroxidase, reductase, or catalase. Most studies in the literature focus on the colloidal suspension of AuNPs, and it is obvious that their immobilization could open the doors to new applications thanks to their increased stability in this state. This work aimed to investigate the behavior of surfaces covered by immobilized AuNPs (iAuNPs). Citrate-stabilized AuNPs (AuNPs-cit) were synthesized and immobilized on glass slides using a simple dip coating method. The resulting iAuNPs were characterized (surface plasmon resonance, microscopy, quantification of immobilized AuNPs), and their multi-enzymatic-like activities (oxidase-, peroxidase-, and catalase-like activity) were evaluated. The comparison of their activities versus AuNPs-cit highlighted their added value, especially the preservation of their activity in some reaction media, and their ease of reuse. The huge potential of iAuNPs for heterogeneous catalysis was then applied to the degradation of two model molecules of hospital pollutants: metronidazole and methylene blue.
金纳米颗粒(AuNPs)可被描述为纳米酶,即能够模拟多种酶催化活性的物质,如氧化酶/过氧化物酶、还原酶或过氧化氢酶。文献中的大多数研究都集中在AuNPs的胶体悬浮液上,显然,由于其在这种状态下稳定性的提高,将它们固定化可以为新的应用打开大门。这项工作旨在研究固定化AuNPs(iAuNPs)覆盖的表面的行为。使用简单的浸涂法合成了柠檬酸盐稳定的AuNPs(AuNPs-cit)并将其固定在载玻片上。对所得的iAuNPs进行了表征(表面等离子体共振、显微镜检查、固定化AuNPs的定量),并评估了它们的多酶样活性(氧化酶样、过氧化物酶样和过氧化氢酶样活性)。将它们的活性与AuNPs-cit进行比较,突出了它们的附加值,特别是在某些反应介质中其活性的保留以及易于重复使用。然后,iAuNPs在多相催化方面的巨大潜力被应用于两种医院污染物模型分子的降解:甲硝唑和亚甲蓝。