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Production of selenium enriched saccharomyces boulardii in pilot scale bioreactor

机译:在中试规模的生物反应器中生产富硒的酿酒酵母

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摘要

Selenium (Se) yeast has been widely used as a Se supplementation for humans. Supplementation with Se-enriched yeast in animal and human diet has been proven to have beneficial health effects. One major disadvantage in Se yeast production is the complexity in the yeast production. The objective of this study is to optimize cell mass production of Saccharomyces boulardii for Selenium enrichment process. Production of S. boulardii cell mass was optimized by using both classical and statistical approach. Production of high cell mass of S. boulardii was upscaled using a 16-L stirred tanked bioreactor in batch and fed-batch cultivation strategies where the fed batch bioreactor cultivation with complete medium showed the highest cell mass production at 34.16 g L- 1. During Se enrichment process, effects of different Se concentration and addition time were examined to maximize the Se absorption process by S. boulardii. The production of Se yeast was further upscaled in a 16-L stirred tank bioreactor in batch and fed batch cultivation strategies. In Se enrichment process 90 mg mL-1 Se which added at 16 hour of cultivation time for 24 hour was found to be best condition for Se enrichment in S. boulardii. The process was used in fed-batch cultivation in 16-L stirred tank bioreactor with full medium. Maximum cell biomass was at 24.97 g L-1 with 0.177 h-1 specific growth rate. The highest Se content was achieved at 41.65 µg g -1 with 1.78 µg g-1 h-1 absorption rate. Therefore it can concluded that addition of Se in late exponential phase of S. boulardii growth is the most suitable condition to minimize the inhibition effect on S. boulardii cell mass production and at the same time maximize the absorption of Se process.
机译:硒(Se)酵母已被广泛用作人类的硒补充剂。在动物和人类饮食中补充富硒酵母已被证明具有有益健康的作用。硒酵母生产的一个主要缺点是酵母生产的复杂性。这项研究的目的是为了优化富硒酵母菌的细胞产量。通过使用经典方法和统计方法,都优化了布拉氏链球菌细胞群的产生。使用16升搅拌罐式生物反应器分批和补料分批培养策略扩大了博拉氏链球菌高细胞量的生产,其中完全培养基的补料分批生物反应器培养显示最高的细胞量产量为34.16 g L-1。研究了富硒过程,不同硒浓度和添加时间的影响,以使布拉氏链霉菌最大程度地吸收硒。在16 L搅拌罐生物反应器中,分批和补料分批培养策略进一步提高了Se酵母的产量。在富硒过程中,发现在培养时间16小时,24小时内添加90 mg mL-1 Se是最佳的富硒条件。该过程用于在16升搅拌罐生物反应器中以完全培养基分批补料培养。最大细胞生物量为24.97 g L-1,比生长速率为0.177 h-1。最高硒含量为41.65 µg g -1,吸收率为1.78 µg g-1 h-1。因此可以得出结论,在S. boulardii生长的指数后期添加Se是最合适的条件,以最小化对S. boulardii细胞大量生产的抑制作用,同时使Se过程的吸收最大化。

著录项

  • 作者

    Ishak Amir Fuhaira;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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