生物
微生物群
沙雷菌
丰度(生态学)
先天免疫系统
炎症
下调和上调
免疫学
免疫系统
基因
微生物学
遗传学
生态学
细菌
假单胞菌
作者
Krystelle Nganou‐Makamdop,Aarthi Talla,Ashish Sharma,Samuel Darko,Amy Ransier,Farida Laboune,Jeffrey G. Chipman,Gregory J. Beilman,Torfi Hoskuldsson,Slim Fourati,Thomas Schmidt,Sahaana Arumugam,Noemia S. Lima,Damee Moon,Samuel P. Callisto,Jordan Schoephoerster,Jeffery Tomalka,Peter Mugyenyi,Francis Ssali,Proscovia Muloma
出处
期刊:Cell
[Cell Press]
日期:2021-07-01
卷期号:184 (15): 3899-3914.e16
被引量:76
标识
DOI:10.1016/j.cell.2021.05.023
摘要
Summary The impact of the microbiome on HIV disease is widely acknowledged although the mechanisms downstream of fluctuations in microbial composition remain speculative. We detected rapid, dynamic changes in translocated microbial constituents during two years after cART initiation. An unbiased systems biology approach revealed two distinct pathways driven by changes in the abundance ratio of Serratia to other bacterial genera. Increased CD4 T cell numbers over the first year were associated with high Serratia abundance, pro-inflammatory innate cytokines, and metabolites that drive Th17 gene expression signatures and restoration of mucosal integrity. Subsequently, decreased Serratia abundance and downregulation of innate cytokines allowed re-establishment of systemic T cell homeostasis promoting restoration of Th1 and Th2 gene expression signatures. Analyses of three other geographically distinct cohorts of treated HIV infection established a more generalized principle that changes in diversity and composition of translocated microbial species influence systemic inflammation and consequently CD4 T cell recovery.
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