Hepatic Fibrosis Extracellular Matrix Stiffness Induces Abnormal Maturation of Dendritic Cell via AMPK Inhibition-Mediated Cholesterol Accumulation

Dendritic cell (DC)-based immunotherapy shows limited efficacy against hepatic fibrosis, and the underlying mechanometabolic crosstalk remains unclear. Here, from a mechanobiological perspective, we demonstrate that increased extracellular matrix (ECM) stiffness in fibrotic liver triggered antigen-independent abnormal DC maturation, characterized by elevated co-stimulatory molecules, impaired phagocytic capacity, reduced IL-10 secretion, and suppressed regulatory T cell (T reg ) differentiation. Mechanistically, stiff ECM inhibited the AMPK-LXRα-ABCG1 signaling axis in DCs, reducing cholesterol efflux and promoting intracellular cholesterol accumulation. Cholesterol depletion or AMPK activation reversed stiffness-induced abnormal DC maturation. In mouse models, combined treatment with pirfenidone and simvastatin reduced liver stiffness, collagen deposition, and restored immune tolerance by correcting DC cholesterol metabolism. Our study identified a mechanometabolic pathway linking matrix stiffness to DC dysfunction, providing a promising immunometabolic strategy for antifibrotic therapy.

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Publication Details

Journal
Materials Today Bio
Published
2026-09-01
DOI
https://doi.org/10.1016/j.mtbio.2026.103606
Primary Topic
Liver Disease Diagnosis and Treatment
Type
article
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article

Hepatic Fibrosis Extracellular Matrix Stiffness Induces Abnormal Maturation of Dendritic Cell via AMPK Inhibition-Mediated Cholesterol Accumulation

Deqiao Fan, Zhu Zeng, Xianlin Zeng, Shuai Zhang et al.
Materials Today Bio
Liver Disease Diagnosis and Treatment
article

Hepatic Fibrosis Extracellular Matrix Stiffness Induces Abnormal Maturation of Dendritic Cell via AMPK Inhibition-Mediated Cholesterol Accumulation

Deqiao Fan, Zhu Zeng, Xianlin Zeng, Shuai Zhang, Zuquan Hu, Jinhua Long, H. H. Zhang, Pu Xu, Lijing Teng, Cuifang Wu, Pan Luo, Yun Wang
article en

Abstract

Dendritic cell (DC)-based immunotherapy shows limited efficacy against hepatic fibrosis, and the underlying mechanometabolic crosstalk remains unclear. Here, from a mechanobiological perspective, we demonstrate that increased extracellular matrix (ECM) stiffness in fibrotic liver triggered antigen-independent abnormal DC maturation, characterized by elevated co-stimulatory molecules, impaired phagocytic capacity, reduced IL-10 secretion, and suppressed regulatory T cell (T reg ) differentiation. Mechanistically, stiff ECM inhibited the AMPK-LXRα-ABCG1 signaling axis in DCs, reducing cholesterol efflux and promoting intracellular cholesterol accumulation. Cholesterol depletion or AMPK activation reversed stiffness-induced abnormal DC maturation. In mouse models, combined treatment with pirfenidone and simvastatin reduced liver stiffness, collagen deposition, and restored immune tolerance by correcting DC cholesterol metabolism. Our study identified a mechanometabolic pathway linking matrix stiffness to DC dysfunction, providing a promising immunometabolic strategy for antifibrotic therapy.

Materials Today Bio
Guiyang Medical University (CN), Guizhou Center for Disease Control and Prevention (CN), Guizhou Cancer Hospital (CN), Affiliated Hospital of Guizhou Medical University (CN)
Zero hunger
Openalex Percentile: Top 10%
Liver Disease Diagnosis and Treatment
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