Determination of intrinsic parameters for immobilization reactions of catalase and amyloglucosidase in porous glass supports
Author:
Publisher
Wiley
Subject
Applied Microbiology and Biotechnology,Bioengineering,Biotechnology
Reference13 articles.
1. Immobilization of enzymes in porous solids under restricted diffusion conditions
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5. Staining method for determination of the penetration of immobilized enzyme into a porous support
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1. Design of the Enzyme–Carrier Interface to Overcome the O2 and NADH Mass Transfer Limitations of an Immobilized Flavin Oxidase;ACS Applied Materials & Interfaces;2020-12-04
2. Potential of Different Enzyme Immobilization Strategies to Improve Enzyme Performance;Advanced Synthesis & Catalysis;2011-11
3. Modulation of the distribution of small proteins within porous matrixes by smart-control of the immobilization rate;Journal of Biotechnology;2011-10
4. Characterization and properties of catalase immobilized onto controlled pore glass and its application in batch and plug-flow type reactors;Journal of Molecular Catalysis B: Enzymatic;2009-06
5. Pereparation and characterization of two types of covalently immobilized amyloglucosidase;Journal of the Serbian Chemical Society;2005
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