Willaert R, Baron G
Department of Chemical Engineering, Vrije Universiteit Brussel, Belgium.
Appl Microbiol Biotechnol. 1993 Jun;39(3):347-52. doi: 10.1007/BF00192090.
A 'microscope reactor' was used to study on-line the dynamics of gel immobilized cell systems. The applicability of the reactor is demonstrated by a study of the growth kinetics of Saccharomyces cerevisiae entrapped in 2% calcium alginate. The specific growth rates of single immobilized cells and free cells were measured. The growth of a microcolony in Ca-alginate was followed and the specific growth rate of the cells in the microcolony determined. A simple growth model was used to estimate the cell volume fraction of the yeast cells in the microcolony. As internal and external mass transfer limitations can be neglected and immobilized cell growth rates were found to be identical to those of free cells, one may conclude that immobilization does not influence cell growth under our experimental conditions.
使用“显微镜反应器”在线研究凝胶固定化细胞系统的动力学。通过对包埋在2%海藻酸钙中的酿酒酵母生长动力学的研究,证明了该反应器的适用性。测量了单个固定化细胞和游离细胞的比生长速率。跟踪了钙藻酸盐中微菌落的生长,并测定了微菌落中细胞的比生长速率。使用一个简单的生长模型来估计微菌落中酵母细胞的细胞体积分数。由于可以忽略内部和外部传质限制,并且发现固定化细胞的生长速率与游离细胞的生长速率相同,因此可以得出结论,在我们的实验条件下,固定化不会影响细胞生长。