| Literature DB >> 28476169 |
Feng Cao1,2,3, Teng Wang4,5,6, Wenmao Ding4,5,6, Zhe Li4,5,6, Shaobo Shi4,5,6, Xiaozhan Wang4,5,6.
Abstract
BACKGROUND: Diacetyl-liensinine is a chemosynthetic derivative of liensinine, extracted from the seed embryo of Nelumbo nucifera Gaertn, in China. It has been found to have extensive anti- arrhythmic actions. The present study was designed to investigate the effects of diacetyl-liensinine on electro- physiology of myocytes.Entities:
Keywords: Diacetyl-liensinine; Electrophysiology; Patch clamp; Ventricular myocyte
Mesh:
Substances:
Year: 2017 PMID: 28476169 PMCID: PMC5420095 DOI: 10.1186/s40360-017-0137-6
Source DB: PubMed Journal: BMC Pharmacol Toxicol ISSN: 2050-6511 Impact factor: 2.483
Fig. 1Effects of diacetyl-liensinine on action potentials in rabbit ventricular myocytes. Action potentials were elicited at a stimulation rate of 1 Hz and recorded in control and diacetyl-liensinine treatment (10, 30, 100 μM). Each experiment was performed with three replicates
Effects of diacetyl-liensinine on APD50 and APD90
| Concentrations | APD50 (ms) | APD90 (ms) |
|---|---|---|
| 0 μM | 245.48±122.32 | 310.51±69.82 |
| 10 μM | 388.41±75.06* | 417.37±45.79* |
| 30 μM | 479.08±81.11** | 494.52±41.18** |
| 100 μM | 347.85±60.58* | 358.01±53.16* |
Data are expressed as mean±S.E.M. and compared by paired Student's t-test. (n = 9, *P <0.05, **P<0.01 vs. control) APD50: action potential duration at 50% repolarization; APD90: action potential duration at 50% repolarization
Fig. 2Inhibitory effects of diacetyl-liensinine with different concentration on the peak I Ca,L in rabbit ventricular myocytes. The currents traces were evoked by 500 ms pulses between -30 and +60 mV from a holding potential of -40 mV in 10 mV increments. Each experiment was performed with three replicates
Fig. 3Effects of diacetyl-liensinine at 10 μM on I-V relationship for I Ca,L. Control was marked with closed triangle, diacetyl-liensinine at 10 μM with closed square. Five hundred milliseconds steps from a holding potantial of -40 mV were applied between -30 and +60 mV (increments of 10 mV) in seven cells of each group. Each experiment was performed with three replicates
Fig. 4Effects of diacetyl-liensinine at 10 μM on the I-V relationship of IK. Control was marked with closed square, diacetyl-liensinine at 10 μM with closed triangle. Activation of IK was elicited by applying the voltage clamp steps at 0.1 Hz from a holding potential of -40 mV to depolarizing potentials ranging from -40 to +70 mV. Each experiment was performed with three replicates