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May 17, 2026Metabolites0 citationsOpen Access

Annexin A2 Is Associated with Dietary Cholesterol-Induced Metabolic Dysregulation and the Progression of Hepatic Fibrosis

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JLJiayang LiuLOLing OuHTHaiyan Tai

Key Points

  • The study aims to define the molecular mechanisms of dietary cholesterol's effect on liver fibrogenesis and to explore the role of Annexin A2 in this process.
  • Established a CCl4-induced liver fibrosis mouse model supplemented with dietary cholesterol (1-2%)
  • Assessed liver injury and fibrosis through liver-to-body weight ratios, serum AST and ALT levels, and histological analysis
  • Performed RNA sequencing and database analyses to identify cholesterol-responsive gene networks
  • Dietary cholesterol supplementation worsened CCl4-induced liver fibrosis, indicated by increased liver-to-body weight ratios and elevated serum AST and ALT levels
  • Histological analysis revealed more collagen deposition and upregulation of fibrogenic gene expression
  • Annexin A2 was identified as a cholesterol-responsive gene associated with fibrosis through RNA sequencing and correlation analysis

Abstract

Background/Objectives: Dietary cholesterol intake significantly influences liver health, yet the specific molecular mechanisms by which it accelerates fibrogenesis remain incompletely defined. This study aimed to characterize the dose-dependent effects of dietary cholesterol on hepatic injury and fibrogenesis, identify cholesterol-responsive gene networks through transcriptomic analysis, and investigate Annexin A2 (ANXA2) as a candidate molecular mediator linking dietary cholesterol to hepatic fibrosis progression. Methods: A CCl4-induced liver fibrosis mouse model was established and supplemented with dietary cholesterol (1–2%). Liver injury and fibrosis were assessed by liver-to-body weight ratios, serum biochemical markers, histological analysis, and fibrogenic gene expression. RNA sequencing combined with multiple hepatic fibrosis database analyses was performed to identify potential molecular mediators. Results: Dietary cholesterol supplementation aggravated CCl4-induced hepatic fibrosis in mice, with dose-dependent increases in liver-to-body weight ratios and serum AST and ALT levels. Histological analysis showed enhanced collagen deposition and upregulation of fibrogenic genes. By integrating RNA-sequencing with multiple hepatic fibrosis database analysis and correlation analysis, we identified Annexin A2 (ANXA2) as a cholesterol-responsive gene associated with fibrosis. Conclusions: Dietary cholesterol promotes liver fibrosis progression, and ANXA2 may act as a potential mediator linking cholesterol metabolism to hepatic fibrogenesis.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/6a095bdd7880e6d24efe1b23https://doi.org/10.3390/metabo16050331
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