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Biology subjects

Brot, L.

Publications and source records attributed to Brot, L..

2 recordsLinked to original sources

The human blood harbors a phageome which differs in Crohn's disease

Increasing evidence suggests that the human blood hosts microbes including bacteria and eukaryotic viruses, which could have important implications for health. Bacteriophages of the blood are challenging to study and have been overlooked, but could translocate to this environment from different body-sites. We thus developed specific virome protocols and analysis methods to study the viral communities of blood samples obtained from healthy individuals and Crohns disease (CD) patients. We uncovered a diverse viral community in the human blood, dominated by phages infecting Pseudomonadota bacteria. We found that an important fraction of those phages overlaps with the gut virome, consolidating the idea that gut phages can translocate to the blood. Strikingly, viral communities of the blood were different between CD patients and healthy individuals, revealing a new signature of disease. This was not the case for fecal viral communities. Collectively, these results advance our knowledge of the microorganisms present in the human blood and pave the way for further studies of this environment in the context of disease.

microbiology↗

Human CD4+/CD8α+ regulatory T cells induced by Faecalibacterium prausnitzii protect against intestinal inflammation

Faecalibacterium prausnitzii (F. prausnitzii), a dominant bacterium of the human microbiota, is decreased in patients with inflammatory bowel diseases (IBD) and exhibits anti-inflammatory effects. In human, colonic lamina propria contains IL-10-positive, Foxp3-negative regulatory T cells (Treg) characterized by a double expression of CD4 and CD8 (DP8) and a specificity for F. prausnitzii. This Treg subset is decreased in IBD. The in vivo effect of DP8 cells has not been evaluated yet. Here, using a humanized model of NOD.Prkcscid IL2r{gamma}-/- (NSG) immunodeficient mouse strain that expresses human leucocyte antigen D-related 4 (HLA-DR4) but not murine class II (NSG-Ab{degrees} DR4), we demonstrated a protective effect of DP8 Tregs combined with F. prausnitzii administration in a colitis model. In a cohort of patients with IBD, we showed an independent association between the frequency of circulating DP8 cells and disease activity. Finally, we pointed out a positive correlation between F. prausnitzii-specific DP8 Tregs and the amount of F. prausnitzii in fecal microbiota in healthy individuals and patients with ileal Crohns disease.

immunology↗