TL1A-activated T cells remodel the rectal mucosa in patients with Crohn's disease with perianal fistulising disease.
case_series · Level IV
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- Record sourced from PubMed, PMID 41448881.
- Also identified by DOI 10.1136/gutjnl-2025-336246.
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Abstract
Perianal fistulising disease (PFD) is a complication that affects about 20% of patients with Crohn's disease (CD) whose aetiology remains unknown. To identify predisposing events driving fistula formation. Rectal biopsies from patients with CD with or without PFD (CD+PFD and CD, respectively; n=31) were collected and subjected to single-cell RNA sequencing. Functional analyses were conducted using peripheral CD3<sup>+</sup> T cells, intestinal tissue explants, primary fibroblasts and two-dimensional epithelial monolayer cell cultures. The rectal mucosa of patients with CD+PFD is imprinted with cellular and transcriptomic alterations specific to PFD and independent of luminal inflammation, potentially driven by tumour necrosis factor-like ligand 1A (TL1A) activation in CD4<sup>+</sup> T cells. We identified lymphotoxin beta (<i>LTB</i> or its functional heterotrimer LTα<sub>1</sub>β<sub>2</sub>) as a novel mediator downstream of TL1A that, along with interleukin (IL)-22, induces a PFD-associated signature in rectal fibroblast and epithelial cells, respectively. This signature includes an increased abundance of fibroblasts, an induction of matrix-degrading enzymes, transcriptomic rewiring of the lamina propria S1 fibroblasts and an anti-bacterial and immune responses in epithelial cells. Notably, the induction of LTα<sub>1</sub>β<sub>2</sub> and IL-22 occurs independently of tumour necrosis factor (TNF) signalling, revealing a new TL1A-LTα<sub>1</sub>β<sub>2</sub>/IL-22 axis that remains active under anti-TNF therapy. Our findings revealed unique cellular alterations in the rectum of patients with CD+PFD, highlighting the previously unrecognised involvement of TL1A in mediating this signature and supporting the need for exploring the role of TL1A inhibition as a therapeutic approach for PFD.