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首页> 外文期刊>Journal of Biotechnology >Ca-alginate hydrogel mechanical transformations--the influence on yeast cell growth dynamics
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Ca-alginate hydrogel mechanical transformations--the influence on yeast cell growth dynamics

机译:海藻酸钙水凝胶的机械转化-对酵母细胞生长动力学的影响

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摘要

A mathematical model was formulated to describe yeast cell growth within the Ca-alginate microbead during air-lift bioreactor cultivation. Model development was based on experimentally obtained data for the intra-bead cell concentration profile, after reached the equilibrium state, as well as, total yeast cell concentration per microbed and microbead volume as function of time. Relatively uniform cell concentration in the carrier matrix indicated that no internal nutrient diffusion limitations, but microenvironmental restriction, affected dominantly the dynamics of cell growth. Also interesting phenomenon of very different rates of cell number growth during cultivation is observed. After some critical time, the growth rate of cell colonies decreased drastically, but than suddenly increased again under all other experimental condition been the same. It is interpreted as disintegration of gel network and opening new free space for growth of cell clusters. These complex phenomena are modeled using the thermodynamical, free energy formalism. The particular form of free energy functional is proposed to describe various kinds of interactions, which affected the dynamics of cell growth and cause pseudo-phase transition of hydrogel. The good agreement of experimentally obtained data and model predictions are obtained. In that way the model provides both, the quantitative tools for further technological optimization of the process and deeper insight into dynamics of cell growth mechanism.
机译:建立了数学模型来描述气举生物反应器培养过程中Ca-藻酸盐微珠中酵母细胞的生长。模型的开发基于实验获得的珠内细胞浓度分布图数据,达到平衡状态后,以及每个微床的总酵母细胞浓度和微珠体积随时间变化。载体基质中相对均匀的细胞浓度表明,没有内部养分扩散限制,但微环境限制主要影响细胞生长的动力学。还观察到了有趣的现象,即在培养过程中细胞数量的增长率非常不同。在一定的临界时间后,在所有其他实验条件下,细胞集落的生长速度急剧下降,但是又突然增加。它被解释为凝胶网络的分解,并为细胞簇的生长打开了新的自由空间。这些复杂的现象是使用热力学,自由能形式主义建模的。提出了特定形式的自由能官能团来描述各种相互作用,这些相互作用影响细胞生长的动力学并引起水凝胶的假相转变。获得了实验获得的数据与模型预测的良好一致性。通过这种方式,该模型既提供了用于进一步优化工艺的定量工具,又提供了对细胞生长机制动力学的更深入了解。

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