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Impact of bioreactor scale on lovastatin biosynthesis by Aspergillus terreus ATCC 20542 in a batch culture

机译:分批培养中生物反应器规模对土曲霉ATCC 20542合成洛伐他汀的影响

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摘要

Biosynthesis of lovastatin (a polyketide metabolite of Aspergillus terreus) in bioreactors of different working volume was studied to indicate how the change of scale of the process influences the formation of this metabolite. The experiments conducted in shake flasks of 150 ml working volume allowed to obtain lovastatin titres at the level of 87.5 mg LOV l~(-1), when two carbon sources, namely lactose and glycerol were used. The application of the same components in a large stirred-tank bioreactor of 5.3-litre working volume caused a decrease of lovastatin production by 87% compared to the shake flask culture. The deficiency of nitrogen in this bioreactor did not favour the formation of lovastatin, in contrast to the small bioreactor of 1.95-litre working volume, in which lovastatin titres comparable to those in the shake flasks could be achieved, when organic nitrogen concentration was two-fold decreased. When the control of pH and/or pO2 was used simultaneously, an increase in lovastatin production was observed in the bioreactors. However, these results were still slightly lower than lovastatin titres obtained in the shake flasks.
机译:研究了在不同工作量的生物反应器中洛伐他汀(土曲霉的聚酮化合物)的生物合成,以表明工艺规模的变化如何影响该代谢物的形成。当使用两种碳源(乳糖和甘油)时,在150毫升工作体积的摇瓶中进行的实验可以使洛伐他汀的滴度达到87.5毫克LOV -1(-1)。与摇瓶培养相比,在工作容积为5.3升的大型搅拌釜式生物反应器中使用相同的成分可使洛伐他汀的产量降低87%。与1.95升工作体积的小型生物反应器相比,该生物反应器中氮的缺乏不利于洛伐他汀的形成,在这种情况下,当有机氮浓度为2时,洛伐他汀的滴度可达到摇瓶中的滴度。折叠减少。当同时使用pH和/或pO2控制时,在生物反应器中观察到洛伐他汀产量的增加。但是,这些结果仍略低于摇瓶中的洛伐他汀滴度。

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