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Gut dysbiosis induces the development of pre-eclampsia through bacterial translocation

失调 染色体易位 细菌易位 生物 肠道菌群 子痫 微生物学 医学 免疫学 怀孕 遗传学 基因
作者
Xia Chen,Pan Li,Mian Liu,Huimin Zheng,Yan He,Mu-Xuan Chen,Wenli Tang,Xiaojing Yue,Yongxin Huang,Lingling Zhuang,Zhijian Wang,Mei Zhong,Guibao Ke,Haoyue Hu,Yinglin Feng,Yun Chen,Yan‐hong Yu,Hongwei Zhou,Liping Huang
出处
期刊:Gut [BMJ]
卷期号:69 (3): 513-522 被引量:312
标识
DOI:10.1136/gutjnl-2019-319101
摘要

Objective Pre-eclampsia (PE) is one of the malignant metabolic diseases that complicate pregnancy. Gut dysbiosis has been identified for causing metabolic diseases, but the role of gut microbiome in the pathogenesis of PE remains unknown. Design We performed a case–control study to compare the faecal microbiome of PE and normotensive pregnant women by 16S ribosomal RNA (rRNA) sequencing. To address the causative relationship between gut dysbiosis and PE, we used faecal microbiota transplantation (FMT) in an antibiotic-treated mouse model. Finally, we determined the microbiome translocation and immune responses in human and mouse placental samples by 16S rRNA sequencing, quantitative PCR and in situ hybridisation. Results Patients with PE showed reduced bacterial diversity with obvious dysbiosis. Opportunistic pathogens, particularly Fusobacterium and Veillonella , were enriched, whereas beneficial bacteria, including Faecalibacterium and Akkermansia , were markedly depleted in the PE group. The abundances of these discriminative bacteria were correlated with blood pressure (BP), proteinuria, aminotransferase and creatinine levels. On successful colonisation, the gut microbiome from patients with PE triggered a dramatic, increased pregestational BP of recipient mice, which further increased after gestation. In addition, the PE-transplanted group showed increased proteinuria, embryonic resorption and lower fetal and placental weights. Their T regulatory/helper-17 balance in the small intestine and spleen was disturbed with more severe intestinal leakage. In the placenta of both patients with PE and PE-FMT mice, the total bacteria, Fusobacterium , and inflammatory cytokine levels were significantly increased. Conclusions This study suggests that the gut microbiome of patients with PE is dysbiotic and contributes to disease pathogenesis.
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