Department of Biology and Biological Engineering, Chalmers University of Technology, Kemivägen 10, 41296 Gothenburg, Sweden.
The Wallenberg Laboratory, Department of Molecular and Clinical Medicine, University of Gothenburg, 41345 Gothenburg, Sweden.
Cell Metab. 2015 Aug 4;22(2):320-31. doi: 10.1016/j.cmet.2015.07.001.
The human gut microbiome is known to be associated with various human disorders, but a major challenge is to go beyond association studies and elucidate causalities. Mathematical modeling of the human gut microbiome at a genome scale is a useful tool to decipher microbe-microbe, diet-microbe and microbe-host interactions. Here, we describe the CASINO (Community And Systems-level INteractive Optimization) toolbox, a comprehensive computational platform for analysis of microbial communities through metabolic modeling. We first validated the toolbox by simulating and testing the performance of single bacteria and whole communities in vitro. Focusing on metabolic interactions between the diet, gut microbiota, and host metabolism, we demonstrated the predictive power of the toolbox in a diet-intervention study of 45 obese and overweight individuals and validated our predictions by fecal and blood metabolomics data. Thus, modeling could quantitatively describe altered fecal and serum amino acid levels in response to diet intervention.
人类肠道微生物组与各种人类疾病有关,但主要的挑战是超越关联研究并阐明因果关系。在基因组范围内对人类肠道微生物组进行数学建模是破译微生物-微生物、饮食-微生物和微生物-宿主相互作用的有用工具。在这里,我们描述了 CASINO(社区和系统水平交互优化)工具箱,这是一个通过代谢建模分析微生物群落的综合计算平台。我们首先通过模拟和测试体外单个细菌和整个群落的性能来验证该工具箱。我们专注于饮食、肠道微生物群和宿主代谢之间的代谢相互作用,在 45 名肥胖和超重个体的饮食干预研究中展示了该工具包的预测能力,并通过粪便和血液代谢组学数据验证了我们的预测。因此,模型可以定量描述饮食干预后粪便和血清氨基酸水平的变化。