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Significantly enhanced production of acarbose in fed-batch fermentation with the addition of S-adenosylmethionine

机译:添加S-腺苷甲硫氨酸可显着提高分批补料发酵中阿卡波糖的产量

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摘要

Acarbose, a pseudo-oligosaccharide, is widely used clinically in therapies for non-insulin-dependent diabetes. In the present study, S-adenosylmethionine (SAM) was added to selected media in order to investigate its effect on acarbose fermentation by Actinopianes utahensis ZJB-08196. Acarbose titer was seen to increase markedly when concentrations of SAM were added over a period of time. The effects of glucose and maltose on the production of acarbose were investigated in both batch and fed-batch fermentation. Optimal acarbose production was observed at relatively low glucose levels and high maltose levels. Based on these results, a further fed-batch experiment was designed so as to enhance the production of acarbose. Fed-batch fermentation was carried out at an initial glucose level of 10 g/l and an initial maltose level of 60 g/l. Then, 12 h post inoculation, 100 μmol/l SAM was added. In addition, 8 g/l of glucose was added every 24 h, and 20 g/l of maltose was added at 96 h. By way of this novel feeding strategy, the maximum titer of acarbose achieved was 6,113 mg/l at 192 h. To our knowledge, the production level of acarbose achieved in this study is the highest ever reported.
机译:阿卡波糖(一种伪寡糖)在临床上广泛用于非胰岛素依赖型糖尿病的治疗。在本研究中,将S-腺苷甲硫氨酸(SAM)添加到选定的培养基中,以研究其对犹他猕猴桃(Actinopianes utahensis)ZJB-08196对阿卡波糖发酵的影响。当在一段时间内添加SAM浓度时,观察到阿卡波糖效价显着增加。在分批发酵和补料分批发酵中均研究了葡萄糖和麦芽糖对阿卡波糖生产的影响。在相对较低的葡萄糖水平和较高的麦芽糖水平下观察到最佳的阿卡波糖生产。基于这些结果,设计了进一步的分批补料实验,以提高阿卡波糖的产量。分批补料发酵的初始葡萄糖水平为10 g / l,初始麦芽糖水平为60 g / l。然后,在接种后12小时,添加100μmol/ l SAM。此外,每24小时添加8 g / l葡萄糖,并在96 h添加20 g / l麦芽糖。通过这种新颖的饲喂策略,在192 h达到的最大阿卡波糖效价为6,113 mg / l。据我们所知,该研究中阿卡波糖的生产水平是有史以来最高的。

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