Modelling Kinetics in Intestinal Compartment of Human Body as a Function of Applied Probiotics

M. Bošnjak, Zrinka Alfirevi, Igor Alfirevi, I. Kosalec
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引用次数: 3

Abstract

Modelling Kinetics in Intestinal Compartment of Human Body as a Function of Applied Probiotics Antibiotic treatments of human body microbial infections are frequently accompanied with a series of side effects which require adequate actions. This work refers to mathematical modelling of process states in a human body appearing during infection, its treatment with antibiotics and consequent application of probiotics. A mathematical model composed of 28 differential equations is being applied to describe a) pharmacokinetics of antibiotic transfer and action, human body viability changes, probiotics transit and changes in intestinal microbiota, b) kinetics of pathogenic microbial infection and infected organism immunity development, and c) intestinal tumor growth kinetics. Computer simulation has been applied to test the adequacy of applied mathematical model. Results of computer simulations expressed graphically and in tables, confirm the model adequacy for explaining process events connected with human body infections and consequent antibiotics and probiotics treatments.
应用益生菌对人体肠腔的模拟动力学研究
益生菌作用下人体肠道动力学模型的建立抗生素治疗人体微生物感染往往伴随着一系列副作用,需要采取适当的措施。这项工作是指在感染期间出现的人体过程状态的数学建模,用抗生素治疗和随后的益生菌应用。用28个微分方程组成的数学模型描述了A)抗生素转移和作用的药代动力学、人体活力变化、益生菌转运和肠道菌群变化、b)病原微生物感染动力学和被感染生物免疫发育、c)肠道肿瘤生长动力学。通过计算机仿真来检验应用数学模型的充分性。计算机模拟的结果以图形和表格的形式表示,证实了模型的充分性,可以解释与人体感染和随后的抗生素和益生菌治疗有关的过程事件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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