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Comparison and Analysis of Objective Functions in Flux Balance Analysis

机译:通量平衡分析中目标函数的比较与分析

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Flux balance analysis (FBA) is currently one of the most important and used techniques for estimation of metabolic reaction rates (fluxes). This mathematical approach utilizes an optimization criterion in order to select a distribution of fluxes from the feasible space delimited by the metabolic reactions and some restrictions imposed over them, assuming that cellular metabolism is in steady state. Therefore, the obtained flux distribution depends on the specific objective function used. Multiple studies have been aimed to compare distinct objective functions at given conditions, in order to determine which of those functions produces values of fluxes closer to real data when used as objective in the FBA; in other words, what is the best objective function for modeling cell metabolism at a determined environmental condition. However, these comparative studies have been designed in very dissimilar ways, and in general, several factors that can change the ideal objective function in a cellular condition have not been adequately considered. Additionally, most of them have used only one dataset for representing one condition of cell growth, and different measuring techniques have been used. For these reasons, a rigorous study on the effect of factors such as the quantity of used data, the number and type of fluxes utilized as input data, and the selected classification of growth conditions, are required in order to obtain useful conclusions for these comparative studies, allowing limiting clearly the application range on any of those results.
机译:通量平衡分析(FBA)当前是估计代谢反应速率(通量)的最重要和最常用的技术之一。该数学方法利用优化标准,以便从可能的空间中选择通量的分布,该空间由代谢反应及其施加的一些限制来界定,假设细胞代谢处于稳定状态。因此,获得的通量分布取决于所使用的特定目标函数。为了在给定条件下比较不同的目标函数,进行了多项研究,以确定哪些函数在FBA中用作目标时产生的通量值更接近真实数据。换句话说,在确定的环境条件下为细胞代谢建模的最佳目标函数是什么。但是,这些比较研究的设计方式大相径庭,总的来说,尚未充分考虑可以改变细胞条件下理想目标功能的几个因素。另外,它们中的大多数仅使用一个数据集来表示一种细胞生长状况,并且已使用了不同的测量技术。由于这些原因,需要对使用数据的数量,用作输入数据的通量的数量和类型以及生长条件的选定分类等因素的影响进行严格的研究,以便为这些比较提供有用的结论。研究,可以明确限制任何这些结果的应用范围。

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