Biocatalytically active silCoat-composites entrapping viable Escherichia coli

Application of whole cells in industrial processes requires high catalytic activity, manageability, and viability under technical conditions, which can in principle be accomplished by appropriate immobilization. Here, we report the identification of carrier material allowing exceptionally efficient...

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Veröffentlicht in:Applied microbiology and biotechnology 2014-02, Vol.98 (4), p.1557-1566
Hauptverfasser: Findeisen, A, Thum, O, Ansorge-Schumacher, M. B
Format: Artikel
Sprache:eng
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Zusammenfassung:Application of whole cells in industrial processes requires high catalytic activity, manageability, and viability under technical conditions, which can in principle be accomplished by appropriate immobilization. Here, we report the identification of carrier material allowing exceptionally efficient adsorptive binding of Escherichia coli whole cells hosting catalytically active carbonyl reductase from Candida parapsilosis (CPCR2). With the immobilizates, composite formation with both hydrophobic and hydrophilized silicone was achieved, yielding advanced silCoat-material and HYsilCoat-material, respectively. HYsilCoat-whole cells were viable preparations with a cell loading up to 400 mgE. cₒₗᵢ · g⁻¹ cₐᵣᵣᵢₑᵣ and considerably lower leaching than native immobilizates. SilCoat-whole cells performed particularly well in neat substrate exhibiting distinctly increased catalytic activity.
ISSN:0175-7598
1432-0614
DOI:10.1007/s00253-013-5340-9