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Dynamic Action Potential Restitution Contributes to Mechanical Restitution in Right Ventricular Myocytes From Pulmonary Hypertensive Rats

机译:动态动作潜在恢复有助于肺高血压大鼠的右心室肌细胞的机械恢复

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摘要

We investigated the steepened dynamic action potential duration (APD) restitution of rats with pulmonary artery hypertension (PAH) and right ventricular (RV) failure and tested whether the observed APD restitution properties were responsible for negative mechanical restitution in these myocytes. PAH and RV failure were provoked in male Wistar rats by a single injection of monocrotaline (MCT) and compared with saline-injected animals (CON). Action potentials were recorded from isolated RV myocytes at stimulation frequencies between 1 and 9 Hz. Action potential waveforms recorded at 1 Hz were used as voltage clamp profiles (action potential clamp) at stimulation frequencies between 1 and 7 Hz to evoke rate-dependent currents. Voltage clamp profiles mimicking typical CON and MCT APD restitution were applied and cell shortening simultaneously monitored. Compared with CON myocytes, MCT myocytes were hypertrophied; had less polarized diastolic membrane potentials; had action potentials that were triggered by decreased positive current density and shortened by decreased negative current density; APD was longer and APD restitution steeper. APD90 restitution was unchanged by exposure to the late Na+-channel blocker (5 μM) ranolazine or the intracellular Ca2+ buffer BAPTA. Under AP clamp, stimulation frequency-dependent inward currents were smaller in MCT myocytes and were abolished by BAPTA. In MCT myocytes, increasing stimulation frequency decreased contraction amplitude when depolarization duration was shortened, to mimic APD restitution, but not when depolarization duration was maintained. We present new evidence that the membrane potential of PAH myocytes is less stable than normal myocytes, being more easily perturbed by external currents. These observations can explain increased susceptibility to arrhythmias. We also present novel evidence that negative APD restitution is at least in part responsible for the negative mechanical restitution in PAH myocytes. Thus, our study links electrical restitution remodeling to a defining mechanical characteristic of heart failure, the reduced ability to respond to an increase in demand.
机译:我们研究了大鼠的动态加陡动作电位持续时间(APD)恢复原状与肺动脉高压(PAH),右心室(RV)失败并测试所观察到的APD恢复属性是否负责在这些肌细胞负机械恢复原状。 PAH和右心室衰竭通过野百合碱(MCT)的单次注射在雄性Wistar大鼠引起,并用盐水注射的动物(CON)进行比较。动作电位是从分离的肌细胞RV以1和9Hz之间刺激频率记录。记录在1Hz动作电位波形在刺激频率1和7 Hz之间的用作电压钳轮廓(动作电位钳)来唤起速率依赖性电流。电压钳轮廓模仿典型CON和MCT APD恢复施加和细胞缩短同时监测。与CON心肌细胞相比,MCT肌细胞肥大;具有更少的极化舒张膜电位;有这样通过降低正电流密度触发并通过减小负电流密度缩短动作电位; APD较长和APD恢复陡峭。 APD90恢复原状不变通过暴露于晚Na +通道阻断剂(5μM)雷诺嗪或细胞内Ca 2+缓冲BAPTA。下AP钳,刺激频率依赖性的内向电流在MCT肌细胞体积较小,由BAPTA被废除。在MCT肌细胞,当去极化的持续时间缩短增加刺激频率降低收缩幅度,以模仿APD恢复原状,但不能保持去极化的持续时间时。我们提出新的证据表明,PAH肌细胞的膜电位稳定小于正常肌细胞,而更容易受到外部干扰的电流。这些观测结果可以说明易感性增加心律失常。我们还提出了新的证据,负面APD恢复至少是部分负责PAH心肌细胞的负机械恢复原状。因此,我们的研究联系电恢复原状重塑心脏衰竭,能够减少以应对需求增长的决定性力学特性。

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