Integrative multi-omics investigation of gut carboxylic metabolites in the gut-skin axis of IBD and AD comorbidity

Butyrate and lactate are microbial-derived gut carboxylic metabolites (GCMs) generated by intestinal fermentation. Their potential involvement in inflammatory bowel disease (IBD) and atopic dermatitis (AD) comorbidity through the gut-skin axis remains unclear. In this study, we investigated the associations between genetically predicted gut microbial taxa and IBD/AD using Mendelian randomization (MR) and integrated network pharmacology, molecular docking, single-cell RNA sequencing, and in silico knockout analyses to characterize GCM-associated molecular features. The effects of butyrate and lactate were further evaluated in LPS-treated intestinal fibroblasts and skin keratinocytes. MR revealed that higher genetically predicted abundance of Faecalicoccus pleomorphu s and CAG-884 was associated with reduced susceptibility to both IBD and AD. Network pharmacology identified 14 shared GCM-associated candidate genes. Single-cell RNA sequencing demonstrated their cell-type-specific expression patterns, while in silico knockout analysis prioritized TLR4 , HDAC9 , and LDHA as potentially influential nodes in disease-associated regulatory networks. In LPS-treated cells, butyrate and lactate reduced the expression of these genes, decreased HDAC9 protein levels, and restored the Ac-H3/H3 ratio. These findings suggest that GCMs are associated with shared inflammatory and epigenetic features in IBD and AD comorbidity, potentially involving HDAC-related regulation. Dietary tracing further identified potential fermentation substrates and food sources associated with butyrate and lactate production, providing insights for future dietary investigations.

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Publication Details

Journal
npj Science of Food
Published
2026-08-27
DOI
https://doi.org/10.1038/s41538-026-01077-y
Primary Topic
Gut microbiota and health
Type
article
Field-Weighted Citation Impact
0.00

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article

Integrative multi-omics investigation of gut carboxylic metabolites in the gut-skin axis of IBD and AD comorbidity

Luhao Wang, Lusheng Wang, Rongrong Jing, Linjie Ye et al.
npj Science of Food
Gut microbiota and health
article

Integrative multi-omics investigation of gut carboxylic metabolites in the gut-skin axis of IBD and AD comorbidity

Luhao Wang, Lusheng Wang, Rongrong Jing, Linjie Ye, Jianqin Yu, Xiaofei Huang, Xiaolong Chen
article en

Abstract

Butyrate and lactate are microbial-derived gut carboxylic metabolites (GCMs) generated by intestinal fermentation. Their potential involvement in inflammatory bowel disease (IBD) and atopic dermatitis (AD) comorbidity through the gut-skin axis remains unclear. In this study, we investigated the associations between genetically predicted gut microbial taxa and IBD/AD using Mendelian randomization (MR) and integrated network pharmacology, molecular docking, single-cell RNA sequencing, and in silico knockout analyses to characterize GCM-associated molecular features. The effects of butyrate and lactate were further evaluated in LPS-treated intestinal fibroblasts and skin keratinocytes. MR revealed that higher genetically predicted abundance of Faecalicoccus pleomorphu s and CAG-884 was associated with reduced susceptibility to both IBD and AD. Network pharmacology identified 14 shared GCM-associated candidate genes. Single-cell RNA sequencing demonstrated their cell-type-specific expression patterns, while in silico knockout analysis prioritized TLR4 , HDAC9 , and LDHA as potentially influential nodes in disease-associated regulatory networks. In LPS-treated cells, butyrate and lactate reduced the expression of these genes, decreased HDAC9 protein levels, and restored the Ac-H3/H3 ratio. These findings suggest that GCMs are associated with shared inflammatory and epigenetic features in IBD and AD comorbidity, potentially involving HDAC-related regulation. Dietary tracing further identified potential fermentation substrates and food sources associated with butyrate and lactate production, providing insights for future dietary investigations.

npj Science of Food
Wenzhou Medical University (CN), CM Hospital (KR), Hangzhou Medical College (CN)
Sanming Project of Medicine in Shenzhen
Zero hunger
Openalex Percentile: Top 17%
Gut microbiota and health
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