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Dynamic metabolic flux analysis using a convex analysis approach: Application to hybridoma cell cultures in perfusion

机译:使用凸分析方法的动态代谢通量分析:在灌注中杂交瘤细胞培养中的应用

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In recent years, dynamic metabolic flux analysis (DMFA) has been developed in order to evaluate the dynamic evolution of the metabolic fluxes. Most of the proposed approaches are dedicated to exactly determined or overdetermined systems. When an underdetermined system is considered, the literature suggests the use of dynamic flux balance analysis (DFBA). However the main challenge of this approach is to determine an appropriate objective function, which remains valid over the whole culture. In this work, we propose an alternative dynamic metabolic flux analysis based on convex analysis, DMFCA, which allows the determination of bounded intervals for the fluxes using the available knowledge of the metabolic network and information provided by the time evolution of extracellular component concentrations. Smoothing splines and mass balance differential equations are used to estimate the time evolution of the uptake and excretion rates from this experimental data. The main advantage of the proposed procedure is that it does not require additional constraints or objective functions, and provides relatively narrow intervals for the intracellular metabolic fluxes. DMFCA is applied to experimental data from hybridoma HB58 cell perfusion cultures, in order to investigate the influence of the operating mode (batch and perfusion) on the metabolic flux distribution. Biotechnol. Bioeng. 2016;113: 1102-1112. (c) 2015 Wiley Periodicals, Inc.
机译:近年来,已经开发了动态代谢通量分析(DMFA),以评估代谢通量的动态演变。大多数提议的方法专用于精确确定或超确定的系统。当考虑一个不确定的系统时,文献建议使用动态通量平衡分析(DFBA)。但是,这种方法的主要挑战是确定适当的目标函数,该目标函数在整个文化中仍然有效。在这项工作中,我们提出了一种基于凸分析DMFCA的替代动态代谢通量分析,该方法可以使用代谢网络的可用知识以及细胞外组分浓度随时间变化提供的信息来确定通量的有界区间。平滑样条曲线和质量平衡微分方程用于根据此实验数据估算吸收速率和排泄速率的时间演变。所提出的程序的主要优点是它不需要额外的约束或目标功能,并且为细胞内代谢通量提供了相对窄的间隔。为了研究操作模式(分批和灌注)对代谢通量分布的影响,将DMFCA应用于杂交瘤HB58细胞灌注培养的实验数据。生物技术。生恩2016; 113:1102-1112。 (c)2015年威利期刊有限公司

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