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Investigation of Ca-alginate hydrogel rheological behaviour in conjunction with immobilized yeast cell growth dynamics

机译:藻酸钙水凝胶流变行为与固定化酵母细胞生长动力学的研究

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The rheological model is developed to elucidate the mechanism of Ca-alginate microbead deformation in the course of cell growth within.It is a complex process influenced by relaxation of the expanded polymer network inside a bead,and forces generated by cell growth inside the bead and interactions between solvent,network parts and cells as well.The resulting effects are measured experimentally by estimating isotropic volumetric deformations of beads with yeast cells as function of time and cell concentration per bead.The mathematical model of the process is developed based on a modified general Zener model with fractional derivatives.It is particularly suitable for incorporating effects of different nature also during different stages of such complex process development.The results of theoretical analyses using the model developed and comparison with experimental values obtained,indicate a high impact of partial decomposition,i.e.plastic response of polymer network inside a bead due to cell growth,on bead deformation.For comparison,corresponding deformation measurements and modelling were performed on the same network system exposed to swelling in the solvent,but without the cells.In this case elastic forces are dominant,indicating different mechanism of relaxation without the influence of cells,in agreement with previous conclusions.
机译:流变模型的建立是为了阐明钙藻酸盐微珠在细胞内生长过程中的变形机理。这是一个复杂的过程,受微珠内部聚合物网络膨胀的松弛,微珠内部细胞生长产生的力和通过估计酵母细胞的珠粒的各向同性体积变形随时间和每个珠粒细胞浓度的变化,通过实验测量所产生的效果,该过程的数学模型是基于改进的一般方法开发的带有分数导数的齐纳模型。它特别适用于在这种复杂过程开发的不同阶段也纳入不同性质的影响。使用该模型开发的理论分析结果与所获得的实验值进行比较,表明部分分解的影响很大,珠粒内聚合物网络的塑性响应是由于为了比较,在暴露于溶剂中溶胀的同一网络系统上进行了相应的变形测量​​和建模,但没有孔。在这种情况下,弹力占主导地位,表明不同的松弛机理不受影响的细胞,与以前的结论一致。

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