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首页> 外文期刊>Bioresources and Bioprocessing >Dissolved oxygen control strategy for improvement of TL1-1 production in submerged fermentation by Daldinia eschscholzii
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Dissolved oxygen control strategy for improvement of TL1-1 production in submerged fermentation by Daldinia eschscholzii

机译:溶解氧控制策略可提高埃氏疟原虫深层发酵中TL1-1的产量

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Background: 2,3-Dihydro-5-hydroxy-2-methylchromen-4-one (TL1-1) is a phenolic compound with significant antifungal and anti-cancer activities produced by Daldinia eschscholzii (D. eschscholzii). However, studies have rarely been reported on the fermentation process of D. eschscholzii due to the urgent demand for its pharmaceutical researches and applications. Results: In this work, the optimal fermentation medium for improved TL1-1 yield was first obtained in a shake flask. As the fermentation process was scaling up, the marked effects of dissolved oxygen (DO) on cell growth and TL1-1 biosynthesis were observed and confirmed. Controlling a suitable DO level by the adjustment of agitation speed and aeration rate remarkably enhanced TL1-1 production in a lab-scale bioreactor. Moreover, the fermentation of D. eschscholzii was successfully applied in 500-L bioreactor, and TL1-1 production has achieved 873.63 mg/L, approximately 15.4-fold than its initial production (53.27 mg/L). Conclusions: Dissolved oxygen control strategy for enhancing TL1-1 production was first proposed. Furthermore, control of the appropriate DO level has successfully performed for improving TL1-1 yield and scale-up of D. eschscholzii fermentation process.
机译:背景:2,3-二氢-5-羟基-2-甲基铬-4-(TL1-1)是由Daldinia eschscholzii(D. eschscholzii)产生的具有显着抗真菌和抗癌活性的酚类化合物。但是,由于迫切需要对埃希氏菌的药物研究和应用进行研究,因此很少有报道。结果:在这项工作中,首先在摇瓶中获得了用于提高TL1-1产量的最佳发酵培养基。随着发酵过程的扩大,观察并确认了溶解氧(DO)对细胞生长和TL1-1生物合成的显着影响。通过调节搅拌速度和曝气速率来控制合适的溶解氧水平,可显着提高实验室规模的生物反应器中TL1-1的产量。此外,埃希氏菌的发酵已成功应用于500 L生物反应器中,TL1-1的产量已达到873.63 mg / L,约为其初始产量(53.27 mg / L)的15.4倍。结论:提出了提高TL1-1产量的溶解氧控制策略。此外,已经成功地进行了适当的DO水平的控制以提高TL1-1产量和埃希氏菌发酵工艺的规模化。

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