H.-J. J?rdening

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Name:
Organization: Braunschweig University of Technology , Germany
Department:
Title: (PhD)
Co-reporter:Clarissa Müller;Dave Hartig;Karl Vorländer
Bioprocess and Biosystems Engineering 2017 Volume 40( Issue 9) pp:1399-1410
Publication Date(Web):10 June 2017
DOI:10.1007/s00449-017-1797-8
A hybrid-immobilization method was developed to improve the long-term stability of laminaribiose phosphorylase immobilized on epoxy supports Sepabeads EC-EP/S. Entrapment in chitosan retained all of the enzyme activity depending on the amount of entrapped solid materials and increased half-life by a factor of 10–94.4 h. No enzyme activity loss was determined during 12 times reuse. The immobilization method is also applicable to sucrose phosphorylase immobilized on Sepabeads EC-EP/S. Up to 31.9 g/L laminaribiose were produced in bienzymatic batch experiments with reaction-integrated product separation by adsorption on zeolites.
2-HYDROXYBENZOIC ACID-D6
manninotriose
SUCROSE
4-O-(alpha-D-glucopyranosyl)-D-glucopyranose
D-[1,2-13C2]GLUCOSE
3-ketosucrose
beta-D-Galp-(16)-beta-D-Galp-(14)-D-Glc (6'-galactosyllactose)
alpha-D-Glucopyranoside, beta-D-fructofuranosyl O-alpha-D-galactopyranosyl-(1.fwdarw.6)-O-alpha-D-galactopyranosyl-(1.fwdarw.6)-
2-[(5-acetylthiophen-3-yl)methyl]isoindole-1,3-dione
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