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首页> 外文期刊>Biotechnology and bioprocess engineering >Modelling and Simulation of Cell Growth Dynamics, Substrate Consumption, and Lactic Acid Production Kinetics of Lactococcus lactis
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Modelling and Simulation of Cell Growth Dynamics, Substrate Consumption, and Lactic Acid Production Kinetics of Lactococcus lactis

机译:乳酸乳球菌的细胞生长动力学,底物消耗和乳酸产生动力学的建模和仿真

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Lactococcus lactis species have been and still are extensively investigated due to their significant commercial importance. Current scientific research focuses on strains utilized in food industry, due to their multiple uses in food and beverages fabrication. Biomass of Lactococcus lactis is of great interest as well as the end products of its metabolism such as lactic acid and nisin. However their production is constantly challenged due to end product inhibition occurring during intensive propagation of the coccus in reactor systems. To successfully predict the behavior of the culture, the approach of combining mathematics with biology, ergo the development of an unstructured mathematical model, was taken. Although Luedeking and Piret is the model that has been extensively used to demonstrate growth in end-product inhibition cultures, its applicability is limited due to its dependance on the specific growth and product coefficients, particularly related to the culturing conditions used. To overcome these hurdles, a combination of the non competitive single product end inhibition Taylor and Hinselwood models was used, with the significance of this model laying in the fact that it offers a feasible alternative to the commonly used model of Luedeking and Piret for describing fermentation kinetics governed by end-product inhibitions. The fitting with the experimental values, in batch mode, was tested in terms of the coefficient of determination (R~2), having values 0.97 ~ 0.99 and suggesting a very good fitting with the experimental data. The model was further developed to achieve theoretical predictions of volumetric cell productivity in continuous and fed-batch mode of substrate feed in different culturring systems.
机译:乳酸乳球菌由于其重要的商业重要性已被并且仍被广泛研究。由于其在食品和饮料制造中的多种用途,当前的科学研究集中在食品工业中使用的菌株。乳酸乳球菌的生物质及其代谢的最终产物,如乳酸和乳酸链球菌素,引起了人们的极大兴趣。然而,由于在反应器系统中球菌的密集繁殖期间会产生终产物抑制作用,因此不断地挑战其生产。为了成功地预测文化的行为,采取了将数学与生物学相结合的方法,从而开发了非结构化数学模型。尽管Luedeking和Piret是已广泛用于证明最终产品抑制培养物中生长的模型,但由于其依赖于特定的生长和产物系数,特别是与所使用的培养条件有关,因此其适用性受到限制。为了克服这些障碍,使用了非竞争性单一产品最终抑制泰勒模型和欣塞尔伍德模型的组合,该模型的重要性在于,它为描述发酵提供了常用的路德金和皮雷特模型的可行替代方案受最终产物抑制作用的动力学。在确定系数(R〜2)的条件下,以批处理模式测试了与实验值的拟合,其值为0.97〜0.99,表明与实验数据的拟合效果非常好。进一步开发了该模型,以在不同培养系统中以连续和分批补料模式进料的情况下实现体积细胞生产率的理论预测。

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