免疫学
肠道菌群
自身免疫
免疫系统
粪便
生物
系统性红斑狼疮
发病机制
移植
炎症
红斑狼疮
医学
抗体
内科学
微生物学
疾病
作者
Yiyangzi Ma,Ruru Guo,Yiduo Sun,Xin Li,Lun He,Li Zhao,Gregg J. Silverman,Guobing Chen,Feng Gao,Jiali Yuan,Qiang Wei,Mengtao Li,Liangjing Lu,Haitao Niu
标识
DOI:10.1016/j.clim.2021.108892
摘要
The etiology of systemic lupus erythematosus (SLE) is multifactorial. Recently, growing evidence suggests that the microbiota plays a role in SLE, yet whether gut microbiota participates in the development of SLE remains largely unknown. To investigate this issue, we carried out 16 s rDNA sequencing analyses in a cohort of 18 female un-treated active SLE patients and 7 female healthy controls, and performed fecal microbiota transplantation from patients and healthy controls to germ-free (GF) mice.Compared to the healthy controls, we found no significant different microbial diversity but some significantly different species in SLE patients including Turicibacter genus and other 5 species. Fecal transfer from SLE patients to GF mice caused GF mice to develop a series of lupus-like phenotypic features, including increased serum autoimmune antibodies, imbalanced cytokines, altered distribution of immune cells in mucosal and peripheral immune response, and upregulated expression of genes related to SLE in recipient mice that received SLE fecal microbiota transplantation (FMT). Moreover, the metabolism of histidine was significantly altered in GF mice treated with SLE patient feces, as compared to those which received healthy fecal transplants.Overall, our results describe a causal role of aberrant gut microbiota in contributing to the pathogenesis of SLE. The interplay of gut microbial and histidine metabolism may be one of the mechanisms intertwined with autoimmune activation in SLE.
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