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Computational Fluid Dynamics Modeling of Mass-Transfer Behavior in a Bioreactor for Hairy Root Culture. II. Analysis of Ultrasound-Intensified Process

机译:用于毛状根培养的生物反应器中传质行为的计算流体动力学建模。二。超声强化过程分析

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Recently, cichoric acid production from hairy roots of Echinacea purpurea was significantly improved by ultrasound stimulation in an airlift bioreactor. In this article, the possible mechanism on ultrasound-intensified hairy root culture of E. purpurea in the bioreactor was elucidated with the help of computational fluid dynamics (CFD) simulation, membrane permeability detection, dissolved oxygen concentration detection, confocal laser-scanning microscopy (LSM) observation, and phenylalanine ammonium lyase (PAL) activity analysis. The CFD model developed in Part I was used to simulate the hydrodynamics and oxygen mass transfer in hairy root bioreactor culture stimulated by ultrasound. A dynamic mesh model combined with a changing Schmidt number method was used for the simulation of the ultrasound field. Simulation results and experimental data illustrated that ultrasound intensified oxygen mass transfer in the hairy root clump, which subsequently stimulated root growth and cichoric acid biosynthesis. Ultrasound increased the hairy root membrane permeability, and a high root membrane permeability of 0.359 h~(-1) was observed at the bottom region in the bioreactor. LSM observation showed that the change in the membrane permeability recovered to normal in the further culture after ultrasound stimulation. PAL activity in the hairy roots was stimulated by ultrasound increase and was correlated well to cichoric acid accumulation in the hairy roots of E. purpurea.
机译:最近,在空运生物反应器中通过超声刺激显着改善了紫锥菊的毛状根中胆酸的产生。本文通过计算流体力学(CFD)模拟,膜通透性检测,溶解氧浓度检测,共聚焦激光扫描显微镜()阐明了生物反应器中超声波强化紫癜毛状根培养的可能机制。 LSM)观察和苯丙氨酸铵裂解酶(PAL)活性分析。第一部分中开发的CFD模型用于模拟超声刺激的毛状根生物反应器培养物中的流体动力学和氧气质量传递。动态网格模型结合变化的施密特数法用于超声场的仿真。仿真结果和实验数据表明,超声增强了毛状根团中的氧传递,继而刺激了根的生长和氯酸的生物合成。超声增加了毛状根膜的通透性,在生物反应器的底部观察到了高的0.359 h〜(-1)。 LSM观察表明,在超声刺激后的进一步培养中,膜通透性的变化恢复到正常。超声增加刺激了毛发根中的PAL活性,并与紫癜的毛发根中的柠檬酸积累密切相关。

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