Betulinic acid from Inonotus obliquus ameliorates T2DM by modulating short-chain fatty acids producing bacteria and amino acids metabolism in db/db mice

J Ethnopharmacol. 2025 Feb 27:342:119417. doi: 10.1016/j.jep.2025.119417. Epub 2025 Jan 28.

Abstract

Ethnopharmacological relevance: Inonotus obliquus has also been used as a traditional folk medicine in Europe and Northeastern China to treat metabolic diseases. Betulinic acid (BA) is a major ingredient with anti-diabetic property derived from I. obliquus, however, its bioavailability is limited. Whether the beneficial effects of BA on type 2 diabetic mellitus (T2DM) referring to modulation of gut microbiota and associated metabolites remain unclear.

Aim of the study: This work aims to investigate the alleviating effect of BA on T2DM in db/db mice and elucidate the mechanism from perspective of network pharmacology, gut microbiome and fecal metabolome.

Materials and methods: BA was orally administered to db/db mice for 45 days, and the related biochemical parameters were evaluated. The associated mechanism was explored using network pharmacology analysis, 16S rRNA sequencing and UHPLC-MS metabolomics comprehensively. Additionally, Spearman analysis was performed to assess the correlation between gut microbes, metabolites, and T2DM-related biochemical parameters.

Results: BA ameliorated T2DM symptoms by reducing body weight gain, regulating serum glucose and lipid levels, and mitigating T2DM-associated liver injury in db/db mice. Network pharmacology analysis indicated the ameliorative effect was via targeting at PPAR activity. BA intervention increased the relative abundance of short-chain fatty acids (SCFAs) producing bacteria including Lactobacillus and Eubacterium_xylanophilum group, and enhanced the production of SCFAs. Moreover, BA primarily regulates arginine and proline metabolism, D-glutamine and D-glutamate metabolism, and alanine, aspartate and glutamate metabolism. Spearman analysis indicated a negative correlation between SCFAs-producing bacteria and amino acids, as well as serum glucose and lipid levels.

Conclusion: Apart from PPAR signaling pathway, BA modulated gut microbiota composition and associated metabolites in db/db mice. This study provided novel insights into the therapeutic potential of BA for alleviating T2DM symptoms.

Keywords: Amino acids metabolism; Betulinic acid; Intestinal microflora; Network pharmacology; Short chain fatty acids; T2DM.

MeSH terms

  • Amino Acids* / metabolism
  • Animals
  • Bacteria / drug effects
  • Bacteria / metabolism
  • Betulinic Acid
  • Blood Glucose / drug effects
  • Diabetes Mellitus, Experimental* / drug therapy
  • Diabetes Mellitus, Experimental* / metabolism
  • Diabetes Mellitus, Experimental* / microbiology
  • Diabetes Mellitus, Type 2* / drug therapy
  • Diabetes Mellitus, Type 2* / metabolism
  • Diabetes Mellitus, Type 2* / microbiology
  • Fatty Acids, Volatile* / metabolism
  • Feces / microbiology
  • Gastrointestinal Microbiome* / drug effects
  • Hypoglycemic Agents* / isolation & purification
  • Hypoglycemic Agents* / pharmacology
  • Hypoglycemic Agents* / therapeutic use
  • Male
  • Mice
  • Mice, Inbred C57BL
  • Pentacyclic Triterpenes* / isolation & purification
  • Pentacyclic Triterpenes* / pharmacology
  • Triterpenes / pharmacology

Substances

  • Betulinic Acid
  • Pentacyclic Triterpenes
  • Fatty Acids, Volatile
  • Amino Acids
  • Hypoglycemic Agents
  • Blood Glucose
  • Triterpenes