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首页> 外文期刊>BioSystems >A new method for evaluation and dietary therapy of congenital: deficiencies of amino acid metabolic enzymes - Linear system analysis and optimization of feedback inputs for the metabolic pathways of lysine, methionine and isoleucine
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A new method for evaluation and dietary therapy of congenital: deficiencies of amino acid metabolic enzymes - Linear system analysis and optimization of feedback inputs for the metabolic pathways of lysine, methionine and isoleucine

机译:一种评估和饮食治疗先天性疾病的新方法:氨基酸代谢酶的缺乏-赖氨酸,蛋氨酸和异亮氨酸代谢途径的线性系统分析和反馈输入的优化

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We intended to elucidate an integrated mathematical model of amino acid metabolism and we propose a system for optimization treatment of disturbed metabolic stases caused by congenital enzyme deficiencies. Our analysis focused on the metabolic pathway starting at asparaginic acid proceeding to isoleucine, methionine and lysine. The rate of change in the concentration of the biochemical species was expressed as 21 linear rate equations. We obtained the rate constants and the magnitude of feedback from reported experimental data. Linear systems analysis revealed that the metabolic system under study was stable but uncontrollable. These properties were insensitive to changes in the magnitude of feedback. To show the effect of optimizing the feedback so that it minimizes the square of the concentration of the species and the control input, we analyzed the impulse response of the species, transient response and the singular value of the system for four cases; (1) at the physiological state without optimizing the feedback, (2) at the physiological state attained after optimizing the feedback, (3) at the pathophysiogical state attained with enzyme deficiency states for lysine and methionine metabolism without optimizing the feedback, and (4) at the pathophysiological state attained after optimizing the feedback for enzyme deficiencies. In the enzyme deficient model, the impulse response oscillated and lasted longer than that in the physiological state. These changes appeared even in the species on other branched pathways. The singular value was elevated in the enzyme deficient state. By optimizing the feedback, all the impulse responses in the enzyme deficient state recovered to nearly those in the normal physiological state. Similarly, the transient response and the singular value in the enzyme deficient state recovered to nearly the normal physiological values. We elucidated the numerical value of the feedback gain for this optimization. The present analysis is useful for the evaluation of the integrated properties of amino acid metabolism and the optimization technique is potentially of use for determining a treatment course for congenital metabolic enzyme deficiencies. (C) 1998 Elsevier Science Ireland Ltd. All rights reserved. [References: 55]
机译:我们打算阐明氨基酸代谢的综合数学模型,并提出一种用于优化治疗由先天性酶缺乏引起的代谢紊乱的系统。我们的分析集中于从天冬酰胺酸到异亮氨酸,蛋氨酸和赖氨酸的代谢途径。生化物质浓度的变化速率表示为21个线性速率方程。我们从报告的实验数据中获得了速率常数和反馈幅度。线性系统分析表明,所研究的代谢系统稳定但无法控制。这些特性对反馈量的变化不敏感。为了显示优化反馈的效果,以使其最小化物质浓度和控制输入的平方,我们分析了四种情况下物质的脉冲响应,瞬态响应和系统的奇异值; (1)在没有优化反馈的生理状态下;(2)在优化反馈后达到的生理状态下;(3)在没有优化反馈的情况下在赖氨酸和蛋氨酸代谢的酶缺乏状态下达到的病理生理状态;以及(4 ),针对酶缺乏症优化反馈后达到的病理生理状态。在酶缺乏模型中,冲激反应的振荡和持续时间要长于生理状态。这些变化甚至出现在其他分支途径的物种中。在酶缺乏状态下,奇异值升高。通过优化反馈,酶缺乏状态下的所有冲激响应几乎恢复到正常生理状态下的冲激响应。类似地,在酶缺陷状态下的瞬态响应和奇异值恢复到接近正常的生理值。我们阐明了此优化的反馈增益的数值。本分析可用于评估氨基酸代谢的综合特性,并且该优化技术可能可用于确定先天性代谢酶缺乏症的治疗过程。 (C)1998 Elsevier Science Ireland Ltd.保留所有权利。 [参考:55]

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