脆弱类杆菌
生物
微生物学
FOXP3型
免疫系统
实验性自身免疫性脑脊髓炎
多发性硬化
离体
免疫学
人口
脱髓鞘病
体外
医学
抗生素
环境卫生
生物化学
作者
Javier Ochoa‐Repáraz,Daniel W. Mielcarz,Lauren Ditrio,Ashley Burroughs,Sakhina Begum-Haque,Suryasarathi Dasgupta,Dennis L. Kasper,Lloyd H. Kasper
出处
期刊:Journal of Immunology
[American Association of Immunologists]
日期:2010-09-04
卷期号:185 (7): 4101-4108
被引量:357
标识
DOI:10.4049/jimmunol.1001443
摘要
Abstract The importance of gut commensal bacteria in maintaining immune homeostasis is increasingly understood. We recently described that alteration of the gut microflora can affect a population of Foxp3+Treg cells that regulate demyelination in experimental autoimmune encephalomyelitis (EAE), the experimental model of human multiple sclerosis. We now extend our previous observations on the role of commensal bacteria in CNS demyelination, and we demonstrate that Bacteroides fragilis producing a bacterial capsular polysaccharide Ag can protect against EAE. Recolonization with wild type B. fragilis maintained resistance to EAE, whereas reconstitution with polysaccharide A-deficient B. fragilis restored EAE susceptibility. Enhanced numbers of Foxp3+Treg cells in the cervical lymph nodes were observed after intestinal recolonization with either strain of B. fragilis. Ex vivo, CD4+T cells obtained from mice reconstituted with wild type B. fragilis had significantly enhanced rates of conversion into IL-10–producing Foxp3+Treg cells and offered greater protection against disease. Our results suggest an important role for commensal bacterial Ags, in particular B. fragilis expressing polysaccharide A, in protecting against CNS demyelination in EAE and perhaps human multiple sclerosis.
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