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首页> 外文期刊>Biotechnology Progress >Biocalorimetric monitoring of glycoengineered P. pastoris cultivation for the production of recombinant huIFN alpha 2b: A quantitative study based on mixed feeding strategies
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Biocalorimetric monitoring of glycoengineered P. pastoris cultivation for the production of recombinant huIFN alpha 2b: A quantitative study based on mixed feeding strategies

机译:重组Huifnα2B生产甘油中P.甘油培养的生物植物培养:基于混合喂养策略的定量研究

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摘要

Real-time monitoring of glycoengineered Pichia pastoris by employing process analytical technology (PAT) tools is vital for gaining deeper insights into the therapeutic protein production process. The present study focuses on influence of mixed feed carbon substrates during the induction phases of glycoengineered P. pastoris cultivation, for recombinant human interferon alpha 2b (huIFN alpha 2b) production by employing calorimetric (biological heat rate, q( B)) and respirometric (oxygen uptake rate and carbon dioxide evolution rate) measurements. Mixed feed stream of carbon substrates (methanol + glycerol, methanol + sorbitol) at a predetermined "C-molar ratios" were added during the induction phases. Methanol- and sorbitol-based mixed feeding approach resulted in an improved huIFN alpha 2b titer of 288 mg/L by channeling of methanol predominantly towards an optimal functioning of AOX expression system. A stand-off between biomass yield YXSand biomass heat yield YQX coefficient, degree of reduction of methanol and its cosubstrate (glycerol and sorbitol) determines the fraction of carbon energy channeled toward biomass and protein production, under strict aerobic conditions. Calorespirometric monitoring and assessment of thermal yields enables a reliable prediction of process variables, leading to futuristic efficient PAT-based feed rate control.
机译:采用流程分析技术(PAT)工具对甘油工程的Pichia Pictoris的实时监测对于获得治疗蛋白质生产过程的更深层次的见解至关重要。本研究侧重于通过使用量热(生物热速率,Q(B))和呼吸方法对重组人干扰培养过程中混合馈送碳基材的影响。通过使用量热(生物热速率,Q(B))和呼吸(氧气吸收率和二氧化碳进化率测量。在感应相期间,加入在预定的“C摩尔比”下碳基材(甲醇+甘油,甲醇+山梨糖醇)的混合进料流。基于甲醇和山梨糖醇类的混合进料方法通过主要朝向AOX表达系统的最佳功能,通过甲醇引发甲醇的改进的HUIFNα2B滴度为288mg / L.生物质产量之间的脱扣yxsand生物量热产率YQX系数,甲醇的还原程度及其烯库(甘油和山梨糖醇)决定了在严格的有氧条件下朝向生物质和蛋白质产生的碳能量的级分。热量率的热量测量和评估能够可靠地预测过程变量,从而导致未来的有效的PAT型饲料速率控制。

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