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微囊化微生物细胞培养生长与代谢的微量热研究

Microcalorimetric study on the growth and metabolism of microencapsulated microbial cell culture.

作者信息

Ma J, Qi W T, Yang L N, Yu W T, Xie Y B, Wang W, Ma X J, Xu F, Sun L X

机构信息

Laboratory of Biomedical Material Engineering, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, 457 Zhongshan Road, Dalian 116023, China.

出版信息

J Microbiol Methods. 2007 Jan;68(1):172-7. doi: 10.1016/j.mimet.2006.07.007. Epub 2006 Aug 30.

Abstract

The rate of heat output is one of the suitable measurements of metabolic activity of the organism or its parts, down to the cellular or even the sub-cellular levels. In this paper, microcalorimetry was first applied to study the metabolic activity of microbial in both alginate-polylysine-alginate and alginate-chitosan-alginate microencapsulated cultures as well as in free non-encapsulated culture. The organisms used for the measurements were Escherichia coli and Saccharomyces cerevisiae. As a result of this work, it was found that, despite E. coli cell in free non-encapsulated culture has the highest metabolic rate due to the highest value of heat output, the proliferation of the cells terminates quickly with a lowest biomass formed. And we found also an obviously longer stationary phase in microencapsulated culture. As far as S. cerevisiae was concerned, it was found that there was also the highest value of heat output in free non-encapsulated culture, but the cell density was lower than that in microencapsulated culture. On account of the microcalorimetric and metabolic measurements, it can be concluded that more substrate can be used to convert to biomass in microencapsulated culture which means a higher biomass yield existed.

摘要

热输出速率是衡量生物体或其部分代谢活性的合适指标之一,甚至可以低至细胞或亚细胞水平。在本文中,微量热法首次被用于研究海藻酸钠-聚赖氨酸-海藻酸钠和海藻酸钠-壳聚糖-海藻酸钠微胶囊化培养物以及游离非胶囊化培养物中微生物的代谢活性。用于测量的生物体是大肠杆菌和酿酒酵母。这项工作的结果表明,尽管游离非胶囊化培养的大肠杆菌细胞由于热输出值最高而具有最高的代谢率,但其细胞增殖很快终止,形成的生物量最低。而且我们还发现微胶囊化培养中有明显更长的稳定期。就酿酒酵母而言,发现游离非胶囊化培养中的热输出值也最高,但细胞密度低于微胶囊化培养中的细胞密度。基于微量热法和代谢测量,可以得出结论,在微胶囊化培养中更多的底物可用于转化为生物量,这意味着存在更高的生物量产量。

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