|
Volumn 70, Issue 3, 2000, Pages 342-348
|
Highly efficient immobilization of glycosylated enzymes into polyurethane foams
|
Author keywords
Aminoacylase; Chloroperoxidase; Enzymatic catalysis; Immobilization; Phytase; Polyurethane (PUR) foams
|
Indexed keywords
CATALYSIS;
FOAMED PLASTICS;
POLYURETHANES;
AMINOACYLASE;
CHLOROPEROXIDASE;
PHYTASE;
POLYURETHANE (PUR) FOAMS;
ENZYME IMMOBILIZATION;
AMINOACYLASE;
BETA GALACTOSIDASE;
CHLORIDE PEROXIDASE;
GLUCAN 1,4 ALPHA GLUCOSIDASE;
PHYTASE;
POLYURETHAN FOAM;
ARTICLE;
ASPERGILLUS;
ASPERGILLUS FICUUM;
ASPERGILLUS MELLEUS;
CALDARIOMYCES FUMAGO;
CATALYSIS;
CATALYST;
CONTROLLED STUDY;
ENZYME ACTIVITY;
ENZYME ASSAY;
ENZYME IMMOBILIZATION;
ENZYME STABILITY;
FUNGUS;
LEACHING;
NONHUMAN;
PROTEIN ANALYSIS;
PROTEIN CONTENT;
PROTEIN GLYCOSYLATION;
6-PHYTASE;
AMIDOHYDROLASES;
ASPERGILLUS;
BIOREACTORS;
BIOTECHNOLOGY;
CHLORIDE PEROXIDASE;
ENZYME STABILITY;
ENZYMES, IMMOBILIZED;
GLYCOSYLATION;
MITOSPORIC FUNGI;
POLYURETHANES;
SUPPORT, NON-U.S. GOV'T;
ASPERGILLUS;
ASPERGILLUS FICUUM;
ASPERGILLUS MELLEUS;
CALDARIOMYCES;
FUNGI;
LEPTOXYPHIUM FUMAGO;
|
EID: 0034610171
PISSN: 00063592
EISSN: None
Source Type: Journal
DOI: 10.1002/1097-0290(20001105)70:3<342::AID-BIT11>3.0.CO;2-A Document Type: Article |
Times cited : (21)
|
References (34)
|