Sangqi tea improves glucose homeostasis in Caenorhabditis elegans through IIS and SKN-1/Nrf2-associated signaling
Jianling Yao, Xiao Xu, Lingzi Wu, Yu Cao, Xinru Wu, Yongqi Yang, Juan Qin, Wanzhu Wang, Yuqing Yang, Jiaqian Xing, Letian Ying, Xiaopeng Wu, Yi Lu, Gaimei SheAbstract
Sangqi tea (SQT), a 1-1 combination of Mori Folium (MF) and Astragali Radix (AR), has been used as a functional tea for metabolic health. In this study, the effects of SQT on glucose homeostasis were evaluated using a Caenorhabditis elegans model, integrating network pharmacology, bioinformatics, transcriptomics, molecular docking, and molecular dynamics to identify candidate compounds and investigate potential glucose-regulatory mechanisms. In high-glucose-fed worms, SQT significantly reduced glucose and triglyceride levels and lipid accumulation while alleviating oxidative stress. Integrated network pharmacology, transcriptomic, and genetic analyses supported the involvement of insulin/IGF-1 signaling (IIS) and SKN-1/Nrf2-associated signaling in the metabolic effects of SQT, with increased nuclear localization of DAF-16 and SKN-1 and altered expression of their downstream effector genes. The integrated strategy used in this study may also provide a useful reference for investigating other combined formulations whose individual components have been extensively studied but whose integrated effects and underlying mechanisms remain unclear.