Importance of the Support Properties for Immobilization or Purification of Enzymes
Immobilization and purification of enzymes are usual requirements for their industrial use. Both purification and immobilization have a common factor: they use a solid activated support. Using a support for enzyme purification means having mild conditions for enzyme release and a selective enzyme–su...
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Veröffentlicht in: | ChemCatChem 2015-08, Vol.7 (16), p.2413-2432 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Immobilization and purification of enzymes are usual requirements for their industrial use. Both purification and immobilization have a common factor: they use a solid activated support. Using a support for enzyme purification means having mild conditions for enzyme release and a selective enzyme–support interaction is interesting. When using a support for immobilization, however, enzyme desorption is a problem. The improvement of enzyme features through immobilization is a usual objective (e.g., stability, selectivity). Thus, a support designed for enzyme purification and a support designed for enzyme immobilization may differ significantly. In this review, we will focus our attention on the requirements of a support surface to produce the desired objectives. The ideal physical properties of the matrix, the properties of the introduced reactive groups, the best surface activation degree to reach the desired objective, and the properties of the reactive groups will be discussed.
The key to enzymes: The support surface and its activation (number and kind of groups) is a key point in the design of a matrix for enzyme purification (determining the selectivity of enzyme adsorption) and immobilization (controlling the stabilization, enzyme orientation and activity). This paper reviews the most relevant features of a support to determine their feasibility in both techniques. |
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ISSN: | 1867-3880 1867-3899 |
DOI: | 10.1002/cctc.201500310 |