Production of capsular polysaccharide from Escherichia coli K4 for biotechnological applications

被引:0
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作者
Donatella Cimini
Odile Francesca Restaino
Angela Catapano
Mario De Rosa
Chiara Schiraldi
机构
[1] Second University of Naples,Department of Experimental Medicine, Section of Biotechnology and Molecular Biology
来源
Applied Microbiology and Biotechnology | 2010年 / 85卷
关键词
K4; Capsular polysaccharide; Glycosaminoglycans; Chondroitin sulfate;
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学科分类号
摘要
The production of industrially relevant microbial polysaccharides has recently gained much interest. The capsular polysaccharide of Escherichia coli K4 is almost identical to chondroitin, a commercially valuable biopolymer that is so far obtained from animal tissues entailing complex and expensive extraction procedures. In the present study, the production of capsular polysaccharide by E. coli K4 was investigated taking into consideration a potential industrial application. Strain physiology was first characterized in shake flask experiments to determine the optimal culture conditions for the growth of the microorganism and correlate it to polysaccharide production. Results show that the concentration of carbon source greatly affects polysaccharide production, while the complex nitrogen source is mainly responsible for the build up of biomass. Small-scale batch processes were performed to further evaluate the effect of the initial carbon source concentration and of growth temperatures on polysaccharide production, finally leading to the establishment of the medium to use in following fermentation experiments on a bigger scale. The fed-batch strategy next developed on a 2-L reactor resulted in a maximum cell density of 56 gcww/L and a titre of capsular polysaccharide equal to 1.4 g/L, approximately ten- and fivefold higher than results obtained in shake flask and 2-L batch experiments, respectively. The release kinetics of K4 polysaccharide into the medium were also explored to gain insight into the mechanisms underlying a complex aspect of the strain physiology.
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页码:1779 / 1787
页数:8
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