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Titlebook: Immobilization of Enzymes and Cells; Methods and Protocol Jose M. Guisan,Juan M. Bolivar,Javier Rocha-Martín Book 2020Latest edition Spring

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Stabilization of Multimeric Enzymes via Immobilization and Further Cross-Linking with Aldehyde-Dextproteins very unstable under diluted conditions. A sequential two-step protocol for the stabilization of this protein is proposed. A multisubunit covalent immobilization may be achieved by performing very long immobilization processes between multimeric enzymes and porous supports composed of large
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Immobilization of Enzymes on Magnetic Beads Through Affinity Interactions,ags that are present or added at a specific position far from the active site in the structure of the native enzyme could be used to create strong affinity bonds between the protein structure and a surface functionalized with the complementary affinity ligand. These immobilization techniques are bas
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Enzyme Immobilization in Wall-Coated Flow Microreactors,e requires their retention for multiple rounds of conversions. To achieve this goal, immobilizing the enzymes on microchannel walls is a promising approach. However, protein immobilization within closed structures is difficult. Here, we describe a methodology based on the confluent design of enzyme
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In Situ Immobilization of Enzymes in Biomimetic Silica,rformed under mild and biocompatible conditions and has been proven suitable for the immobilization and stabilization of a range of enzymes and enzymatic systems in nanostructured particles. Immobilization occurs by entrapment while the silica matrix is formed via catalysis of a polyamine molecule a
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Environmentally Friendly Enzyme Immobilization on MOF Materials,age, and catalysis, among other applications. Since their discovery in 1999 (Li et al. Nature 402:276–279, 1999; Chui Science 283:1148–1150, 1999), more than 20,000 new structures have been synthesized thanks in part to their high compositional versatility. However, only some of them are really stab
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Co-Immobilization and Co-Localization of Multi-Enzyme Systems on Porous Materials,logical applications in industry. The heterogenization and control of the spatial organization across porous materials of the system components are essentials to improve the performance of the process providing higher robustness, yield, and productivity. In this chapter, the co-immobilization and co
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