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Updated: Aug 14, 2026

Human Pluripotent Stem Cell Based Developmental Toxicity Assays for Chemical Safety Screening and Systems Biology Data Generation
Published on: June 17, 2015
Linking bisphenol a exposure to MASLD: insights from network toxicology and machine learning based on NHANES
Jiaquan Yuan1, Haoyang Xu1, Junhong Gan1
1Graduate School of Guangxi University of Chinese Medicine, Nanning, Guangxi 530020, China.
Abstract:
Metabolic Dysfunction-Associated Steatotic Liver Disease (MASLD), one of the most prevalent chronic liver diseases worldwide, has a pathogenesis that remains incompletely understood. In recent years, Bisphenol A (BPA) has been recognized as an emerging pathogenic factor for MASLD as an environmental contaminant. By integrating multiple advanced methodologies including Network Toxicology, Machine Learning, Molecular Docking, and Molecular Dynamics Simulation, this study systematically elucidates the molecular mechanisms underlying BPA-induced MASLD. Through analysis of NHANES data, we identified a significantly positive correlation between BPA levels and MASLD risk. Integration of multiple databases identified 34 potential BPA-related targets. KEGG enrichment analysis revealed the critical role of the PI3K/AKT signaling pathway in MASLD, with COL1A1, COL1A2, and IGF1 serving as core targets that drive disease progression. Immune cell infiltration analysis demonstrated that BPA regulates immune cell function via the PI3K/AKT pathway, thereby promoting the onset and development of MASLD. These findings reveal the complex mechanisms underlying BPA-induced MASLD and provide novel therapeutic targets, along with theoretical support for the early screening and precision treatment of this disease.
Insights
Bisphenol A (BPA) exposure is linked to increased risk of Metabolic Dysfunction-Associated Steatotic Liver Disease (MASLD). This study reveals BPA
Area of Science:
- Environmental Health
- Toxicology
- Hepatology
Background:
- Metabolic Dysfunction-Associated Steatotic Liver Disease (MASLD) is a global health concern with poorly understood origins.
- Bisphenol A (BPA), an environmental contaminant, is increasingly implicated in MASLD pathogenesis.
Purpose of the Study:
- To systematically elucidate the molecular mechanisms of BPA-induced MASLD.
- To identify novel therapeutic targets for BPA-related MASLD.
Main Methods:
- Network Toxicology
- Machine Learning
- Molecular Docking
- Molecular Dynamics Simulation
- NHANES data analysis
- KEGG enrichment analysis
Main Results:
- A significant positive correlation was found between BPA levels and MASLD risk.
- 34 potential BPA-related targets were identified, with COL1A1, COL1A2, and IGF1 highlighted as core drivers.
- The PI3K/AKT signaling pathway was identified as critical, mediating BPA's regulation of immune cell function in MASLD.
Conclusions:
- BPA significantly contributes to MASLD development through complex molecular pathways.
- The PI3K/AKT pathway and identified core targets offer potential avenues for early screening and precision treatment of MASLD.
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