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Experimentally observed phenomena on cardiac energetics in heart failure emerge from simulations of cardiac metabolism

机译:在实验中观察到的关于心力衰竭的心脏能量的现象来自心脏代谢的模拟

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The failing heart is hypothesized to suffer from energy supply inadequate for supporting normal cardiac function. We analyzed data from a canine left ventricular hypertrophy model to determine how the energy state evolves because of changes in key metabolic pools. Our findings-confirmed by in vivo ~(31)P-magnetic resonance spectroscopy-indicate that the transition between the clinically observed early compensatory phase and heart failure and the critical point at which the transition occurs are emergent properties of cardiac energy metabolism. Specifically, analysis reveals a phenomenon in which low and moderate reductions in metabolite pools have no major negative impact on oxidative capacity, whereas reductions beyond a critical tipping point lead to a severely compromised energy state. The transition point corresponds to reductions in the total adenine nucleotide pool (TAN) of ≈30%, corresponding to the reduction observed in humans in heart failure [Ingwall JS, Weiss RG (2004) Is the failing heart energy starved? On using chemical energy to support cardiac function. Circ Res 95(2):135-145]. At given values of TAN and the total exchangeable phosphate pool during hypertrophic remodeling, the creatine pool attains a value that is associated with optimal ATP hydrolysis potential. Thus, both increases and decreases to the creatine pool are predicted to result in diminished energetic state unless accompanied by appropriate simultaneous changes in the other pools.
机译:假设心脏衰竭者的能量供应不足以支持正常的心脏功能。我们分析了来自犬左心室肥大模型的数据,以确定能量状态如何由于关键代谢池的变化而演变。我们的研究结果(通过体内〜(31)P磁共振波谱确认)表明,临床观察到的早期代偿期与心力衰竭之间的过渡以及发生过渡的临界点是心脏能量代谢的新兴特性。具体而言,分析揭示了一种现象,其中代谢物库的低度和中度降低对氧化能力没有重大负面影响,而超过临界临界点的降低却导致能量状态严重受损。转变点对应于总腺嘌呤核苷酸池(TAN)降低约30%,相当于人类在心力衰竭中观察到的降低[Ingwall JS,Weiss RG(2004)衰竭的心脏能量是否饿死了?关于使用化学能支持心脏功能。 Circ Res 95(2):135-145]。在肥大重塑过程中,在给定的TAN和总可交换磷酸盐池值下,肌酸池达到与最佳ATP水解潜能相关的值。因此,预测肌酸池的增加和减少都会导致能量状态的降低,除非伴随着其他池中适当的同时变化。

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