Caimao Wei, Qunhua Ke, Hongmei Wang, Jun Wu, Min Qu, Shanhui Ren, Shasha Wang, Xiangwai Wang, Yuefeng Sun, Yongxi Dou, Qi Wang, Xiangping Yin
Lumpy skin disease virus (LSDV) infection poses a significant threat to the global cattle industry; however, effective therapeutic options remain limited. Cidofovir, a nucleotide analog that inhibits viral DNA polymerase, presents a promising antiviral strategy. This study aimed to elucidate the mechanistic basis of Cidofovir-mediated inhibition of LSDV. The results demonstrated that Cidofovir suppressed LSDV replication and reduced viral DNA polymerase expression in a dose-dependent manner. Transcriptome sequencing (RNA-seq) analysis revealed significant enrichment of apoptotic pathways following Cidofovir treatment, and inhibitors of these pathways could reverse its antiviral effect. Further flow cytometry analysis indicated that Cidofovir exerted a dose-dependent bidirectional effect on regulating cell apoptosis: at low doses, it may indirectly reduce infection-induced apoptosis by inhibiting viral replication and DNA polymerase activity, while at high doses, the drug itself directly induced a pro-apoptotic effect, leading to a significant increase in the apoptotic rate. In conclusion, the anti-LSDV activity of Cidofovir arises not only from its direct inhibition of viral DNA polymerase but also from the clearance of viral infection through dose-dependent bidirectional regulation of apoptotic pathways. These findings provide novel theoretical insights into its antiviral mechanism and clinical application.