Trpv1 deficiency aggravates intestinal barrier dysfunction and fibrosis in HFD-fed colitis mice via miR-31/Wnt16 signaling

Abstract Background Inflammatory bowel disease (IBD) is closely and epidemiologically linked to long-term high-fat diet (HFD) exposure. Transient receptor potential vanilloid 1 (TRPV1) is critically involved in IBD pathogenesis and significantly downregulated in the intestinal mucosa of obese populations. Nevertheless, whether TRPV1 mediates HFD-exacerbated chronic IBD remains poorly defined. Results Myeloid-cell-specific Trpv1 knockout ( Trpv1 ∆ Mye ) mice were used to investigate the roles of macrophage Trpv1 in dextran sulfate sodium-induced chronic colitis with long-term HFD exposure. Single-cell RNA sequencing, bulk RNA sequencing, and in vitro cell line experiments were conducted to elucidate the mechanism through which Trpv1 downregulation exacerbates HFD-related colitis. Quantitative reverse transcription-polymerase chain reaction and Western blot assays were performed for mechanistic validation and molecular verification. Results showed that Trpv1 ∆ Mye mice subjected to long-term HFD developed exacerbated intestinal inflammation, prominent intestinal fibrosis, and impaired intestinal barrier integrity. Mechanistically, myeloid-cell-specific Trpv1 deletion promoted macrophage pro-inflammatory and pro-fibrotic polarization and uncovered a novel miR-31/Wnt16 axis associated with the activation of non-canonical Wnt signaling, which in turn was associated with epithelial barrier dysfunction and stromal fibrogenesis. Conclusions Together, our findings unveil a cell-type-specific role of macrophage Trpv1 in diet-exacerbated IBD and delineate a precise miR-31/Wnt16 signaling pathway, which may provide novel insights for the clinical management of IBD patients with metabolic comorbidities.

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Publication Details

Journal
Cell & Bioscience
Published
2026-09-28
DOI
https://doi.org/10.1186/s13578-026-01651-7
Primary Topic
Ion Channels and Receptors
Type
article
Field-Weighted Citation Impact
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article

Trpv1 deficiency aggravates intestinal barrier dysfunction and fibrosis in HFD-fed colitis mice via miR-31/Wnt16 signaling

Liyuan Mao, Qi Zhang, Wanling Sun, Kelei Mao et al.
Cell & Bioscience
Ion Channels and Receptors
article

Trpv1 deficiency aggravates intestinal barrier dysfunction and fibrosis in HFD-fed colitis mice via miR-31/Wnt16 signaling

Liyuan Mao, Qi Zhang, Wanling Sun, Kelei Mao, Mingyang Ma, Haixia Huang, Biao Zheng, Sitao Zhang, Ruihao Yu, Wei Wang, Xiaodong Yan, Xiaotong Sun
article en

Abstract

Abstract Background Inflammatory bowel disease (IBD) is closely and epidemiologically linked to long-term high-fat diet (HFD) exposure. Transient receptor potential vanilloid 1 (TRPV1) is critically involved in IBD pathogenesis and significantly downregulated in the intestinal mucosa of obese populations. Nevertheless, whether TRPV1 mediates HFD-exacerbated chronic IBD remains poorly defined. Results Myeloid-cell-specific Trpv1 knockout ( Trpv1 ∆ Mye ) mice were used to investigate the roles of macrophage Trpv1 in dextran sulfate sodium-induced chronic colitis with long-term HFD exposure. Single-cell RNA sequencing, bulk RNA sequencing, and in vitro cell line experiments were conducted to elucidate the mechanism through which Trpv1 downregulation exacerbates HFD-related colitis. Quantitative reverse transcription-polymerase chain reaction and Western blot assays were performed for mechanistic validation and molecular verification. Results showed that Trpv1 ∆ Mye mice subjected to long-term HFD developed exacerbated intestinal inflammation, prominent intestinal fibrosis, and impaired intestinal barrier integrity. Mechanistically, myeloid-cell-specific Trpv1 deletion promoted macrophage pro-inflammatory and pro-fibrotic polarization and uncovered a novel miR-31/Wnt16 axis associated with the activation of non-canonical Wnt signaling, which in turn was associated with epithelial barrier dysfunction and stromal fibrogenesis. Conclusions Together, our findings unveil a cell-type-specific role of macrophage Trpv1 in diet-exacerbated IBD and delineate a precise miR-31/Wnt16 signaling pathway, which may provide novel insights for the clinical management of IBD patients with metabolic comorbidities.

Cell & Bioscience
Capital Medical University (CN), Xuan Wu Hospital of the Capital Medical University (CN), Beijing YouAn Hospital (CN), Jining Medical University (CN)
Good health and well-being
Openalex Percentile: Top 14%
Ion Channels and Receptors
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