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Simulation study on the balance of glycolytic ATP production and oxidative phosphorylation in embryonic and adult ventricular cells

机译:胚胎和成年心室细胞糖酵解ATP产生与氧化磷酸化平衡的模拟研究

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Here, we integrated various characteristics of fetal ventricular cells based on a mathematical model and predicted the contribution of each characteristic to maintenance of intracellular ATP concentration and sarcomere contraction under anoxic conditions. Our simulation results showed that higher glycogen content, higher hexokinase activity, and lower creatine concentration helped to prolong the time that contraction of ventricular cells was maintained under anoxic conditions. The integrated model enabled us to quantitatively assess the contributions of factors related to energy metabolism in ventricular cells.
机译:在这里,我们基于数学模型整合了胎儿心室细胞的各种特征,并预测了每种特征在缺氧条件下维持细胞内ATP浓度和肌小节收缩的作用。我们的模拟结果表明,较高的糖原含量,较高的己糖激酶活性和较低的肌酸浓度有助于延长缺氧条件下维持心室细胞收缩的时间。集成模型使我们能够定量评估与心室细胞能量代谢有关的因素的贡献。

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