Gut bacteria from multiple sclerosis patients modulate human T cells and exacerbate symptoms in mouse models.
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Gut microbiota from multiple sclerosis patients enables spontaneous autoimmune encephalomyelitis in mice.The Role of the Gut Microbiome in Multiple Sclerosis Risk and Progression: Towards Characterization of the "MS Microbiome".The Gut Microbiome in Neuromyelitis Optica.Microbiota Signaling Pathways that Influence Neurologic Disease.The Microbiome and Neurologic Disease: Past and Future of a 2-Way Interaction.The "Gut Feeling": Breaking Down the Role of Gut Microbiome in Multiple Sclerosis.Microbiome, Immunomodulation, and the Neuronal System.A gut feeling about multiple sclerosis.The role of salt for immune cell function and disease.Gut microbiota and probiotics: novel immune system modulators in myasthenia gravis?Why monkeys do not get multiple sclerosis (spontaneously): An evolutionary approach.Next-Generation Immune Repertoire Sequencing as a Clue to Elucidate the Landscape of Immune Modulation by Host-Gut Microbiome Interactions.Chronic stress promotes colitis by disturbing the gut microbiota and triggering immune system response.The microbiome and autoimmunity: a paradigm from the gut-liver axis.Neuroimmunology Research. A Report from the Cuban Network of Neuroimmunology.Interrelation of Diet, Gut Microbiome, and Autoantibody Production.Gut Microbiota Confers Resistance of Albino Oxford Rats to the Induction of Experimental Autoimmune Encephalomyelitis.Intestinal Microbiota Influences Non-intestinal Related Autoimmune Diseases.Gut Microbiota in Multiple Sclerosis and Experimental Autoimmune Encephalomyelitis: Current Applications and Future Perspectives.A Microbial Perspective on the Grand Challenges in Comparative Animal Physiology.Metabolic Dysfunction and Peroxisome Proliferator-Activated Receptors (PPAR) in Multiple Sclerosis.Dietary non-fermentable fiber prevents autoimmune neurological disease by changing gut metabolic and immune status.Focus on the gut-brain axis: Multiple sclerosis, the intestinal barrier and the microbiomeThe Gut-Microglia Connection: Implications for Central Nervous System DiseasesMultiple Sclerosis-Associated Changes in the Composition and Immune Functions of Spore-Forming BacteriaInflammation: the link between comorbidities, genetics, and Alzheimer's diseaseThe Gut Microbiome in Multiple Sclerosis: A Potential Therapeutic AvenueEmerging Role of Diet and Microbiota Interactions in NeuroinflammationThe Protective Role of in a Murine Model of Colitis-Associated Colorectal Cancer
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P2860
Gut bacteria from multiple sclerosis patients modulate human T cells and exacerbate symptoms in mouse models.
description
2017 nî lūn-bûn
@nan
2017年の論文
@ja
2017年論文
@yue
2017年論文
@zh-hant
2017年論文
@zh-hk
2017年論文
@zh-mo
2017年論文
@zh-tw
2017年论文
@wuu
2017年论文
@zh
2017年论文
@zh-cn
name
Gut bacteria from multiple scl ...... bate symptoms in mouse models.
@en
Gut bacteria from multiple scl ...... bate symptoms in mouse models.
@nl
type
label
Gut bacteria from multiple scl ...... bate symptoms in mouse models.
@en
Gut bacteria from multiple scl ...... bate symptoms in mouse models.
@nl
prefLabel
Gut bacteria from multiple scl ...... bate symptoms in mouse models.
@en
Gut bacteria from multiple scl ...... bate symptoms in mouse models.
@nl
P2093
P2860
P50
P356
P1476
Gut bacteria from multiple scl ...... rbate symptoms in mouse models
@en
P2093
Bruce A C Cree
Bryan B Yoo
Charlotte A Nelson
Elizabeth Crabtree-Hartman
Ilana Katz Sand
Justine W Debelius
Mar Gacias
Rachel Kanner
Rob Knight
Sarkis K Mazmanian
P2860
P304
10713-10718
P356
10.1073/PNAS.1711235114
P407
P577
2017-09-11T00:00:00Z