Keyphrases
Uridine
100%
Uracil nucleotides
100%
Cardiomyocytes
100%
Hypoxic Stress
100%
5-bisphosphate
90%
Cardioprotection
36%
Ca2+
27%
Hypoxia
27%
P2 Receptors
18%
Ca2+ Signaling
18%
Signaling Pathway
9%
Incubation
9%
Protective Effect
9%
G Protein-coupled Receptor
9%
Specific Inhibitor
9%
P2Y Receptors
9%
P2 Purinoceptors
9%
Purine
9%
Physiological Role
9%
P2X Receptors
9%
P2Y6 Receptor
9%
P2Y2 Receptor
9%
Cardiovascular System
9%
Hypoxic Condition
9%
Extracellular nucleotides
9%
Pyridoxal 5′-phosphate
9%
Rat Cardiomyocytes
9%
Purinoceptors
9%
Suramin
9%
Phospholipase C
9%
Purine nucleotides
9%
Pyrimidine nucleotides
9%
Reactive Blue 2
9%
Anion Receptor
9%
IP3 Receptor
9%
Mitochondrial KATP Channel
9%
Cardiomyocyte Death
9%
P2Y14 Receptor
9%
Ligand-gated
9%
P2Y4 Receptor
9%
Pharmacology, Toxicology and Pharmaceutical Science
Pyrimidine Nucleotide
100%
Uridine
100%
Hypoxia
100%
Calcium Ion
45%
Purinergic P2 Receptor
27%
Purine Nucleotide
9%
Receptor
9%
Purine Derivative
9%
Purinergic P2Y Receptor
9%
Purinergic P2X Receptor
9%
Suramin
9%
Cibacron Blue F3ga
9%
Pyridoxal 5 Phosphate
9%
Adenosine Triphosphate Sensitive Potassium Channel
9%
5 Hydroxydecanoic Acid
9%
Purinergic Receptor
9%
Ion Channel
9%
G Protein Coupled Receptor
9%
Phospholipase C
9%
Uridine Diphosphate
9%
Biochemistry, Genetics and Molecular Biology
Uridine
100%
Uracil
100%
Cardiac Muscle Cell
100%
P2 Receptor
27%
Calcium Signaling
18%
Signal Transduction
9%
Pyridoxal
9%
ATP-Sensitive Potassium Channel
9%
Mediator
9%
Suramin
9%
Purinergic Receptor
9%
Eicosanoid Receptor
9%
G Protein Coupled Receptor
9%
P2Y Receptor
9%
Uridine Diphosphate
9%
Phospholipase C
9%