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Design of a Novel Automated Methanol Feed System for Pilot-Scale Fermentation of Pichia pastoris

机译:新型毕赤酵母自动发酵甲醇进料系统的设计

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Large-scale fermentation of Pichia pastoris requires a large volume of methanol feed during the induction phase. However, a large volume of methanol feedris difficult to use in the processing suite because of the inconvenience of constant monitoring, manual manipulation steps, and fire and explosion hazards. To optimize and improve safety of the methanol feed process, a novel automated methanol feed system has been designed and implemented for industrial fermentation of P. pastoris. Details of the design of the methanol feed system are described. The main goals of the design were to automate the methanol feed process and to minimize the hazardous risks associated with storing and handling large quantities of methanol in the processing area. The methanol feed system is composed of two main components: a bulk feed (BF) system and up to three portable process feed (PF) systems. The BF system automatically delivers methanol from a central location to the portable PF system. The PF system provides precise flow control of linear, step, or exponential feed of methanol to the fermenter. Pilot-scale fermentations with linear and exponential methanol feeds were conducted using two Mut~+ (methanol utilization plus) strains, one expressing a recombinant therapeutic protein and the other a monoclonal antibody. Results show that the methanol feed system is accurate, safe, and efficient. The feed rates for both linear and exponential feed methods were within ±5% of the set points, and the total amount of methanol fed was within 1% of the targeted volume.
机译:巴斯德毕赤酵母的大规模发酵在诱导阶段需要大量的甲醇进料。但是,由于不方便进行持续监控,手动操作步骤以及火灾和爆炸危险,因此很难在处理套件中使用大量甲醇原料。为了优化和提高甲醇进料工艺的安全性,已经设计并实施了一种新型的自动化甲醇进料系统,用于巴斯德毕赤酵母的工业发酵。描述了甲醇进料系统的设计细节。该设计的主要目标是使甲醇进料过程自动化,并最大程度地减少与在加工区域存储和处理大量甲醇相关的危险。甲醇进料系统由两个主要组件组成:散装进料(BF)系统和最多三个便携式工艺进料(PF)系统。高炉系统自动将甲醇从中央位置输送到便携式PF系统。 PF系统可精确控制甲醇向发酵罐的线性,步进或指数进料的流量。使用两种Mut〜+(甲醇利用加)菌株进行线性和指数甲醇进料的中试发酵,一种菌株表达重组治疗性蛋白,另一种表达单克隆抗体。结果表明,甲醇进料系统准确,安全,高效。线性和指数进料方法的进料速度均在设定值的±5%之内,甲醇的进料总量在目标体积的1%之内。

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