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Economic Analysis of Pilot-Scale Production of B-Phycoerythrin

机译:B-藻红蛋白中试生产的经济分析

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beta-Phycoerythrin is a color protein with several applications, from food coloring to molecular labeling. Depending on the application, different purity is required, affecting production cost and price. Different production and purification strategies for B-phycoerythrin have been developed, the most studied are based on the production using Porphyridium cruentum and purified using chromatographic techniques or aqueous two-phase systems. The use of the latter can result in a less expensive and intensive recovery of the protein, but there is lack of a proper economic analysis to study the effect of using aqueous two-phase systems in a scaled-up process. This study analyzed the production of B-Phycoerythrin using real data obtained during the scale-up of a bioprocess using specialized software (BioSolve, Biopharm Services, UK). First, a sensitivity analysis was performed to identify critical parameters for the production cost, then a Monte Carlo analysis to emulate real processes by adding uncertainty to the identified parameters. Next, the bioprocess was analyzed to determine its financial attractiveness and possible optimization strategies were tested and discussed. Results show that aqueous two-phase systems retain their advantages of low cost and intensive recovery (54.56%); the costs of production per gram calculated (before titer optimization: US$15,709 and after optimization: US$ 2,374) allowed to obtain profit (in the range of US$ millions in a 10-year period) for a potential company taking this production method by comparing the production cost against commercial prices. The bioprocess analyzed is a promising and profitable method for the generation of a highly purified B-phycoerythrin. (C) 2016 American Institute of Chemical Engineers
机译:β-藻红蛋白是一种彩色蛋白质,具有从食用色素到分子标记的多种应用。根据应用,需要不同的纯度,从而影响生产成本和价格。已经开发出不同的B-藻红蛋白生产和纯化策略,研究最多的是基于使用克鲁氏卟啉菌的生产,并使用色谱技术或含水两相系统进行纯化。后者的使用可以降低蛋白质的回收成本,降低成本,但缺乏适当的经济分析来研究在放大工艺中使用水相两相系统的效果。这项研究使用专业软件(BioSolve,Biopharm Services,UK),使用在生物工艺放大过程中获得的真实数据分析了B-藻红蛋白的生产。首先,进行敏感性分析以识别生产成本的关键参数,然后进行蒙特卡洛分析以通过向所识别的参数添加不确定性来模拟实际过程。接下来,分析生物过程以确定其财务吸引力,并测试和讨论了可能的优化策略。结果表明,水性两相系统保留了低成本和高回收率的优势(54.56%);计算出的每克生产成本(滴定度优化前:15,709美元,优化后:2,374美元),可以使一家采用这种生产方法的潜在公司获利(十年内在数百万美元范围内)比较生产成本与商业价格。分析的生物过程是产生高纯度B-藻红蛋白的一种有前途且有利可图的方法。 (C)2016美国化学工程师学会

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