Generally, enzyme immobilization on nanoparticles leads to nano-conjugates presenting partially preserved, or even absent, biological properties. Notwithstanding, recent research demonstrated that the coupling to nanomaterials can improve the activity of immobilized enzymes. Herein, xanthine oxidase (XO) was immobilized by self-assembly on peculiar naked iron oxide nanoparticles (surface active maghemite nanoparticles, SAMNs). The catalytic activity of the nanostructured conjugate (SAMN@XO) was assessed by optical spectroscopy and compared to the parent enzyme. SAMN@XO revealed improved catalytic features with respect to the parent enzyme and was applied for the electrochemical studies of xanthine. The present example supports the nascent k...
Nanomaterial-based biocatalysts have emerged as current carriers suitable for enzyme immobilization....
The inclusion of transition metal catalysts into nanoparticle scaffolds permits the creation of cata...
Enzyme-catalyzed controlled radical polymerization represents a powerful approach for the polymeriza...
This article belongs to the Special Issue Exclusive Review Papers in Catalytic Materials.In the sear...
In this study, superparamagnetic iron oxide nanoparticles (MNPs) were synthesized via exposure of fu...
Biological enzymes are macromolecular catalysts that catalyze the biochemical reactions of the natur...
Protein-nanoparticle hybrids represent entities characterized by emerging biological properties that...
Immobilization enables enzymes to be held in place so that they can be easily separated from the pro...
The preservation of enzymatic activity is a fundamental requirement for exploiting hybrid nano-bio-c...
Hybrid nanostructures of magnetic iron nanoparticles and graphene oxide were synthesized and used as...
Protein-nanoparticle hybridization can ideally lead to novel biological entities characterized by em...
Background: Iron magnetic nanoparticles have attracted much attention. They have been used in enzyme...
Iron oxide nanoparticles (NPs) are attractive materials for enzyme immobilization and, thanks to the...
Recombinant aminoaldehyde dehydrogenase from tomato (LeAMADH1) was used as a model protein for study...
The immobilization of biocatalysts on magnetic nanomaterial surface is a very attractive alternative...
Nanomaterial-based biocatalysts have emerged as current carriers suitable for enzyme immobilization....
The inclusion of transition metal catalysts into nanoparticle scaffolds permits the creation of cata...
Enzyme-catalyzed controlled radical polymerization represents a powerful approach for the polymeriza...
This article belongs to the Special Issue Exclusive Review Papers in Catalytic Materials.In the sear...
In this study, superparamagnetic iron oxide nanoparticles (MNPs) were synthesized via exposure of fu...
Biological enzymes are macromolecular catalysts that catalyze the biochemical reactions of the natur...
Protein-nanoparticle hybrids represent entities characterized by emerging biological properties that...
Immobilization enables enzymes to be held in place so that they can be easily separated from the pro...
The preservation of enzymatic activity is a fundamental requirement for exploiting hybrid nano-bio-c...
Hybrid nanostructures of magnetic iron nanoparticles and graphene oxide were synthesized and used as...
Protein-nanoparticle hybridization can ideally lead to novel biological entities characterized by em...
Background: Iron magnetic nanoparticles have attracted much attention. They have been used in enzyme...
Iron oxide nanoparticles (NPs) are attractive materials for enzyme immobilization and, thanks to the...
Recombinant aminoaldehyde dehydrogenase from tomato (LeAMADH1) was used as a model protein for study...
The immobilization of biocatalysts on magnetic nanomaterial surface is a very attractive alternative...
Nanomaterial-based biocatalysts have emerged as current carriers suitable for enzyme immobilization....
The inclusion of transition metal catalysts into nanoparticle scaffolds permits the creation of cata...
Enzyme-catalyzed controlled radical polymerization represents a powerful approach for the polymeriza...