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May 3, 20260 citations

Oroxin A in Linggui Zhugan Decoction in the treatment of MASH by regulating cholesterol-bile acid metabolism.

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PGPan GaoSWSili WangMJMingjiao Jia

Key Points

  • The study aims to assess the efficacy of Linggui Zhugan Decoction and its active components in treating metabolic liver disease, specifically MASH, by regulating bile acid metabolism.
  • Established a mouse model of MASH using a high-fat, high-cholesterol diet (HFHCD).
  • Conducted transcriptomic profiling, blood analysis, gut microbiota sequencing, and Western blotting after LGZGD and Oroxin A intervention.
  • Employed molecular docking to identify active constituents affecting bile acid metabolism.
  • Both LGZGD and Oroxin A significantly reduced obesity, liver inflammation, and fibrosis in MASH mice. Event rates included improved liver health metrics (exact rates not specified).
  • 16S rRNA sequencing showed Oroxin A increased gut microbial diversity, particularly enhancing Paracoccus and Akkermansia abundance.
  • Oroxin A altered bile acid composition, decreasing LCA levels while significantly increasing TUDCA.

Abstract

ETHNOPHARMACOLOGICAL RELEVANCE: Lingui Zhugan Decoction (LGZGD), a traditional Chinese medicinal formulation documented in the Golden Cabinet Essentials, is widely employed across East Asia for the treatment of metabolic liver disease. AIM OF THE STUDY: To evaluate the anti - MASH efficacy of LGZGD and its Active blood-entering components and elucidate their mechanisms, with a particular focus on the regulation of bile acid metabolism. MATERIALS AND METHODS: A mouse model of MASH was established using a high-fat, high-cholesterol diet (HFHCD). Transcriptomic profiling and blood component analysis were performed on mice after LGZGD intervention. Molecular docking was then employed in combination with these analyses to screen for active constituents. Subsequent analyses focused on examining the effects of Oroxin A on MASH through transcriptomics, bile acid-targeted metabolomics, gut microbiota 16S rRNA sequencing, and Western blotting. RESULTS: LGZGD, Oroxin A all alleviated obesity, hepatic steatosis, inflammatory responses, and liver fibrosis induced by a high-fat diet. Microbial analysis of the ileum via 16S rDNA sequencing revealed that Oroxin A intervention restored gut microbial diversity, increasing the abundance of Paracoccus, Akkermansia, and Bifidobacterium. Targeted metabolomic analysis revealed significant alterations in bile acid composition under Oroxin A intervention, characterised by decreased levels of LCA and other bile acids alongside marked increases in TUDCA and others. Western blotting results indicate that Oroxin A applies its anti-MASH impacts by modulating the FXR/CYP7A1 pathway and TGR5/NLRP3 pathway. CONCLUSION: Oroxin A can improve pathological conditions in MASH mice through multiple pathways, including restoring gut microbiota balance and regulating bile acid metabolism. Within conventional medical frameworks, Oroxin A pioneers novel therapeutic approaches for MASH. This method overcomes the limitations of synthetic drugs while maintaining metabolic homeostasis.

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Cite This Study

Gao et al. (2026) studied this question.

synapsesocial.com/papers/69f6e5cf8071d4f1bdfc6785https://doi.org/10.1016/j.jep.2026.121684
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