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Development and optimization of a new culture media using extruded bean as nitrogen source

机译:以挤压豆为氮源的新型培养基的开发与优化

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Graphical abstract Display Omitted Abstract The composition of a culture medium is one of the most important parameters to be analyzed in biotechnological processes with industrial purposes, because around 30–40% of the production costs were estimated to be accounted for the cost of the growth medium [1]. Since medium optimization using a one-factor-at-a-time approach is time-consuming, expensive, and often leads to misinterpretation of results, statistical experimental design has been applied to medium optimization for growth and metabolite production [2–5]. In this scenario, the use of mixture design to develop a culture medium containing a cheaper nitrogen source seems to be more appropriate and simple. In this sense, the focus of this work is to present a detailed description of the steps involved in the development of a optimized culture medium containing extruded bean as nitrogen source. ? In a previous work we tested a development of new culture media based on the composition of YPD medium, aiming to reduce bioprocess costs as well as to improve the biomass production and heterologous expression. ? The developed medium was tested for growth of Saccharomyces cerevisiae and Pichia pastoris (GS 115). ? The use of culture media containing extruded bean as sole nitrogen source showed better biomass production and protein expression than those observed in the standard YPD medium.
机译:图形摘要显示省略摘要培养基的组成是在具有工业用途的生物技术过程中要分析的最重要的参数之一,因为估计约有30–40%的生产成本占生长培养基的成本[1]。由于使用一次一因素方法进行培养基优化非常耗时,昂贵且经常导致对结果的误解,因此统计实验设计已应用于培养基优化中的生长和代谢产物生产[2-5]。在这种情况下,使用混合物设计开发含有较便宜氮源的培养基似乎更为合适和简单。从这个意义上讲,这项工作的重点是对开发包含挤压豆作为氮源的优化培养基的开发步骤进行详细说明。 ?在以前的工作中,我们测试了基于YPD培养基组成的新型培养基的开发,旨在降低生物工艺成本以及提高生物量生产和异源表达。 ?测试所开发的培养基的酿酒酵母和巴斯德毕赤酵母(GS 115)的生长。 ?与标准YPD培养基相比,使用含有膨化豆类作为唯一氮源的培养基显示出更好的生物量生产和蛋白质表达。

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