Foundry120 atlas

FMT Raw sequence reads

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Dataset overview

Participants None
Samples 12
Reuse readiness 4.0/10 evidence-backed score

Gut microbial production of lithocholic acid reprograms pro-resolutive macrophages to enhance vedolizumab responsiveness via the TGR5/FXR-NF-κB axis.

Abstract

Crohn's disease (CD) is a complex chronic transmural inflammatory bowel disease. Although vedolizumab (VDZ) markedly improves clinical outcomes in CD, treatment non-response remains a significant limitation, constraining its broader utility. Elucidating the mechanisms underlying VDZ responsiveness is thus critically needed. In this research, we employed a humanized mouse model of 2,4,6-trinitrobenzene sulfonic acid-induced colitis to investigate VDZ treatment response in CD. Our findings indicate that VDZ significantly alleviated disease phenotypes in a portion of CD mice. Integrated metagenomic and metabolomic profiling identified baseline gut microbiota-derived secondary bile acids as potential predictors of VDZ efficacy. Subsequent fecal microbiota transplantation from clinical donors into pseudo-germ-free mice confirmed that gut microbial composition critically influences VDZ responsiveness. Targeted metabolomics further pinpointed lithocholic acid (LCA) as a key microbially derived metabolite correlated with therapeutic remission. Single-cell RNA sequencing also revealed that intestinal macrophages serve as pivotal mediators of LCA-driven modulation of treatment outcomes. Furthermore, transcriptomic analyses demonstrated that LCA polarizes macrophages toward an M2-resolutive phenotype via concurrent engagement of the TGR5/FXR and their downstream nuclear factor kappa-B (NF-κB) pathways. Ultimately, using a conditioned medium co-culture system, we established that the regulatory effects of pro-resolutive macrophage niche on treatment response in a manner dependent on the TGR5/FXR-NF-κB axis. Taken together, our study elucidates a microbiota-immune circuit in which gut microbial metabolite LCA augments VDZ responsiveness in CD by reprogramming macrophages toward a pro-resolutive phenotype via the TGR5/FXR-NF-κB signaling network. These insights provide a mechanistic foundation for biomarker development and personalized therapeutic strategies in inflammatory bowel disease.

Study facts

Organism
Homo sapiens
Platform
Illumina MiSeq
Age group
Disease groups
Anatomical sites

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

  • Raw reads are advertised
  • Sample counts are documented

Limitations

  • Not documented: feature/otu tables are advertised
  • Not documented: taxonomic tables are advertised
  • Not documented: participant counts are documented
Extraction evidence & provenance

Each extracted field is shown with the source excerpt and location used to resolve it.

Assay

FieldValueEvidence
assay.platform Illumina MiSeq from source
ENA instrument_model=Illumina MiSeq

Section ENA study report, offset —

assay.sequencing_type amplicon_16s inferred
"library_strategy": "AMPLICON"

Section dataset-authority, offset 390

Data_Assets

FieldValueEvidence
data_assets.raw_reads True
"description": "FMT Raw sequence reads"

Section dataset-authority, offset —

Specimens

FieldValueEvidence
specimens.number_of_samples 12 from source
ENA sample_count=12

Section ENA study report, offset —

specimens.sample_type stool
"scientific_name": "feces metagenome"

Section dataset-authority, offset 380