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在搅拌容器中培养植物细胞:叶轮设计的影响。

Cultivation of plant cells in a stirred vessel: effect of impeller design.

机构信息

Department of Chemical Engineering, Washington State University, Pullman, Washington 99164, USA.

出版信息

Biotechnol Bioeng. 1990 Feb 5;35(3):296-304. doi: 10.1002/bit.260350311.

Abstract

Suspension cultures of Nicotiana tabacum were grown in a batch fermentor using different agitation systems. The effects of the impeller type, size, and agitation speed on the productivity of cell mass and secondary metabolites (phenolics) have been investigated. The use of a large, flat-bladed impeller (diameter 7.6 cm; width 14.0 cm) improved culture growth significantly over systems using a regular, flat-bladed impeller (diameter 5.6 cm; width 1.5 cm). An impeller of the same dimensions as the 14.0-cm-wide, large, flat-bladed impeller with sail cloth blades yielded a higher maximum growth rate in the exponential phase but resulted in a longer lag phase. Overall (intracellular and extracellular) phenolics concentration showed a direct relationship to culture growth rate whereas extracellular concentrations were a function of agitation conditions. Power consumption and flow pattern studies were also completed to further characterize the different impellers tested.

摘要

悬浮培养的烟草在分批发酵罐中使用不同的搅拌系统进行培养。研究了搅拌器类型、尺寸和搅拌速度对细胞质量和次生代谢产物(酚类化合物)产量的影响。使用大的、平叶片搅拌器(直径 7.6 厘米;宽 14.0 厘米)比使用常规的平叶片搅拌器(直径 5.6 厘米;宽 1.5 厘米)显著提高了培养物的生长。具有帆布叶片的与 14.0 厘米宽的大平叶片搅拌器相同尺寸的搅拌器在指数期产生了更高的最大生长速率,但导致更长的迟滞期。总体(细胞内和细胞外)酚类浓度与培养物生长速率呈直接关系,而细胞外浓度则是搅拌条件的函数。还完成了功率消耗和流动模式研究,以进一步表征所测试的不同搅拌器。

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