Sodium butyrate alleviates DSS-induced inflammatory bowel disease by inhibiting ferroptosis and modulating ERK/STAT3 signaling and intestinal flora
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Sodium butyrate alleviates DSS-induced inflammatory bowel disease by inhibiting ferroptosis and modulating ERK/STAT3 signaling and intestinal flora.
Abstract
<h4>Background</h4>Inflammatory bowel disease (IBD), encompassing Crohn's disease (CD) and ulcerative colitis (UC), can seriously impact patients' quality of life. Sodium butyrate (NaB), a product of dietary fiber fermentation, has been shown to alleviate IBD symptoms. Some studies have shown that it is related to ferroptosis. However, the precise mechanism linking NaB, IBD, and ferroptosis is not clear.<h4>Objective</h4>This study aimed to demonstrate that NaB suppresses ferroptosis, thereby alleviating inflammatory bowel disease (IBD) through modulation of the extracellular regulated protein kinases/signal transducer and activator of transcription 3 (ERK/STAT3) signaling pathway and intestinal flora.<h4>Methods</h4>An IBD model was established using 2.5% (<i>w/v</i>) dextran sulfate sodium (DSS). Mice were orally administered low-dose NaB, high-dose NaB , or 5-aminosalicylic acid (5-ASA). Ferroptosis-related molecules were measured using specific kits, and western blotting (WB) and real-time polymerase chain reaction (RT-qPCR) were used to determine the levels of the target molecules.<h4>Results</h4>NaB alleviated symptoms in IBD mice, including reduced weight loss, prolonged colon length, reduced disease activity index (DAI), and reduced spleen index and mRNA expression of inflammatory factors. Additionally, NaB reduced the content of Fe<sup>2+</sup> and myeloperoxidase (MPO) and increased the content of GSH and the activity of superoxide dismutase (SOD), which reflected NaB-inhibited ferroptosis. Moreover, western blotting showed that NaB enhanced STAT3 and ERK phosphorylation. In addition, NaB regulates the composition and functions of flora related to IBD.<h4>Conclusion</h4>NaB alleviates IBD by inhibiting ferroptosis and modulating ERK/STAT3 signaling and the intestinal flora.
doi:10.1080/07853890.2025.2470958 ↗ PMID 40028886 ↗ PMC11878173 ↗
Study facts
- Organism
- —
- Platform
- MiSeq/HiSeq
- Age group
- —
- Disease groups
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- 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
Limitations
- Not documented: raw reads are advertised
- 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
| Field | Value | Evidence |
|---|---|---|
assay.paired_end |
True |
The amplified products were sequenced using the MiSeq/HiSeq platform with paired-end sequencing. Section |
assay.platform |
MiSeq/HiSeq |
The amplified products were sequenced using the MiSeq/HiSeq platform with paired-end sequencing. Section |
assay.sequencing_type |
amplicon_16s |
16S rRNA amplicon sequencing Section |
Data_Assets
| Field | Value | Evidence |
|---|---|---|
data_assets.open_access |
True |
"isOpenAccess": "Y" Section |
Specimens
| Field | Value | Evidence |
|---|---|---|
specimens.body_site |
colon |
samples were collected, including blood, liver, spleen, colon, and colon contents. Section |
specimens.longitudinal_sampling |
False inferred |
After a 12-hour fasting, all mice were euthanized and samples were collected Section |