ETHNOPHARMACOLOGICAL RELEVANCE:Yuye Jiedu Granule (YYJD), a traditional herb preparation developed by Hunan Changde Sanjin Pharmaceutical Co., Ltd., has been used in clinical settings for many years to manage upper respiratory tract infections (URTI) attributed to exogenous wind-heat. Although its effectiveness is well recognized, the active constituents responsible for its effects and the molecular pathways involved are not clear yet.
AIM OF THE STUDY:To identify the bioactive constituents of YYJD and elucidate its molecular mechanisms in treating URTI.
MATERIALS AND METHODS:Initially, the chemical composition of YYJD was analyzed using ultra-performance liquid chromatography coupled with quadrupole time-of-flight mass spectrometry (UPLC-Q-TOF-MS/MS) in combination with a molecular networking approach. Anti-inflammatory components within the formula were then identified using a UPLC-based separation system and a dual-luciferase reporter gene screening assay, followed by in vitro validation. Subsequently, an acute pneumonia model was developed using Pseudomonas aeruginosa infection to comprehensively assess the therapeutic efficacy of YYJD through integrated transcriptomic, metabolomic, and network pharmacology analyses. Finally, the underlying molecular mechanisms were experimentally confirmed.
RESULTS:A total of 145 chemical constituents were identified in YYJD, among which 15 were found to inhibit NF-κB. In vivo studies demonstrated that YYJD notably decreased mortality, lung indices, and serum pro-inflammatory cytokines in P. aeruginosa-infected mice. Integrated multi-omics analysis highlighted adenosine monophosphate (AMP) as a central metabolite, with major bioactive compounds classified as organic acids, flavonoids, iridoid glycosides, and triterpenoid saponins. Nine pivotal targets and the AMPK-mTORC1/2-PI3K/Akt/NF-κB axis were identified as central to YYJD's anti-URTI effects. Mechanistically, YYJD modulated the phosphorylation of GSK3β, Akt, IκBα, mTOR, and AMPK, along with the p65 expression.
CONCLUSION:This study presents the first in-depth analysis of YYJD's chemical profile and elucidates its multi-target therapeutic mechanisms against URTI through AMPK-centered metabolic-inflammatory interplay. These results offer a stronger scientific foundation for the clinical use of YYJD and introduce a potential new approach for treating respiratory infections.