Si-Yi Wang, Jie Meng
Nasopharyngeal carcinoma (NPC) is an aggressive malignancy with limited therapeutic options, highlighting the urgent need for novel anti-tumor agents. Oridonin, a bioactive diterpenoid derived from Isodon rubescens, has demonstrated broad-spectrum anticancer activities. However, its precise role in NPC remains largely undefined. This study investigated the anti-NPC effects of oridonin and its underlying mechanisms. In vitro, oridonin significantly inhibited NPC cell proliferation and migration, while enhancing sensitivity to copper ionophore-induced cell death. Mechanistically, transcriptomic analysis and subsequent validation revealed that oridonin transcriptionally upregulates FDX1, a key regulator of cuproptosis, and directly binds to FDX1 with high affinity. FDX1 knockdown substantially abrogated oridonin-induced cuproptosis, as evidenced by reduced DLAT oligomerization/aggregation (indicative of reduced lipoylated DLAT aggregation) and resistance to copper ionophores, confirming that FDX1 is a critical downstream effector of oridonin. In vivo, oridonin significantly suppressed tumor growth in xenograft models, accompanied by elevated intra-tumoral copper levels and increased FDX1 and DLAT expression. Collectively, these findings demonstrate that oridonin exerts anti-NPC activity by targeting FDX1 to induce cuproptosis, highlighting oridonin as a promising therapeutic candidate for NPC treatment.