Institute of Bioengineering, Zhejiang University of Technology, Hangzhou, Zhejiang 310014, China.
Biomed Res Int. 2013;2013:705418. doi: 10.1155/2013/705418. Epub 2013 Jan 22.
Commercial production of acarbose is exclusively via done microbial fermentation with strains from the genera of Actinoplanes. The addition of C7N-aminocyclitols for enhanced production of acarbose and concurrently reduced formation of impurity C by cultivation of A. utahensis ZJB-08196 in 500-mL shake flasks was investigated, and validamine was found to be the most effective strategy. Under the optimal conditions of validamine addition, acarbose titer was increased from 3560 ± 128 mg/L to 4950 ± 156 mg/L, and impurity C concentration was concurrently decreased from 289 ± 24 mg/L to 107 ± 29 mg/L in batch fermentation after 168 h of cultivation. A further fed-batch experiment coupled with the addition of validamine (20 mg/L) in the fermentation medium prior to inoculation was designed to enhance the production of acarbose. When twice feedings of a mixture of 6 g/L glucose, 14 g/L maltose, and 9 g/L soybean flour were performed at 72 h and 96 h, acarbose titer reached 6606 ± 103 mg/L and impurity C concentration was only 212 ± 12 mg/L at 168 h of cultivation. Acarbose titer and proportion of acarbose/impurity C increased by 85.6% and 152.9% when compared with control experiments. This work demonstrates for the first time that validamine addition is a simple and effective strategy for increasing acarbose production and reducing impurity C formation.
阿卡波糖的商业生产完全是通过放线菌属的菌株进行微生物发酵来实现的。本研究考察了在 500-mL 摇瓶中培养阿氏假囊酵母 ZJB-08196 时添加 C7N-氨基环糖醇以提高阿卡波糖产量并同时减少杂质 C 形成的情况,结果发现,使用 validamine 是最有效的策略。在添加 validamine 的最佳条件下,阿卡波糖的产量从 3560±128mg/L 增加到 4950±156mg/L,在培养 168 小时后分批发酵中,杂质 C 的浓度从 289±24mg/L 降低到 107±29mg/L。进一步设计了补料分批实验,并在接种前在发酵培养基中添加 validamine(20mg/L),以提高阿卡波糖的产量。当在 72 小时和 96 小时进行两次添加混合物(6g/L 葡萄糖、14g/L 麦芽糖和 9g/L 豆粉)的补料分批实验时,在培养 168 小时后,阿卡波糖的产量达到 6606±103mg/L,杂质 C 的浓度仅为 212±12mg/L。与对照实验相比,阿卡波糖的产量和阿卡波糖/杂质 C 的比例分别提高了 85.6%和 152.9%。本工作首次证明,添加 validamine 是提高阿卡波糖产量和减少杂质 C 形成的一种简单而有效的策略。