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Maximizing Recombinant Human Serum Albumin Production in a Mut(s) Pichia pastoris Strain

机译:最大化巴斯德毕赤氏酵母菌株中重组人血清白蛋白的产生

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Human serum albumin (HSA) is a cysteine rich molecule that is most abundant in human blood plasma. To remain viable in the market due to lower marketing costs for HSA, it is important to produce a large quantity in an economical manner by recombinant technology. The objective of this study was to maximize recombinant HSA (rHSA) production using a Mut(s) Pichia pastoris strain by fermentation process optimization. We evaluated the impact of process parameters on the production of rHSA, including induction cell density (wet cell weight, g/L) and the control of specific growth rate at induction. In this study, we demonstrated that induction cell density is a critical factor for high level production of rHSA under controlled specific growth rate. We observed higher specific productivities at higher induction cell densities (285 g/L) and at lower specific growth rates (0.0022-0.0024/h) during methanol induction phase, and achieved the broth titer of rHSA up to 10 g/L. The temperature shift from 24 to 28(o)C was effective to control the specific growth rate at low level (0.0024/h) during methanol induction phase while maintaining high specific productivity [0.0908 mg(rHSA)/(g(wcw) h)]. (c) 2014 American Institute of Chemical Engineers Biotechnol. Prog., 30:1488-1496, 2014
机译:人血清白蛋白(HSA)是富含半胱氨酸的分子,在人血浆中含量最高。为了通过降低HSA的营销成本而在市场上保持生存,重要的是通过重组技术以经济的方式大量生产。这项研究的目的是通过发酵工艺优化,利用巴斯德毕赤氏酵母菌株最大化重组HSA(rHSA)的产量。我们评估了工艺参数对rHSA产生的影响,包括诱导细胞密度(湿细胞重量,g / L)和诱导时比生长速率的控制。在这项研究中,我们证明诱导细胞密度是在受控的特定生长速率下高水平生产rHSA的关键因素。我们观察到在甲醇诱导期,在较高的诱导细胞密度(285 g / L)和较低的比生长速率(0.0022-0.0024 / h)下具有较高的比生产率,并且达到了10 g / L的rHSA肉汤滴度。在甲醇诱导阶段,温度从24℃转变为28℃可以有效地将比生长速率控制在较低水平(0.0024 / h),同时保持较高的比生产率[0.0908 mg(rHSA)/(g(wcw)h) ]。 (c)2014美国化学工程师学会生物技术学会。 Prog。,30:1488-1496,2014

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