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Keyphrases
P2Y Receptors
100%
Insulin Secretion
100%
Insulin Secretagogue
100%
Adenosine Derivatives
100%
Thioether
100%
New Insulins
100%
Order of Magnitude
66%
NTPDase
66%
P2 Receptors
66%
S-derivative
66%
Chemically Stable
33%
Inositol Phosphate
33%
Highly Effective
33%
Turkey
33%
Erythrocyte Membrane
33%
Phosphorothioate
33%
Phospholipase C Activity
33%
Pancreatic β-cells
33%
Nucleosides
33%
Hydrolysis Rate
33%
Enzymatic Stability
33%
Phosphate
33%
Adenosine
33%
P2Y1
33%
Rat Pancreas
33%
Hydrolytic Stability
33%
Full Agonist
33%
Pancreas
33%
Gastric Juice
33%
Facile Method
33%
Phosphoester Bond
33%
Apparent Affinity
33%
High-level Synthesis
33%
Significant Target
33%
Novel Drug Development
33%
Highly Potent
33%
Chiral Products
33%
Concentration Range
33%
Pharmacology, Toxicology and Pharmaceutical Science
Purinergic P2Y Receptor
100%
Adenosine Derivative
100%
Adenosine Triphosphate
100%
Thioether
100%
Insulin
100%
Purinergic P2 Receptor
25%
Adenosine Phosphate
25%
Drug Development
12%
Thiophosphate
12%
Turkey (Bird)
12%
Inositol Phosphate
12%
Nucleoside
12%
Adenosine
12%
Organophosphate
12%
Rat
12%
Pig
12%
Lecithinase
12%
Chemistry
ATP
100%
Insulin Secretagogue
100%
Adenosine
100%
Hydrolysis
37%
Insulin Derivative
37%
Enzymatic Hydrolysis
37%
S Isomer
25%
AMP
25%
Nucleoside
12%
Flow Kinetics
12%
hydrolytic
12%
Inositol Phosphate
12%