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1.
Medical Journal of Chinese People's Liberation Army ; (12): 692-697, 2017.
Article Dans Chinois | WPRIM | ID: wpr-617364

Résumé

Objective To observe the effect of stress on the rapid component of delayed rectifier potassium current (IKr) in rat cardiomyocytes. Methods Forty male SD rats were randomly divided into four groups (10 each): control group (Ctrl), exhaustive group (ES), noise group (WN) and composite group (ES+WN). Stress animal models were prepared as follows: Rats in ES group were undergoing exhaustive swimming as the stress factor, in WN group undergoing white noise and in ES+WN group undergoing exhaustive swimming + white noise as the stress factor. Langendorff device was used to reversely perfuse collagenase for isolating the rat's ventricular myocytes. The effect of stress on IKr current and gating mechanism of single ventricular myocyte was recorded by whole-cell patch clamp technique. Results Compared with the Ctrl group, the tail current density of IKr (IKr,tail) of ventricular myocytes increased significantly in ES group and WN group (P<0.01). The IKr,tail current density of the ventricular myocytes in ES+WN group was significantly higher than that in ES group and WN group (P<0.01), and the effect was voltage dependent. Gating mechanism revealed that the half inactivation voltage of IKr,tail (V1/2,inact) can be shifted to the right in ES group, WN group and ES+WN group when compared with the Ctrl group, and the recovery time constant shortened after inactivation (P<0.01). However, the steady-state activation, fast inactivation constant and voltage dependence of IKr,tail were not statistically significant in ES group, WN group and ES+WN group when compared with the Ctrl group. Conclusion Stress increases the IKr current in rat cardiomyocytes, suggesting it be one of the electrophysiological bases of stress-induced arrhythmia.

2.
Journal of Xi'an Jiaotong University(Medical Sciences) ; (6): 500-505, 2016.
Article Dans Chinois | WPRIM | ID: wpr-494308

Résumé

ABSTRACT:Objective To observe the effects of late Na current (INa‐L ) and rapidly activating delayed rectifier K current (IKr ) on ventricular heterogeneity and frequency dependency by using high resolution voltage sensitive optical mapping technology .Methods The model of 12 isolated hearts was constructed in rabbits . Voltage sensitive dye Di‐4‐ANEPPS were perfused into the isolated hearts by Langendorff method .LED source with the wave length of 532 nm was used to record APD80 and APD50 of the left and right ventricles .Experimental groups were divided into 3 groups by perfusion drugs dofetillide (30 nmol/L) ,dofetillide+ATX‐Ⅱ(1 nmol/L) ,and dofetillide +ATX‐Ⅱ +mexiletine (10μmol/L) .The subjects were intervened by the above drugs in order ,and they were self‐compared before dosing .After each drug administration ,the hearts were stimulated respectively with the BCL of 2 000 ms ,1 000 ms ,500 ms ,and 300 ms .Then we observed the changes of APD80 and APD50 in the left and right ventricles before and after the interventions .Results ① In the control group ,APD80 and APD50 of the right ventricle were longer than those of the left ventricle in response to different stimulation , and the differences increased with the decrease of stimulating frequency .② When BCL was 1000 ms ,APD80 and APD50 of the left and right ventricles were prolonged respectively after administration of dofetillide , but the differences in APD80 and APD50 were insignificant between the left and right ventricles (P>0 .05) .ΔAPD80 of the two ventricles increased significantly with the decrease of stimulating frequency . ③ After administration of ATX‐Ⅱ , when BCL was 1000 ms ,APD80 and APD50 of the left and right ventricles increased significantly compared with those in the control group and dofetillide intervention group (P0 .05) .The increase of ΔAPD80 of the two ventricles became milder when the stimulating frequency decreased . Conclusion ① IKr blocked by dofetillide did not affect the heterogeneity between the two ventricles , which showed reverse‐frequency dependence . ② In the context of blocking IKr , ATX‐Ⅱ increased the heterogeneity between the left and right ventricles and enhanced the reverse‐frequency dependence .In contrast ,mexiletine ,the blocker of INa‐L ,decreased the heterogeneity between the two ventricles and reverse‐frequency dependence .

3.
Journal of Korean Medical Science ; : 1089-1098, 2009.
Article Dans Anglais | WPRIM | ID: wpr-203384

Résumé

Lindera erythrocarpa Makino (Lauraceae) is used as a traditional medicine for analgesic, antidote, and antibacterial purposes and shows anti-tumor activity. We studied the effects of Lindera erythrocarpa on the human ether-a-go-go-related gene (HERG) channel, which appears of importance in favoring cancer progression in vivo and determining cardiac action potential duration. Application of MeOH extract of Lindera erythrocarpa showed a dose-dependent decrease in the amplitudes of the outward currents measured at the end of the pulse (I(HERG)) and the tail currents of HERG (I(tail)). When the BuOH fraction and H2O fraction of Lindera erythrocarpa were added to the perfusate, both I(HERG) and I(tail) were suppressed, while the hexane fraction, CHCl3 fraction, and EtOAc fraction did not inhibit either I(HERG) or I(tail). The potential required for half-maximal activation caused by EtOAc fraction, BuOH fraction, and H2O fraction shifted significantly. The BuOH fraction and H2O fraction (100 microgram/mL) decreased gmax by 59.6% and 52.9%, respectively. The H2O fraction- and BuOH fraction-induced blockades of I(tail) progressively decreased with increasing depolarization, showing the voltage-dependent block. Our findings suggest that Lindera erythrocarpa, a traditional medicine, blocks HERG channel, which could contribute to its anticancer and cardiac arrhythmogenic effect.


Sujets)
Animaux , Femelle , Humains , Butanols/composition chimique , Canaux potassiques éther-à-go-go/antagonistes et inhibiteurs , Lindera/composition chimique , Ovocytes/cytologie , Techniques de patch-clamp , Extraits de plantes/métabolisme , Inhibiteurs des canaux potassiques/métabolisme , Xenopus laevis
4.
Chinese Pharmacological Bulletin ; (12)2003.
Article Dans Chinois | WPRIM | ID: wpr-562353

Résumé

HERG/IKr plays an important role in repolarization of cardiac action potential. In pathological condition such as cardiac ischemia, congestive heart failure and myocardial hypertrophy, the density and kinetic properties of HERG/IKr will change. This review is about modulation of HERG/IKr in pathological condition and effect of traditional chinese medicine on HERG/IKr.

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