Intestinal microbiome and metabolome signatures in patients with chronic granulomatous disease
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Intestinal microbiome and metabolome signatures in patients with chronic granulomatous disease.
Abstract
<h4>Background</h4>Chronic granulomatous disease (CGD) is caused by defects in any 1 of the 6 subunits forming the nicotinamide adenine dinucleotide phosphate oxidase complex 2 (NOX2), leading to severely reduced or absent phagocyte-derived reactive oxygen species production. Almost 50% of patients with CGD have inflammatory bowel disease (CGD-IBD). While conventional IBD therapies can treat CGD-IBD, their benefits must be weighed against the risk of infection. Understanding the impact of NOX2 defects on the intestinal microbiota may lead to the identification of novel CGD-IBD treatments.<h4>Objective</h4>We sought to identify microbiome and metabolome signatures that can distinguish individuals with CGD and CGD-IBD.<h4>Methods</h4>We conducted a cross-sectional observational study of 79 patients with CGD, 8 pathogenic variant carriers, and 19 healthy controls followed at the National Institutes of Health Clinical Center. We profiled the intestinal microbiome (amplicon sequencing) and stool metabolome, and validated our findings in a second cohort of 36 patients with CGD recruited through the Primary Immune Deficiency Treatment Consortium.<h4>Results</h4>We identified distinct intestinal microbiome and metabolome profiles in patients with CGD compared to healthy individuals. We observed enrichment for Erysipelatoclostridium spp, Sellimonas spp, and Lachnoclostridium spp in CGD stool samples. Despite differences in bacterial alpha and beta diversity between the 2 cohorts, several taxa correlated significantly between both cohorts. We further demonstrated that patients with CGD-IBD have a distinct microbiome and metabolome profile compared to patients without CGD-IBD.<h4>Conclusion</h4>Intestinal microbiome and metabolome signatures distinguished patients with CGD and CGD-IBD, and identified potential biomarkers and therapeutic targets.
doi:10.1016/j.jaci.2023.07.022 ↗ PMID 37659505 ↗ PMC11279821 ↗
Study facts
- Organism
- Homo sapiens
- Platform
- —
- Age group
- —
- Disease groups
- —
- Anatomical sites
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Data availability
Specific data assets have not been resolved from the source yet — see the source repository below for the full file listing.
Strengths & limitations for reuse
Strengths
- Participant counts are documented
Limitations
- Not documented: raw reads are advertised
- Not documented: feature/otu tables are advertised
- Not documented: taxonomic tables are advertised
Extraction evidence & provenance
Each extracted field is shown with the source excerpt and location used to resolve it.
Assay
| Field | Value | Evidence |
|---|---|---|
assay.sequencing_type |
amplicon_16s |
We profiled the intestinal microbiome by 16S rRNA (V4 region) sequencing Section |
assay.target_region |
V4 |
16S rRNA (V4 region) sequencing Section |
Cohort
| Field | Value | Evidence |
|---|---|---|
cohort.study_design |
cross_sectional |
We conducted a cross-sectional observational study Section |
cohort.total_participants |
140 computed |
a cohort of 79 patients with CGD, 8 mutation carriers and 17 healthy controls ... a second cohort of 36 patients with CGD Section |
Specimens
| Field | Value | Evidence |
|---|---|---|
specimens.body_site |
intestinal |
We profiled the intestinal microbiome by 16S rRNA (V4 region) sequencing Section |
specimens.sample_type |
stool |
We profiled the intestinal microbiome by 16S rRNA (V4 region) sequencing and the stool metabolome by mass spectrometry in all fecal samples Section |