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Na^+/Ca2^(+)交换对狗心室肌细胞复极的影响
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作者 巩燕 王焱 bela szabo 《中国心脏起搏与心电生理杂志》 2005年第5期368-372,共5页
探讨生理状态下Na+/Ca2+交换(NCX)双向模式的离子转换对复极的影响,以及在转换失调时是否为潜在的触发心律失常的机制。应用全细胞膜片钳技术研究单个心室肌细胞在不同频率刺激下动作电位时程(APD)的变化、药物干预改变NCX活性的条件下... 探讨生理状态下Na+/Ca2+交换(NCX)双向模式的离子转换对复极的影响,以及在转换失调时是否为潜在的触发心律失常的机制。应用全细胞膜片钳技术研究单个心室肌细胞在不同频率刺激下动作电位时程(APD)的变化、药物干预改变NCX活性的条件下APD的变化以及与细胞舒张的关系。结果:固定频率(1.0Hz)刺激APD的变化范围和频率改变(0.6~1.0Hz)时APD的变化范围均在一个相对固定的膜电位(10~40mV)范围内。用10mmol/LEGTA缓冲细胞内游离钙后,APD的变异系数明显减小。而废除基质网功能及应用钙通道阻滞剂nifedip-ine并不改变APD的变异程度。因刺激频率减慢造成复极和细胞松弛的不匹配,从而导致后收缩的出现以及APD的延长。在强化NCX逆向活性的条件下穹隆膜电位显著降低,而APD显著延长。结论:在动作电位的复极过程中NCX的逆向模式和顺向模式应该与机械收缩和松弛有完美的匹配。生理状态下的心脏一旦这种匹配失调,NCX会向错误的方向运载钙,从而造成基质网内钙超载,诱发心律失常。 展开更多
关键词 电生理学 动作电位 复极 NA^+/CA^2+交换 早期/延迟后除级 后收缩 心室肌细胞
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The Effects of Na^+/Ca^(2+) exchange (NCX) on the Repolarization of Canine Ventricular Myocyte-Potential Arrhythmogenic Effect of NCX during a Mis-matched Repolarization and Relaxation Xiamen Zhongshan Hospital, Xiamen Medical College, Xiamen University
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作者 巩燕 王焱 bela szabo 《介入放射学杂志》 CSCD 2004年第S2期212-213,共2页
Objective Background and Objects: Naturally occurring temporal variability of action potentialduration (APD) in isolated myocytes has been noted. Most of the studies have beenfocusing on analyzes of the differences in... Objective Background and Objects: Naturally occurring temporal variability of action potentialduration (APD) in isolated myocytes has been noted. Most of the studies have beenfocusing on analyzes of the differences in ionic channels and currents among theepicardial-, mid-myocardial-(M) and endocardial myocytes, and the rate-dependent (adaptation) characteristics of APD. We have found that the change in APD during achange in frequency of stimulation mostly reflects a change in rate of repolarization at distinct membrane potential levels. We assumed that in the myocytes, there is balancing mechanism, which is constantly adjusting the various ionic currents accommodating to the changing conditions. This intrinsic ability of adaptation is important and may offer some of the consequences of the transmural heterogeneity in adaptation of APD. This adaptive behaviors maybe equally important in maintaining the normal electrophysiological properties and in induction of arrhythmia in a case of error in normal adaptation. Though most studies of Na +/Ca 2+ exchange (NCX) has been emphasized on its reverse activaty during pathyological condition. Our hypothesis is that reverse activaty of NCX also plays an important role in adjusting the repolarization of AP during a physiological condition. A mismatch between action potential (AP) repolarization and relaxation of the contraction can be caused by intracellular Ca 2+ transport abnormalities. Ca 2+ influx via reverse activation of NCX can load the sarcoplasmic recticulum (SR), which has arrhythmogenic effect.Methods We studied the single myocytes from the left ventricle of adult mongrel dogs. During the cell separation, collagenase was perfused through LAD by Langandorff system. We use the patch-clamp system to determinded AP in current clamp mode. Myocyte contraction was imaged by a video camera, shortening of unloaded myocytes was detected by a video edge motion detector, using changes in light intensity at the edges of the myocyte. Results From 60 consecutive recorded APs at a constant 1.0 Hz stimulation under steady state conditions we found there is a variance in the repolarization between 10mV and-40mV. We also found the variance in the APD during the rate adaptation range of repolarization. Fluctuation in the transient may contribute to the APD variability. To test thishypothesis we block the transient by intracellular dialysis with 10 mM EGTA(n=19), this caused a significant reduction in the coefficient variability (CV=SD/mean APD%) from 2.3± 0.8 to 1.3± 0.3 P< 0.01. During a rate change of the stimulation from 0.6 Hz to 1.0 Hz. The AP duration increased from 278±8 msec to 320±9 msec, Mean+SD, n=5, 50 APs, P< 0.05. contraction is accompanied by an after-contraction(A-CON). The relaxation of contraction precedes the repolarization of the AP. We assumed that the enhancement of repolarization and the production of after-contraction can be possibly induced by reverse mode of NCX. Reducing [Na +] o by substitution of 40mM Na + with Li + favors NCX activating the reverse mode, which significantly decreased the dome of the AP from 4.8± 0.3 to -10.6± 1.2mV, P< 0.05, and increased the APD from 330±13 to 368±14 msec. P< 0.05.Conclusions Intracellular calcium transient most likely contributes to the beat-to-beat variance of action potential duration in canine ventricular myocyte. And it attributes to the voltage-dependent switch of NCX mode. Calcium concentration is high inmyocytes during the repolarization, and high intracellular Ca 2+ activates NCX in such a manner, that it generates an inward (positive, depolarizing) current. This current works against the repolarization, it is prolonging it, with other words it increases the duration of the action potential. The magnitude of calcium concentration during repolarization is very much dependent on calcium transport in the SR. The calcium transport in the SR is subject to adrenergic actions, and other physiologic and pathologic regulators. Under pathologic conditions 展开更多
关键词 action POTENTIAL REPOLARIZATION Na +/Ca 2+ EXCHANGE early/delayedafterdepolarization after-contraction ventricular MYOCYTE
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