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Modeling and simulation of developmental changes in contractile apparatus of ventricular cells

机译:心室细胞收缩装置发育变化的建模和仿真

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During development, ventricular cells utilize different isoforms of both myosin heavy chain (MHC) and troponin I. The differences in these isoforms affect Ca2+ sensitivity, ATPase activity, and velocity of contraction. In order to consider the differences in isoforms, we integrated a new contraction model with the Kyoto model. Briefly, the new model considered tropomyosin, which inhibits formation of a cross-bridge between actin and myosin filaments. We varied the level of Ca2+ sensitivity in order to obtain similar traces for contractile force between the original Kyoto model and the modified model. We also modified the new contraction model to consider ATP consumption by myosin-ATPase in order to simulate the changes in ATPase activity caused by the difference in MHC isoforms. The modified model enabled us to compare the contribution of developmental changes in ATP consumption via contraction to excitation-contraction coupling, which is regulated differently in fetal and adult guinea pigs.
机译:在发育过程中,心室细胞利用了肌球蛋白重链(MHC)和肌钙蛋白I的不同同工型。这些同工型的差异会影响Ca2 +敏感性,ATPase活性和收缩速度。为了考虑同工型的差异,我们将新的收缩模型与Kyoto模型集成在一起。简而言之,新模型考虑了原肌球蛋白,它可以抑制肌动蛋白丝和肌球蛋白丝之间的跨桥形成。我们改变了Ca2 +的敏感性水平,以便在原始的京都模型和改进的模型之间获得类似的收缩力迹线。我们还修改了新的收缩模型,以考虑肌球蛋白-ATPase对ATP的消耗,以模拟由MHC亚型差异引起的ATPase活性变化。修改后的模型使我们能够比较通过收缩对兴奋性-收缩耦合的ATP消耗的发育变化的贡献,这在胎儿和成年豚鼠中受到不同的调节。

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