Psoriasis is a chronic inflammatory skin disorder associated with immune dysfunction and vascular abnormalities; however, current biological therapies face challenges regarding non-response or side effects, and the precise molecular mechanisms and active ingredients by which Yinxie Granules exerts its anti-psoriatic effects remain unclear.
Here, we elucidate the therapeutic efficacy of Yinxie Granules in patient samples, IMQ-induced psoriatic mice, zebrafish, and in vitro models. We demonstrate that it ameliorates skin lesions and vascular dysfunction by specifically inhibiting the STING-NF-κB pathway during disease progression, reducing pro-inflammatory cytokines (IL-6, IFN-β), and restoring endothelial barrier integrity. Integrated with multi-omics, molecular docking, and molecular interaction assays (DARTS/CETSA), we further identify quercetin and kaempferol as the primary active constituents responsible for these effects, which directly target and bind to the STING protein to suppress downstream signaling.
This work provides a comprehensive theoretical foundation elucidating the dynamic role of the STING-NF-κB axis in psoriasis pathogenesis and clarifies the active substance basis of Yinxie Granules for dual targeting of inflammation and vasculopathy. The work entitled “
Dual targeting of cutaneous inflammation and vasculopathy via STING-NF-κB blockade underlies the anti-psoriatic efficacy of Yinxie Granules” was published on
Chinese Journal of Natural Medicines (published on July 20, 2026).
DOI: 10.1016/S1875-5364(26)61112-0