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Enhanced phenylpyruvic acid production with Proteus Vulgaris by optimizing of the fermentation medium

机译:通过优化发酵培养基,提高了寻常变形杆菌的生产苯丙酮酸的能力

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摘要

Alpha keto acids are important food additives, which commonly produced by microbial deamination of amino acids. In this study, production of phenylpyruvic acid (PPA), which is the alpha keto acid of phenylalanine was enhanced in 2-l bench scale bioreactors by optimizing of fermentation medium composition using the Box-Behnken Response Surface Methodology (RSM). Optimum glucose, yeast extract, and phenylalanine concentrations were determined to be 119.4 g 1, 3.7 g 1, and 14.8 g 1, respectively, for PPA production, and 163.8 g 1, 10.8 g 1, and 9.8 g 1, respectively, for biomass production. Under these optimum conditions, PPA concentration was enhanced to 1349 mg 1, which was 28% and 276% higher than the unoptimized bioreactor and shake-flask fermentations, respectively. Moreover, P. vulgaris biomass concentration was optimized at 4.36 g 1, which was 34% higher than under the unoptimized bioreactor condition. Overall, this study demonstrated that optimization of the fermentation media improved PPA concentration and biomass production in bench scale bioreactors compared to previous studies in the literature and sets the stage for scale up to industrial production.ud
机译:α-酮酸是重要的食品添加剂,通常通过氨基酸的微生物脱氨来生产。在这项研究中,通过使用Box-Behnken响应表面方法(RSM)优化发酵培养基的组成,在2-l台式规模的生物反应器中提高了苯丙酮酸(PPA)(即苯丙氨酸的α酮酸)的生产。确定生产PPA的最佳葡萄糖,酵母提取物和苯丙氨酸的最佳浓度分别为119.4 g 1、3.7 g 1和14.8 g 1,对于生物质分别为163.8 g 1、10.8 g 1和9.8 g 1生产。在这些最佳条件下,PPA浓度提高到1349 mg 1,分别比未优化的生物反应器和摇瓶发酵分别高28%和276%。此外,寻常型毕赤酵母生物量浓度优化为4.36 g 1,比未优化的生物反应器条件下高34%。总的来说,这项研究表明,与文献中先前的研究相比,发酵培养基的优化改善了台式生物反应器中PPA的浓度和生物量的产生,并为规模化工业生产奠定了基础。

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