首页> 美国卫生研究院文献>Frontiers in Physiology >Simultaneous Quantification of Spatially Discordant Alternans in Voltage and Intracellular Calcium in Langendorff-Perfused Rabbit Hearts and Inconsistencies with Models of Cardiac Action Potentials and Ca Transients
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Simultaneous Quantification of Spatially Discordant Alternans in Voltage and Intracellular Calcium in Langendorff-Perfused Rabbit Hearts and Inconsistencies with Models of Cardiac Action Potentials and Ca Transients

机译:同时定量朗格多夫灌注兔心脏中电压和细胞内钙的空间不一致的交替子的定量以及与心脏动作电位和钙瞬变模型的不一致

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摘要

>Rationale: Discordant alternans, a phenomenon in which the action potential duration (APDs) and/or intracellular calcium transient durations (CaDs) in different spatial regions of cardiac tissue are out of phase, present a dynamical instability for complex spatial dispersion that can be associated with long-QT syndrome (LQTS) and the initiation of reentrant arrhythmias. Because the use of numerical simulations to investigate arrhythmic effects, such as acquired LQTS by drugs is beginning to be studied by the FDA, it is crucial to validate mathematical models that may be used during this process.>Objective: In this study, we characterized with high spatio-temporal resolution the development of discordant alternans patterns in transmembrane voltage (Vm) and intracellular calcium concentration ([Cai]+2) as a function of pacing period in rabbit hearts. Then we compared the dynamics to that of the latest state-of-the-art model for ventricular action potentials and calcium transients to better understand the underlying mechanisms of discordant alternans and compared the experimental data to the mathematical models representing Vm and [Cai]+2 dynamics.>Methods and Results: We performed simultaneous dual optical mapping imaging of Vm and [Cai]+2 in Langendorff-perfused rabbit hearts with higher spatial resolutions compared with previous studies. The rabbit hearts developed discordant alternans through decreased pacing period protocols and we quantified the presence of multiple nodal points along the direction of wave propagation, both in APD and CaD, and compared these findings with results from theoretical models. In experiments, the nodal lines of CaD alternans have a steeper slope than those of APD alternans, but not as steep as predicted by numerical simulations in rabbit models. We further quantified several additional discrepancies between models and experiments.>Conclusions: Alternans in CaD have nodal lines that are about an order of magnitude steeper compared to those of APD alternans. Current action potential models lack the necessary coupling between voltage and calcium compared to experiments and fail to reproduce some key dynamics such as, voltage amplitude alternans, smooth development of calcium alternans in time, conduction velocity and the steepness of the nodal lines of APD and CaD.
机译:>合理比例:不一致的交替蛋白,一种在心脏不同空间区域的动作电位持续时间(APDs)和/或细胞内钙瞬变持续时间(CaDs)异相的现象,表现为复杂的空间分散,可能与长QT综合征(LQTS)和折返性心律失常的发作有关。由于使用数字模拟来研究心律失常作用(例如通过药物获得的LQTS)已由FDA开始研究,因此验证可在此过程中使用的数学模型至关重要。>目的:在这项研究中,我们以高的时空分辨率表征了不同的交替蛋白在跨膜电压(Vm)和细胞内钙浓度([Cai] +2 )上的变化,是起搏周期的函数心。然后,我们将动力学与最新的心室动作电位和钙瞬变模型进行了动力学比较,以更好地了解不一致的交替素的潜在机制,并将实验数据与代表Vm和[Cai] < sup> +2 动力学。>方法和结果:我们在Langendorff灌注兔心脏中对Vm和[Cai] +2 进行了同时双光学成像与以前的研究相比,空间分辨率更高。兔子的心脏通过减少起搏周期方案而发展出不一致的交替蛋白,我们定量了在APD和CaD中沿波传播方向存在多个结点,并将这些发现与理论模型的结果进行了比较。在实验中,CaD交替链的节点线斜率比APD交替链的节点线陡,但不如兔子模型中数值模拟所预测的那样陡。我们进一步量化了模型与实验之间的其他一些差异。>结论: CaD中的交替蛋白的节线比APD交替蛋白的节线陡峭一个数量级。与实验相比,当前动作电位模型缺乏电压和钙之间的必要耦合,并且无法重现一些关键动力学,例如电压幅度交替,钙交替的及时平滑发展,传导速度以及APD和CaD结线的陡度。

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