Engineering & Materials Science
Enzymes
100%
Oxidoreductases
61%
Sugar (sucrose)
45%
Glucose
36%
Glycosylation
32%
Substrates
32%
Oligosaccharides
30%
Biocatalysts
29%
Xylose
22%
Biocatalysis
22%
Catalysts
20%
Cellulose
18%
Escherichia coli
17%
Sugars
17%
Proteins
15%
Nucleosides
15%
Acids
15%
Enzyme immobilization
14%
Glycosides
13%
Yeast
13%
Amino acids
13%
Biotransformation
12%
Nucleotides
12%
Cyclodextrins
11%
Coenzymes
11%
Glycerol
10%
Glucosides
10%
Carboxylic acids
10%
Phosphates
10%
Catalysis
9%
Phosphatases
9%
Biosynthesis
9%
Aldehydes
9%
Hydrolysis
8%
Catalyst supports
8%
Fermentation
8%
Decarboxylation
7%
Molecules
7%
Flavonoids
7%
Silica
7%
Fatty acids
7%
Peptide Hydrolases
7%
Hydrolases
6%
Alcohols
6%
Cytochrome P-450 Enzyme System
6%
Enzyme kinetics
6%
Enzyme activity
6%
Nanocellulose
6%
Carbohydrates
6%
Human Milk
6%
Fructose
5%
Ethanol
5%
Candida
5%
Productivity
5%
Polymerization
5%
Glucosamine
5%
Medicine & Life Sciences
Enzymes
50%
Glycosyltransferases
27%
sucrose synthase
27%
Immobilized Enzymes
23%
Glycosylation
21%
Oxidoreductases
20%
Oligosaccharides
19%
sucrose phosphorylase
18%
Sucrose
15%
Cellulose
15%
Sugars
14%
Escherichia coli
13%
Uridine Diphosphate
13%
Uridine Diphosphate Glucose
12%
glucose-1-phosphate
12%
NAD
12%
Biocatalysis
12%
Racemases and Epimerases
11%
Glycosides
11%
Phosphorylases
10%
Uridine Diphosphate Glucuronic Acid
10%
nothofagin
10%
Xylose
10%
Nitriles
9%
xylose-glucose
9%
Biotransformation
9%
Immobilization
9%
Kinetics
9%
Aldehyde Reductase
9%
Catalysis
9%
Saccharomyces cerevisiae
9%
NADP
9%
Glycerol
8%
Trichoderma
8%
Mixed Function Oxygenases
8%
Glucose
8%
Short Chain Dehydrogenase-Reductases
8%
Glucosides
8%
UDP-apiose
7%
cellodextrin phosphorylase
7%
Fermentation
7%
Proteins
7%
Hydrolysis
7%
Decarboxylation
7%
UDPglucuronate decarboxylase
7%
Nucleosides
7%
cellobiose phosphorylase
6%
Formate Dehydrogenases
6%
Polysaccharides
6%
Hexosaminidases
6%
Coenzymes
6%
Biological Products
6%
Cellobiose
6%
Biomass
6%
Pichia
5%
Recycling
5%
Polymerization
5%
Bifidobacterium bifidum
5%
lacto-N-neotetraose
5%
Sugar Phosphates
5%
Metal-Organic Frameworks
5%
C-glycoside
5%
apiose
5%
5-carboxy-methylaminomethyl-2'-O-methyluridine
5%
Sialyltransferases
5%
cellodextrin
5%
Lactose
5%
Nucleotides
5%
Ethanol
5%
Synthetic Chemistry Techniques
5%
Chemistry
Sucrose
38%
Glycosylation
20%
Reaction Yield
15%
Uridine
14%
Glucose
13%
Acid
12%
Application
12%
Xylose
11%
Glycoside
11%
Phloretin
11%
Protein
10%
Strain
10%
Oligosaccharide
9%
Donor
8%
Decarboxylation
8%
Cellodextrin
8%
Porosity
8%
Reduction
7%
Glycerol
7%
Flow
7%
Occurrence in Nature
7%
Surface
7%
Biosynthesis
7%
Cellobiose
7%
Coenzyme
7%
Nitrile
7%
Glucosylation
7%
Recycling
7%
Crystalline Cellulose
7%
Catalysis
7%
pH Value
6%
Chemical Transformation
6%
Nucleoside
6%
Environment
6%
Carboxylic Acid
5%
Polysaccharide
5%
Synthase Reaction
5%
Mass Transfer
5%
Cellooligosaccharide
5%
Enzymatic Reaction
5%
Aldehyde
5%
Hydroxynitrile
5%
Formate Dehydrogenase
5%