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Modelling of a hybrid culture system with a stationary layer of liquid perfluorochemical applied as oxygen carrier

机译:液态全氟化物固定层用作氧气载体的混合培养系统的建模

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A mathematical model of a hybrid culture system supported with a stationary layer of liquid perfluorochemical (PFC) as a source of O2 for cells which grow in the aqueous phase of culture medium has been developed and discussed. The two-substrate Monod kinetics without inhibition effects, i.e. the Tsao-Hanson equation, has been assumed to characterise the biomass growth. The Damk?hler number which relates the growth rate to the mass transfer effects has been used to appraise the regime (i.e. diffusion-limited or kinetics) of the whole process. The proposed model predicted accurately previously published data on the submerged batch cultures of Nicotiana tabacum BY-2 heterotrophic cells performed in a culture system supported with a stationary layer of hydrophobic perfluorodecalin as a liquid O2 carrier. Estimated values of the parameters of the model showed that the process proceeded in the kinetics regime and the growth kinetics, not the effects of the mass transfer between aqueous phase and liquid PFC, had essential influence on the growth of biomass.
机译:已经开发并讨论了混合培养系统的数学模型,该系统以液态全氟化物(PFC)的固定层作为O2来源,用于在培养基水相中生长的细胞。假设没有抑制作用的两底物Monod动力学,即Tsao-Hanson方程,可以表征生物量的增长。将增长率与传质效应相关的Damkhhler数已用于评估整个过程的状态(即扩散限制或动力学)。所提出的模型可以准确预测先前发表的关于烟草BY-2异养细胞的水下分批培养数据,该数据是在固定有疏水性全氟萘烷作为液体O2载体的培养系统中进行的。模型参数的估计值表明,该过程在动力学过程中进行,并且生长动力学对生物量的生长具有重要影响,而不是水相和液体PFC之间的传质的影响。

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