Inhibition of Adipocyte Differentiation and Adipogenesis by the Extract from Sophora japonica Fruit

회화나무 열매 추출물에 의한 지방세포 분화 및 지방생성 억제

  • Ji Min Jung (Honam National Institute of Biological Resources) ;
  • Su Hui Seong (Honam National Institute of Biological Resources) ;
  • Bo-Ram Kim (Honam National Institute of Biological Resources) ;
  • Jin-Ho Kim (Honam National Institute of Biological Resources) ;
  • Ha-Nul Lee (Honam National Institute of Biological Resources) ;
  • Chan Seo (Honam National Institute of Biological Resources) ;
  • Jung Eun Kim (Honam National Institute of Biological Resources) ;
  • Sua Im (Honam National Institute of Biological Resources) ;
  • Kyung-Min Choi (Honam National Institute of Biological Resources) ;
  • Jin-Woo Jeong (Honam National Institute of Biological Resources)
  • 정지민 (국립호남권생물자원관) ;
  • 성수희 (국립호남권생물자원관) ;
  • 김보람 (국립호남권생물자원관) ;
  • 김진호 (국립호남권생물자원관) ;
  • 이하늘 (국립호남권생물자원관) ;
  • 서찬 (국립호남권생물자원관) ;
  • 김정은 (국립호남권생물자원관) ;
  • 임수아 (국립호남권생물자원관) ;
  • 최경민 (국립호남권생물자원관) ;
  • 정진우 (국립호남권생물자원관)
  • Published : 2023.04.27

Abstract

The world-wide rate of obesity is increasing continuously, representing a serious medical threat since it is associated with a variety of diseases including type 2 diabetes, cardiovascular disease, and numerous cancers. Sophora japonicais used as a traditional herb for medicinal purposes in eastern Asia. However, the anti-obesity effects of S. japonicafruit have not been explored. The aim of this study is to investigate the inhibition of adipocyte differentiation and adipogenesis by an ethanol extract of S. japonicafruit (EESF) in 3T3-L1 pre-adipocytes. Our results demonstrate that EESF suppressed the terminal differentiation of 3T3-L1 pre-adipocytes in a dose-dependent manner, as confirmed by a decrease in lipid droplet number and lipid content through Oil Red O staining. EESF significantly reduced the accumulation of cellular triglyceride, which was associated with a significant inhibition of the levels of pro-adipogenic transcription factors, including PPARγ, C/EBPα and C/EBPβ. In addition, EESF potentially down regulated the expression levels of adipocyte-specific proteins, including aP2 and leptin. In particular, EESF treatment effectively enhanced the activation of the AMPK signaling pathway; however, the co-treatment with compound C, an inhibitor of AMPK, significantly restored the EESF-induced inhibition of pro-adipogenic transcription factors and adipocyte-specific genes. These results indicate that EESF may exert an anti-obesity effect by controlling the AMPK signaling pathway, suggesting that the fruit extract of S. japonica may be a potential anti-obesity agent.

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Acknowledgement

This work was supported by a grant from the Honam National Institute of Biological Resources (HNIBR), funded by the Ministry of Environment (MOE) of the Korea (HNIBR202302115).