S J Franks, J L Dunster, S R Carding, J M Lord, M Hewison, P C Calder, J R King
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引用次数: 0
摘要
肠道微生物群在人类健康和疾病中发挥着至关重要的作用,它们能维持新陈代谢和免疫/炎症健康、合成必需的维生素和氨基酸以及维持肠道屏障的完整性。本文旨在建立一个数学模型,以描述微生物群、维生素 D/维生素 D 受体(VDR)途径、上皮屏障和免疫反应之间复杂的相互作用,从而更好地理解补充益生菌和维生素 D 的效果。我们提出了一个常微分方程系统,它决定了肠道细菌种群、上皮细胞和免疫细胞中 VDR:1,25(OH)2D 复合物的浓度、上皮屏障和免疫反应的时间演变。该模型显示,服用益生菌和/或维生素 D 可上调 VDR 复合物,从而增强屏障功能并防止肠道炎症。该模型还表明,联合补充比单独补充更有优势。我们探讨了炎症对共生菌和致病菌种群以及维生素 D/VDR 通路的影响,并讨论了根据建模结果收集更多实验数据的价值。
Modelling the influence of vitamin D and probiotic supplementation on the microbiome and immune response.
The intestinal microbiota play a critical role in human health and disease, maintaining metabolic and immune/inflammatory health, synthesising essential vitamins and amino acids and maintaining intestinal barrier integrity. The aim of this paper is to develop a mathematical model to describe the complex interactions between the microbiota, vitamin D/vitamin D receptor (VDR) pathway, epithelial barrier and immune response in order to understand better the effects of supplementation with probiotics and vitamin D. This is motivated by emerging data indicating the beneficial effects of vitamin D and probiotics individually and when combined. We propose a system of ordinary differential equations determining the time evolution of intestinal bacterial populations, concentration of the VDR:1,25(OH)2D complex in epithelial and immune cells, the epithelial barrier and the immune response. The model shows that administration of probiotics and/or vitamin D upregulates the VDR complex, which enhances barrier function and protects against intestinal inflammation. The model also suggests co-supplementation to be superior to individual supplements. We explore the effects of inflammation on the populations of commensal and pathogenic bacteria and the vitamin D/VDR pathway and discuss the value of gathering additional experimental data motivated by the modelling insights.