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March 31, 2026SHILAP Revista de lepidopterología0 citationsOpen Access

Zhaqu compound improves glucose and lipid metabolism in T2DM with MASLD by modulating gut microbiota and PPARγ

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YLYuyu LiuYXYizhu XieWYWenjing Yang

Key Points

  • The aim is to investigate how Zhaqu Compound affects glucose and lipid metabolism in T2DM with MASLD.
  • db/db mice with T2DM-MASLD were treated with Zhaqu Compound, metformin, or saline for 12 weeks.
  • Metabolic outcomes assessed included blood glucose levels, insulin resistance, and lipid profiles.
  • Gut microbiota analysis was conducted using 16S rRNA sequencing.
  • Fecal metabolomics and liver transcriptomics were performed to evaluate molecular changes.
  • In vitro studies used high-glucose + palmitate-induced HepG2 cells to analyze lipid accumulation and glucose uptake.
  • Zhaqu Compound significantly improved glycemia, insulin resistance, and lipid profiles.
  • Key metabolic genera in gut microbiota showed modulation associated with better glucose and lipid indicators.
  • Metabolomics indicated regulation of amino acid metabolism and pathways related to PPARγ.
  • In HepG2 cells, Zhaqu Compound reduced triglycerides and cholesterol while enhancing glucose uptake.
  • N-phenethylhexadecanamide and palmitic acid were identified as potential mediators of Zhaqu's effects.

Abstract

Introduction Zhaqu Compound (ZQC), a traditional Chinese herbal formula, has shown promise in improving glucose and lipid metabolism, but its mechanisms in T2DM-MASLD remain unclear. Methods In this study, db/db mice with T2DM-MASLD were treated for 12 weeks with ZQC, metformin, or saline. Metabolic outcomes included blood glucose, insulin resistance indices, lipid profiles, hepatic steatosis, hepatocyte ultrastructure, gut microbiota (16S rRNA), fecal metabolomics, and liver transcriptomics. In high-glucose + palmitate–induced HepG2 cells, ZQC-containing serum and the PPARγ agonist GW1929 were applied to assess gluconeogenic and lipogenic proteins. Results ZQC improved glycemia, insulin resistance, lipid profiles, and hepatic steatosis. Gut microbiota analysis showed modulation of key metabolic genera, including Bacteroides, Mucispirillum, Lactobacillus, Lachnospiraceae , and Muribaculaceae , with correlations to glucose, lipid, and hepatic biochemical indices. Metabolomics and transcriptomics revealed regulation of amino acid metabolism, AGE-RAGE/mTOR pathways, and enrichment of hepatic PPARγ–related pathways, alongside modulation of fatty acid and arachidonic acid metabolism. In HepG2 cells, ZQC reduced lipid accumulation, decreased triglycerides and cholesterol, enhanced glucose uptake, and restrained PPARγ and its downstream transporters CD36 and FABP4. N-phenethylhexadecanamide, palmitic acid, and isoxanthohumol likely mediate these effects. Discussion Overall, ZQC improves glucose and lipid metabolism in T2DM with MASLD by modulating gut microbiota, influencing hepatic PPARγ–related pathways, and enhancing hepatocyte metabolic function.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/69cb645fe6a8c024954b891fhttps://doi.org/10.3389/fnut.2026.1775686
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