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Does the Gut Microbiota Influence Immunity and Inflammation in Multiple Sclerosis Pathophysiology?

机译:肠道菌群会影响多发性硬化症病理生理学中的免疫和炎症吗?

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摘要

Aim. Evaluation of the impact of gut microflora on the pathophysiology of MS. Results . The etiopathogenesis of MS is not fully known. Gut microbiota may be of a great importance in the pathogenesis of MS, since recent findings suggest that substitutions of certain microbial population in the gut can lead to proinflammatory state, which can lead to MS in humans. In contrast, other commensal bacteria and their antigenic products may protect against inflammation within the central nervous system. The type of intestinal flora is affected by antibiotics, stress, or diet. The effects on MS through the intestinal microflora can also be achieved by antibiotic therapy and Lactobacillus . EAE, as an animal model of MS, indicates a strong influence of the gut microbiota on the immune system and shows that disturbances in gut physiology may contribute to the development of MS. Conclusions. The relationship between the central nervous system, the immune system, and the gut microbiota relates to the influence of microorganisms in the development of MS. A possible interaction between gut microbiota and the immune system can be perceived through regulation by the endocannabinoid system. It may offer an opportunity to understand the interaction comprised in the gut-immune-brain axis.
机译:目标。评估肠道菌群对MS病理生理的影响。结果。 MS的病因尚不完全清楚。肠道菌群可能在MS的发病机理中非常重要,因为最近的发现表明,肠道中某些微生物种群的替代会导致促炎状态,从而导致人类MS。相反,其他共生细菌及其抗原性产物可预防中枢神经系统内的炎症。肠道菌群的类型受抗生素,压力或饮食的影响。通过肠道菌群对MS的影响也可以通过抗生素和乳酸菌来达到。 EAE作为MS的动物模型,表明肠道菌群对免疫系统有强烈影响,并表明肠道生理紊乱可能有助于MS的发展。结论。中枢神经系统,免疫系统和肠道菌群之间的关系与微生物在MS发生过程中的影响有关。通过内源性大麻素系统的调节可以感知肠道菌群与免疫系统之间可能的相互作用。它可能会提供一个机会,以了解肠道免疫脑轴中包含的相互作用。

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