Hydrogen peroxide (H2O2) is widely used in industrial and environmental processes; however, excessive accumulation of H2O2 may cause oxidative damage and environmental hazards. Catalase (CAT) is an efficient enzyme capable of decomposing H2O2 into water and oxygen, but its practical application is limited by low stabil...
Ceyhun Işık, Özgün Vatansever, M. Teke· RSC Advances· 0 citations
Efficient conversion of agricultural waste into fermentable sugars is central to sustainable second-generation biofuel technologies. This study reports the covalent immobilization of amyloglucosidase onto a magnetic silver nanoparticle (Ag-MNP) hybrid support for the saccharification of cassava peel. The Ag-MNP hybrid...
O. Falowo, B. Oladipo, Precious O. Adeyemo et al.· Carbohydrate Research· 0 citations
Laccase catalyzes the oxidation of a wide array of substrates, yet its industrial applications are hindered by its low thermal and chemical stability, poor reusability, and high production costs. Enzyme immobilization is a cost-effective strategy for overcoming these limitations, enhancing stability and operational eff...
C. Sciacca, N. Cardullo, M. Condorelli et al.· ACS Omega· 0 citations
Laccases are multicopper oxidases capable of oxidizing a wide range of substrates using molecular oxygen as the terminal electron acceptor, producing water as the sole by-product. High-redox potential fungal laccases, such as those from Trametes versicolor, are particularly attractive for industrial and environmental a...
Jessica Costa, A. Atrei, J. J. Valle-Delgado et al.· Biomolecules· 0 citations
Abstract In this study, a hybrid biocatalyst was developed via rapid in-situ biomineralization of laccase within a cobalt(II)-malonate framework (Lac@MOF). The novelty lies in using malonic acid as a biocompatible linker, enabling rapid enzyme encapsulation under mild conditions. Structural integrity was confirmed thro...
The combination of immobilized enzymes and microreactors offers great advantages in green biomanufacturing. However, improving the catalytic loading and reusability of immobilized enzymes remains a challenge. This study developed a magnetically separable immobilized enzyme system for continuous-flow biocatalysis. Can...
Yi-Ruo He, Wei-Yi Su, Jianheng Song et al.· Industrial & Engineering...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.