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首页> 外文期刊>Preparative biochemistry & biotechnology: An international journal for rapid communication >Application of medium optimization tools for improving recombinant human interferon gamma production from Kluyveromyces lactis
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Application of medium optimization tools for improving recombinant human interferon gamma production from Kluyveromyces lactis

机译:中优化工具改善克鲁韦氏菌乳酸乳酸盐的重组人干扰素γ生产

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摘要

The present study is focused upon improving biomass of Kluyveromyces lactis cells expressing recombinant human interferon gamma (hIFN-), with the aim of augmenting hIFN- concentration using statistical and artificial intelligence approach. Optimization of medium components viz., lactose, yeast extract, and trace elements were performed with Box-Behnken design (BBD) and artificial neural network linked genetic algorithm (ANN-GA) for maximizing biomass of recombinant K. lactis (objective function). The studies resulted over 1.5-fold improvement in the biomass concentration in a medium composed of 80g/L lactose, 10.353g/L yeast extract, and 15mL/L trace elements as compared with initial biomass value. In the same study hIFN- concentration reached 881 mu g/L which was 2.28-fold higher as compared with initial hIFN- concentration obtained in unoptimized medium. Further the batch fermentation study displayed mixed growth associated kinetics with the maximum hIFN- production rate of 1.1mg/L. BBD and ANN-GA, both optimization techniques predicted a higher lactose concentration was clearly beneficial for augmenting K. lactis biomass which in turn increased hIFN- concentration.
机译:本研究专注于改善表达重组人干扰素γ(HIFN-)的Kluyveromyces乳酸乳糜细胞的生物量,目的是使用统计和人工智能方法增强HIFN-浓度。培养基组分的优化,乳糖,酵母提取物和痕量元素用Box-Behnken设计(BBD)和人工神经网络连接遗传算法(Ann-Ga)进行,用于最大化重组K.乳酸的生物质(目标函数)。与初始生物质值相比,由80g / L乳糖,10.353g / L酵母提取物和15ml / L痕量元素组成的培养基中的生物质浓度超过1.5倍的生物质浓度。在相同的研究中,与在未优化的培养基中获得的初始HIFN-浓度相比,HIFN-浓度达到881μg/ l,其比例更高。此外,分批发酵研究显示了混合生长相关动力学,最大的HIFN-生产率为1.1mg / l。 BBD和Ann-Ga,两种优化技术都预测了较高的乳糖浓度显着对增强K.乳酸生物质的乳糖浓度明显有益,其又增加了HIFN-浓度。

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