Explorating the mechanism of Huangqin Tang against skin lipid accumulation through network pharmacology and experimental validation

通过网络药理学和实验验证探讨黄芩汤抗皮肤脂质沉积的机制

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作者:Kaile Zong, Kewei Xu, Xingjiang Zhang, Pan Wang, Zhekun Wang, Shan Yang, Huijuan Li, Hui Ke, Shengsheng He, Yunwei Hu, Yuyo Go, Xi Hui Felicia Chan, Jianxin Wu, Qing Huang

Aim of the study

This paper aimed to investigate the mechanisms of HQT in the treatment of skin lipid accumulation by network pharmacology and validating the

Conclusion

The results disclosed that HQT ameliorates lipogenesis in PA-induced SZ95 sebocytes partially through the AMPK signaling pathway.

Methods

Network pharmacology was employed to predict the potential targets of HQT against sebum accumulation. Then, the palmitic acid (PA)-induced SZ95 cell model was established to evaluate the effect of HQT on lipid accumulation and anti-inflammation, and the core pathways predicted by network pharmacology were verified in cell studies.

Results

336 chemical compounds and 368 targets in HQT were obtained by network pharmacology, of which 65 targets were related to sebum synthesis. 12 core genes were revealed by protein-protein interaction (PPI) network analysis. Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment results suggested that AMP-activated protein kinase (AMPK) signaling pathway might play a crucial role in regulating lipogenesis. In vitro experiments, HQT suppressed lipid accumulation, downregulated the expressions of sterol-regulatory element binding protein-1 (SREBP-1) and fatty acid synthase (FAS), and upregulated AMPK phosphorylation. Furthermore, AMPK inhibitor reversed HQT-mediated sebosuppressive effect.

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