Hierarchical Nanoplatforms for High‐Performance Enzyme Biocatalysis under Denaturing Conditions
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Summary
A hierarchically structured nanoplatform comprising the integration of enzymes into a hybrid carbon‐nanotube‐based magnetic nanocomposite was developed, and it is found to provide laccases with unprecedented recycling potential.
- Type
- article
- Published
- 2016-04-06
- Cited by
- 18
- References
- 33
- Access
- Open access
- OpenAlex
- https://openalex.org/W2289842317
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:101950885
Keywords
Laccase, Biocatalysis, Nanocomposite, Reuse, Nanotechnology
References
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- Atomic structure and electronic properties of single-walled carbon nanotubes
- Enzymes for chemical synthesis
- Current status and trends in enzymatic nanoimmobilization
- Mechanical and thermal properties of carbon nanotubes
- Biomolecule-functionalized carbon nanotubes: applications in nanobioelectronics.
- New generation of biocatalysts for organic synthesis.
- Exceptionally high Young's modulus observed for individual carbon nanotubes
- Potential applications of enzymes immobilized on/in nano materials: A review.
- Recent developments and applications of immobilized laccase.
- Improvement of enzyme activity, stability and selectivity via immobilization techniques
- Industrial enzyme applications.
- Nanostructures for enzyme stabilization
- Goldnanopartikel in Biologie und Medizin
- Laccases: blue enzymes for green chemistry.
- Industrial and biotechnological applications of laccases: a review.
- Advances in Bioapplications of Carbon Nanotubes
- Endothelial delivery of antioxidant enzymes loaded into non-polymeric magnetic nanoparticles
- Core shell particles consisting of cobalt ferrite and silica as model ferrofluids [CoFe2O4–SiO2 core shell particles]
- Controlled growth of monodisperse silica spheres in the micron size range
Cited by
- Titania-coated gold nanorods with expanded photocatalytic response. Enzyme-like glucose oxidation under near-infrared illumination.
- Immobilization of laccase on functionalized multiwalled carbon nanotube membranes and application for dye decolorization
- Advances in biotechnological synthetic applications of carbon nanostructured systems.
- Application of Central Composite Design as a Strategy to Maximize the Productivity of Agaricus bisporus CU13 Laccase and Its Application in Dye Decolorization
- Raman spectroscopy to unravel the magnetic properties of iron oxide nanocrystals for bio-related applications
- Nanoarchitectonics of Biofunctionalized Metal–Organic Frameworks with Biological Macromolecules and Living Cells
- Pd-CNT-SiO2 nanoskein: composite structure design for formic acid dehydrogenation.
- Encapsulation of Enzymes in Porous Capsules via Particle Templating.
- Amperometric biosensor based on coupling aminated laccase to functionalized carbon nanotubes for phenolics detection.
- Response surface methodology as an approach for optimization of α-amylase production by the new isolated thermotolerant Bacillus licheniformis WF67 strain in submerged fermentation
- Enhancement of laccase production from a newly isolated Trichoderma harzianum S7113 using submerged fermentation: Optimization of production medium via central composite design and its application for hydroquinone degradation.
- Enhanced Performance of Bioelectrodes Made with Amination-Modified Glucose Oxidase Immobilized on Carboxyl-Functionalized Ordered Mesoporous Carbon
- Laccase-Oriented Immobilization Using Concanavalin A as an Approach for Efficient Glycoproteins Immobilization and Its Application to the Removal of Aqueous Phenolics
- Laccase multi-point covalent immobilization: characterization, kinetics, and its hydrophobicity applications
- Prospects and problems in enzyme immobilization methodology: comprehensive review
- Nanostructured Heterogeneous Catalysts for Bioorthogonal Reactions
- Carbon nanotubes/nanorods in biocatalysis
- Bionanocomposite Materials for Biocatalytic Applications
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