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May 6, 2026Hepatology0 citations

CD4+ T cells promote fibrosis during metabolic dysfunction-associated steatohepatitis

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LVLucía Valenzuela-PérezHLHyun Se Kim LeeRBRachel L. Bayer

Key Points

  • To investigate the role of CD4+ T cells in metabolic dysfunction-associated steatohepatitis (MASH) and their impact on fibrosis.
  • Single-cell proteomic and transcriptomic analyses conducted on murine and human samples.
  • Assessment of CD4+ T cell differentiation and cytokine secretion in the liver.
  • Examination of OX40 and its ligand during MASH development.
  • Heightened effector activity of hepatic CD4+ T cells noted, with increased proinflammatory cytokine secretion.
  • Identification of OX40-OX40L interaction as a critical mechanism in CD4+ T cell and macrophage activation.
  • Therapeutic blockade of OX40-OX40L reversed liver pathology in mice.

Abstract

Background & Aims: Unresolved inflammation and fibrosis are defining features of metabolic dysfunction-associated steatohepatitis (MASH), a progressive form of steatotic liver disease that can advance to cirrhosis and hepatocellular carcinoma. While innate immune mechanisms in MASH have been extensively characterized, the role of CD4 + T cells remains poorly understood despite their central function in orchestrating immune responses through effector and regulatory mechanisms. Methods: Integrated single-cell proteomic, transcriptomic, and functional analyses were used to investigate the CD4 + T-cell landscape in murine and human MASH. Results: We delineated a profound shift in the differentiation of intrahepatic and peripheral CD4 + T cells toward Th1, regulatory, and cytotoxic phenotypes in murine and human MASH. Notably, hepatic CD4 + T cells exhibited heightened effector activity and elevated secretion of proinflammatory cytokines, thus amplifying inflammatory signaling cascades. The CD4 + T-cell reprogramming in MASH also included the induction of the co-stimulatory receptor OX40. In parallel, OX40 ligand (OX40L)-expressing monocyte-derived macrophages and dendritic cells accumulated in MASH livers, establishing a feed-forward CD4 + T cell-myeloid activation loop. Therapeutic blockade of the OX40-OX40L axis, in turn, reversed liver pathology in mice with established MASH and reduced disease markers in an ex vivo human liver model. Furthermore, genetic depletion or functional inhibition of CD4 + T cells attenuated fibrosis, accompanied by decreased infiltration of monocyte-derived macrophages. Conclusions: These studies provide a comprehensive single-cell proteogenomic atlas of CD4 + T cells in MASH and identify an OX40-dependent CD4 + T cell-macrophage axis as a promising therapeutic target for the treatment of MASH and liver fibrosis.

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Cite This Study

Valenzuela-Pérez et al. (2026) studied this question.

synapsesocial.com/papers/69faa1eb04f884e66b532ac4https://doi.org/10.1097/hep.0000000000001772
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Dual roles of T cells in metabolic dysfunction–associated steatohepatitis pathogenesis and liver fibrosis: From inflammation to therapeutic targets2025 · 3 citations
  2. 2Regulatory T cells safeguard liver health during metabolic-associated steatohepatitis2026
  3. 3Ag-driven CD8+ T cell clonal expansion is a prominent feature of MASH in humans and mice2024 · 12 citations
  4. 4Antigen-driven CD8+ T cell clonal expansion is a prominent feature of MASH in humans and mice.2024
  5. 5MASH: the nexus of metabolism, inflammation, and fibrosis2025