UPLC-Q-TOF/MS-Based Metabolomics and 16S rRNA Profiling Reveal that Corosolic Acid Ameliorates High-Fat Diet-Induced MASLD by Modulating the Gut-Liver Axis to Inhibit the cGAS-STING Pathway

  • J Agric Food Chem. 2026 Apr 29;74(16):13282-13301. doi: 10.1021/acs.jafc.5c13513.
Kaiwei Cai  1 Zihao Chen  1 Song Deng  2 Jingheng Chen  1 Jingtao Yu  1 Xingyuan Zhang  1 Wei Jia  1 Aihua Huang  1 Yanlong Chen  1 Zhiyong Xie  3 Pei Li  1 Qiongfeng Liao  1
Affiliations
  • 1. State Key Laboratory of Traditional Chinese Medicine Syndrome, School of Pharmaceutical Sciences, Guangzhou University of Chinese Medicine, Guangzhou, Guangdong 510006, P. R. China.
  • 2. Yuebei People's Hospital, Shaoguang, Guangdong 512000, P. R. China.
  • 3. School of Pharmaceutical Sciences (Shenzhen), Sun Yat-Sen University, Guangzhou, Guangdong 510006, P. R. China.
Abstract

Metabolic-associated steatohepatitis liver disease (MASLD) is characterized by abnormal hepatic fat accumulation and liver injury. Corosolic acid (CA) has proven lipid-lowering and hepatoprotective effects, yet the underlying mechanism by which CA mitigates MASLD remains unclear. In this study, mice were fed a high-fat diet for 8 weeks to induce MASLD, followed by 8 weeks of CA intervention. We found that CA significantly suppressed weight gain, reduced serum lipid levels, and improved liver function in the HFD-fed mice. Fecal metabolomic analysis showed that CA regulated multiple metabolic pathways including histidine metabolism and altered 10 shared metabolites between feces and serum, such as HAD-Car. 16S rRNA Sequencing and fecal microbiota transplantation confirmed that CA reshaped gut microbiota, upregulating beneficial bacteria (e.g., Lachnospiraceae_NK4A136_group) and downregulating harmful strains (e.g., Blautia ). Mechanistically, HAD-Car alleviated MASLD by inhibiting the cGAS-STING pathway. Collectively, CA exerts anti-MASLD effects via regulating gut microbiota and metabolites, offering new insights into MASLD treatment.

Keywords
MASLD; cGAS-STING; corosolic acid; gut microbiota; metabolites.
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