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May 6, 2026Frontiers in Physiology0 citationsOpen Access

Ductal epithelial MXD3 promotes disease progression in acute pancreatitis through Wnt/β-catenin-mediated inflammation and injury

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贾贾仙茹BCBingbing CuiXLXuejin Liu

Key Points

  • This research aims to elucidate the role of the transcription factor MXD3 in the progression of acute pancreatitis.
  • Utilized single-cell RNA sequencing in a cerulein-induced rat model of acute pancreatitis
  • Characterized the pathogenic trajectory of epithelial cells and identified MXD3 as a key transcription factor
  • Conducted experiments with MXD3 knockout rats to assess protective effects against acute pancreatitis
  • MXD3 was significantly upregulated in a proliferative cluster of epithelial cells
  • Knockout of MXD3 led to reduced histological damage and fibrosis in the rat model
  • Elevated levels of pro-inflammatory cytokines were observed, which were mitigated by MXD3 knockout

Abstract

Introduction Acute pancreatitis (AP) is a severe inflammatory disease where epithelial injury and dysregulated repair are central to pathogenesis, yet the underlying transcriptional mechanisms remain poorly understood. Methods This study employed an integrated approach to identify and characterize the transcription factor MXD3 as a master regulator of AP progression. Using single-cell RNA sequencing in a ceruleininduced rat AP model, we delineated a pathogenic epithelial trajectory from ciliated through non-ciliated to a proliferative state, with MXD3 emerging as the most significantly upregulated transcription factor in the proliferative cluster. Subsequent validation in pancreatic ductal epithelial-specific MXD3 knockout rats revealed profound protection against AP, manifesting as reduced histological damage, diminished fibrosis, attenuated neutrophil infiltration (MPO+ cells), and decreased expression of pro-inflammatory cytokines (IL-6, TNF-α, IL-1β). Results Mechanistically, we demonstrated that MXD3 directly activates the Wnt/β-catenin pathway, as evidenced by increased non-phospho β-catenin, its nuclear accumulation, and transcriptional upregulation of canonical targets (cMyc, Cyclin D1, Axin2). Furthermore, functional rescue experiments confirmed the pathway’s necessity, wherein the β-catenin inhibitor ICG-001 substantially reversed MXD3-driven apoptosis, necrosis, and pro-inflammatory cytokine secretion (IL-1β, IL-6, MCP-1) in vitro . Conclusions Our findings establish a novel MXD3- Wnt/β-catenin axis as a crucial mechanism governing epithelial pathology in AP, revealing MXD3 as a promising therapeutic target for this debilitating condition.

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贾仙茹 et al. (2026) studied this question.

synapsesocial.com/papers/69faa2b504f884e66b5333d1https://doi.org/10.3389/fphys.2026.1785500
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