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Variations in diet cause alterations in microbiota and metabolites that follow changes in disease severity in a multiple sclerosis model

机译:在多发性硬化症模型中饮食的变化会导致微生物群和代谢物的变化这些变化会随着疾病严重程度的变化而变化

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摘要

Multiple sclerosis (MS) is a metabolically demanding disease involving immune-mediated destruction of myelin in the central nervous system. We previously demonstrated a significant alteration in disease course in the experimental autoimmune encephalomyelitis (EAE) preclinical model of MS due to diet. Based on the established crosstalk between metabolism and gut microbiota, we took an unbiased sampling of microbiota, in the stool, and metabolites, in the serum and stool, from mice (Mus musculus) on the two different diets, the Teklad global soy protein-free extruded rodent diet (irradiated diet) and the Teklad sterilisable rodent diet (autoclaved diet). Within the microbiota, the genus Lactobacillus was found to be inversely correlated with EAE severity. Therapeutic treatment with Lactobacillus paracasei resulted in a significant reduction in the incidence of disease, clinical scores and the amount of weight loss in EAE mice. Within the metabolites, we identified shifts in glycolysis and the tricarboxylic acid cycle that may explain the differences in disease severity between the different diets in EAE. This work begins to elucidate the relationship between diet, microbiota and metabolism in the EAE preclinical model of MS and identifies targets for further study with the goal to more specifically probe the complex metabolic interaction at play in EAE that may have translational relevance to MS patients.
机译:多发性硬化症(MS)是一种需要代谢的疾病,涉及免疫介导的中枢神经系统髓磷脂的破坏。我们先前在饮食方面证明了MS的实验性自身免疫性脑脊髓炎(EAE)临床前模型在疾病进程中的重大改变。根据新陈代谢与肠道菌群之间已建立的串扰,我们采用两种不同饮食(Teklad全球大豆蛋白-)从小鼠(小家鼠)的粪便,血清和粪便中的代谢物,血清和粪便中进行了无偏见采样。免费挤压啮齿动物饮食(辐照饮食)和Teklad可灭菌啮齿动物饮食(高压灭菌饮食)。在菌群内,发现乳酸杆菌属与EAE严重程度呈负相关。用副干酪乳杆菌进行的治疗使EAE小鼠的疾病发生率,临床评分和体重减轻量显着降低。在代谢产物中,我们确定了糖酵解和三羧酸循环的变化,这可以解释EAE不同饮食之间疾病严重程度的差异。这项工作开始阐明MS的EAE临床前模型中的饮食,微生物群和代谢之间的关系,并确定了需要进一步研究的目标,目的是更具体地探讨可能与MS患者有翻译意义的EAE中复杂的代谢相互作用。

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