Pub. Date : 2015
PMID : 26121139
5 Functional Relationships(s)Download |
Sentence | Compound Name | Protein Name | Organism |
1 | Channel Activity of Cardiac Ryanodine Receptors (RyR2) Determines Potency and Efficacy of Flecainide and R-Propafenone against Arrhythmogenic Calcium Waves in Ventricular Cardiomyocytes. | Propafenone | ryanodine receptor 2, cardiac | Mus musculus |
2 | We hypothesized that differences in RyR2 activity induced by CPVT mutations determines the potency of open-state RyR2 blockers like flecainide (FLEC) and R-propafenone (RPROP) against Ca2+ waves in cardiomyocytes. | Propafenone | ryanodine receptor 2, cardiac | Mus musculus |
3 | We hypothesized that differences in RyR2 activity induced by CPVT mutations determines the potency of open-state RyR2 blockers like flecainide (FLEC) and R-propafenone (RPROP) against Ca2+ waves in cardiomyocytes. | Propafenone | ryanodine receptor 2, cardiac | Mus musculus |
4 | We hypothesized that differences in RyR2 activity induced by CPVT mutations determines the potency of open-state RyR2 blockers like flecainide (FLEC) and R-propafenone (RPROP) against Ca2+ waves in cardiomyocytes. | Propafenone | ryanodine receptor 2, cardiac | Mus musculus |
5 | We hypothesized that differences in RyR2 activity induced by CPVT mutations determines the potency of open-state RyR2 blockers like flecainide (FLEC) and R-propafenone (RPROP) against Ca2+ waves in cardiomyocytes. | Propafenone | ryanodine receptor 2, cardiac | Mus musculus |